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Hipermetioninemia por deficiência de glicina N-metiltransferase
ORPHA:289891CID-10 · E72.1CID-11 · 5C50.BOMIM 606664DOENÇA RARA

Deficiência de Glicina N-metiltransferase (deficiência de GNMT) é uma condição muito rara caracterizada por um excesso isolado e persistente de metionina no sangue (hipermetioninemia). As únicas alterações clínicas são um leve aumento do tamanho do fígado (hepatomegalia) e elevação crônica dos níveis de transaminase no sangue, sem que haja doença hepática. A metionina também pode estar aumentada na urina. No entanto, como níveis elevados de metionina no sangue são um fator de risco para o desenvolvimento de sinais e sintomas neurológicos, pessoas com deficiência de GNMT podem ter problemas neurológicos quando os níveis de metionina forem maiores que 800μmol/L. A deficiência de GNMT é causada por mutações no gene GNMT. A herança é autossômica recessiva. O tratamento não é necessário na maioria dos casos.

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Introdução

O que você precisa saber de cara

📋

Deficiência de Glicina N-metiltransferase (deficiência de GNMT) é uma condição muito rara caracterizada por um excesso isolado e persistente de metionina no sangue (hipermetioninemia). As únicas alterações clínicas são um leve aumento do tamanho do fígado (hepatomegalia) e elevação crônica dos níveis de transaminase no sangue, sem que haja doença hepática. A metionina também pode estar aumentada na urina. No entanto, como níveis elevados de metionina no sangue são um fator de risco para o desenvolvimento de sinais e sintomas neurológicos, pessoas com deficiência de GNMT podem ter problemas neurológicos quando os níveis de metionina forem maiores que 800μmol/L. A deficiência de GNMT é causada por mutações no gene GNMT. A herança é autossômica recessiva. O tratamento não é necessário na maioria dos casos.

🏥
SUS: Cobertura mínimaScore: 15%
CID-10: E72.1
🇧🇷Dados SUS / DATASUS
PROCEDIMENTOS SIGTAP (7)
0202010279
Dosagem de aminoácidos (erros inatos)metabolic_test
0202010295
Dosagem de ácidos orgânicos na urinagenetic_test
0202010490
Teste de triagem para erros inatos do metabolismonewborn_screening
0202010694
Sequenciamento completo do exoma (WES)rehabilitation
0202080013
Teste do pezinho (triagem neonatal)nutritional
0301070040
Atendimento em reabilitação — doenças raras
+1 outros procedimentos
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Sinais e sintomas

O que aparece no corpo e com que frequência cada sintoma acontece

Características mais comuns

Hipermetioninemia
Hepatomegalia
Concentração elevada de transaminase hepática circulante
Herança autossômica recessiva
4sintomas
Sem dados (4)

Os sintomas variam de pessoa para pessoa. Abaixo estão as 4 características clínicas mais associadas, ordenadas por frequência.

HipermetioninemiaHypermethioninemia
HepatomegaliaHepatomegaly
Concentração elevada de transaminase hepática circulanteElevated circulating hepatic transaminase concentration
Herança autossômica recessivaAutosomal recessive inheritance

Linha do tempo da pesquisa

Publicações por ano — veja quando o interesse científico cresceu
Anos de pesquisa11
Últimos 10 anos87publicações
Pico202016 papers
Linha do tempo
20202015Hoje · 2026📈 2020Ano de pico
Publicações por ano (últimos 10 anos)

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Genética e causas

O que está alterado no DNA e como passa nas famílias

Genes associados

1 gene identificado com associação a esta condição.

Autosomal recessive
GNMTGlycine N-methyltransferaseDisease-causing germline mutation(s) (loss of function) inTolerante
FUNÇÃO

Catalyzes the methylation of glycine by using S-adenosylmethionine (AdoMet) to form N-methylglycine (sarcosine) with the concomitant production of S-adenosylhomocysteine (AdoHcy), a reaction regulated by the binding of 5-methyltetrahydrofolate. Plays an important role in the regulation of methyl group metabolism by regulating the ratio between S-adenosyl-L-methionine and S-adenosyl-L-homocysteine

LOCALIZAÇÃO

Cytoplasm

VIAS BIOLÓGICAS (3)
Glyoxylate metabolism and glycine degradationMetabolism of ingested SeMet, Sec, MeSec into H2SeDevelopmental Lineage of Pancreatic Acinar Cells
MECANISMO DE DOENÇA

Glycine N-methyltransferase deficiency

The only clinical abnormalities in patients with this deficiency are mild hepatomegaly and chronic elevation of serum transaminases.

EXPRESSÃO TECIDUAL(Ubíquo)
Pâncreas
270.4 TPM
Fígado
124.8 TPM
Próstata
23.9 TPM
Estômago
21.1 TPM
Pituitária
9.1 TPM
OUTRAS DOENÇAS (1)
glycine N-methyltransferase deficiency
HGNC:4415UniProt:Q14749

Variantes genéticas (ClinVar)

20 variantes patogênicas registradas no ClinVar.

🧬 GNMT: NM_018960.6(GNMT):c.784G>A (p.Gly262Arg) ()
🧬 GNMT: NM_018960.6(GNMT):c.452-2_467delinsTGGTCC ()
🧬 GNMT: NM_000287.4(PEX6):c.[*438TAAA[1];2578C>T] ()
🧬 GNMT: NC_000006.11:g.(?_41126341)_(43752536_?)del ()
🧬 GNMT: NM_018960.6(GNMT):c.301A>G (p.Asn101Asp) ()
Ver todas no ClinVar

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Publicações mais relevantes

Timeline de publicações
0 papers (10 anos)
#1

ADK deficiency without hypermethioninemia presenting as intractable epilepsy: a rare neurometabolic case and literature review.

Neurogenetics2026 Jan 16

ADK deficiency, an extremely rare inherited metabolic disorder affecting methylation, is likely underdiagnosed as a cause of epilepsy. The limited number of reported cases and variability in presentation, particularly the absence of hypermethioninemia, pose diagnostic challenges. We report an 11-year-9-month-old Indonesian boy with refractory seizures, developmental delay, dysmorphic features, hypotonia, and intellectual disability. Despite normal methionine levels, WES revealed a variant in the ADK gene, confirmed by Sanger sequencing; both parents were heterozygous carriers. Management with multiple antiseizure medications and a methionine-restricted diet reduced seizures, though development remained limited. This case report highlights the first genetically confirmed ADK deficiency case from Indonesia. A concise literature review of reported cases worldwide is also provided to contextualize this atypical phenotype and discuss current diagnostic and therapeutic considerations.

#2

Expanded newborn screening for inborn errors of metabolism and genetic variants in Xinjiang, China.

Frontiers in genetics2025

Inborn errors of metabolism (IEMs), with diverse clinical phenotypes, are featured primarily by complex etiology, lack of specificity in clinical manifestations, major damage to the nervous and digestive system, and even death, bringing great pain and economic burden to children and families. Expanded newborn screening for IEMs by tandem mass spectrometry (MS/MS) is effective to realize early diagnosis and presymptomatic treatment, which may be useful for preventing severe permanent sequelae and death. This study was scheduled to determine the disease spectrum, prevalence and gene variants of IEMs in Xinjiang, China. A sum of 107,741 newborns were screened by MS/MS from January 2019 to December 2024. After initial screening, 3947 newborns, who had positive results, needed to be recalled. The number of successful recalls was 3817 and the recall rate was 96.71%. Suspected positive patients were further diagnosed through next-generation sequencing (NGS) and validated by sanger sequencing. Seventy-three patients were diagnosed with IEMs in Xinjiang, resulting in an overall incidence of 1/1,476. The incidence of amino acid, organic acid, and fatty acid metabolic disorders were 1/1995, 1/8978 and 1/15392, respectively. Hyperphenylalaninemia, Hypermethioninemia and Methylmalonic acidemia ranked the top 3 of all detected IEMs. One hundred twenty-seven mutations in eleven IEMs-associated genes were identified in 69 confirmed cases. Several hotspot mutations in the PAH gene were identified. This study observed some unreported mutation sites in MAT1A gene, which enriched the gene database. Therefore, our data clearly elucidated the disease spectrum and genetic variants in Xinjiang, contributing to the treatment and prenatal genetic counseling of these disorders in this region.

#3

Rare Etiology of Isolated Macrocytosis: Adenosine Kinase Deficiency With a Novel Mutation.

Journal of pediatric hematology/oncology2025 Mar 01

Adenosine kinase (ADK) deficiency is an autosomal recessive disorder characterized by psychomotor developmental delay, epilepsy, dysmorphic features, and liver disease. It is a rare inborn error of methionine and adenosine metabolism. The diagnosis is based on clinical findings, laboratory findings, and molecular analysis of the ADK gene. A novel homozygous mutation NM_006721.4 c.515A>C (p.Asn172Thr) in the ADK gene associated with hypermethioninemia due to ADK deficiency was detected by whole-exome sequencing in a 7-year-old girl who had reticulocytosis, hyperbilirubinemia, elevated mean corpuscular volume, and without mental-motor developmental delay. ADK deficiency as a metabolic disease should be considered in the differential diagnosis of patients with isolated macrocytosis, even without neurologic delay.

#4

Hypermethioninemia due to methionine adenosyltransferase I/III deficiency and brain damage.

BMC pediatrics2024 Nov 07

Methionine adenosyltransferase I/III deficiency used to be considered a relatively benign disease. This study aims to elucidate the clinical characteristics of methionine adenosyltransferase I/III deficiency patients with neurological manifestations. The clinical data, blood amino acids, plasma total homocysteine, gene variants, brain imaging, treatments and outcomes of 15 patients with methionine adenosyltransferase I/III deficiency were retrospectively analyzed. Of these 15 patients, 10 demonstrated neurological abnormalities, with delayed language development, learning difficulties or abnormal brain imaging findings. Eleven patients were identified by newborn screening. Patients with demyelination showed significantly higher blood methionine concentrations at baseline (1102 vs. 396 µmol/L), and their blood methionine remained markedly elevated despite a low-methionine diet. Their plasma total homocysteine was normal to moderate elevated. One patient underwent liver transplantation aged 8 years, which reduced his serum methionine concentration to normal. Compound heterozygous and homozygous MAT1A variants were identified from the patients. Among the 21 variants observed, nine have been reported previously, while 12 were novel. Methionine adenosyltransferase I/III deficiency is not just a benign disease. Severe persistent hypermethioninemia can cause brain injuries, especially in the white matter. Liver transplantation may be a potential treatment option for refractory methionine adenosyltransferase I/III deficiency.

#5

Genetic variation and clinical phenotype analysis of hypermethioninemia caused by MAT1A gene mutation: Case report.

Medicine2024 Dec 20

The high clinical heterogeneity of hypermethioninemia caused by MAT1A gene defects has resulted in a paucity of studies examining the association between clinical phenotypes, biochemical characteristics, and gene mutations in this patient group. Furthermore, the indications for therapeutic interventions in patients remain unclear. The objective of this study is to provide a foundation for clinical diagnosis, genetic counseling, and follow-up management of hypermethioninemia caused by MAT1A gene defects. A retrospective analysis of children with hypermethioninemia at Jinan Maternal and Child Health Hospital from January 2016 to December 2023 was performed using tandem mass spectrometry (MS/MS). The screened and diagnosed children were tested for gene mutations using second-generation sequencing technology and confirmed using Sanger sequencing. Newborn MS/MS screening for diseases demonstrated an elevated methionine level, which was outside the reference range. Upon recalling the newborns, the methionine levels remained elevated, necessitating further refinement of genetic testing. Ultimately, genetic testing confirmed hypermethioninemia, which was attributed to a mutation in the MAT1A gene. The intervention for the patients in this study took the following forms: regular follow-up without treatment (n = 3), intake of methionine-free milk powder without any medication (n = 4), intake of methionine-free milk powder with some medication, and eventually liver transplantation (n = 1). A total of 14 mutation types were detected, including 3 compound heterozygous mutation types (c.926G > T, c.37_38delCT, and c.316G > A) that have not been previously reported. One patient had monoheterozygous mutations, including the novel mutation c.550-1G > A. Eight cases were monitored over time, 7 of which demonstrated typical growth and development. One infant with growth retardation was fed a special formula lacking methionine. The patient underwent liver transplantation. Subsequent follow-up examinations showed methionine and homocysteine levels within normal limits and no further neurological manifestations. Compound heterozygous mutations c.874C > T and c.896G > A may result in higher levels of methionine, affecting the central nervous system. For newborns with initial methionine levels of >500 µmol/L, treatment with a low-Met diet is recommended. Liver transplantation may be beneficial for children with severe hypermethioninemia, particularly in preventing central nervous system damage.

Publicações recentes

Ver todas no PubMed

📚 EuropePMCmostrando 87

2026

ADK deficiency without hypermethioninemia presenting as intractable epilepsy: a rare neurometabolic case and literature review.

Neurogenetics
2025

Expanded newborn screening for inborn errors of metabolism and genetic variants in Xinjiang, China.

Frontiers in genetics
2025

Rare Etiology of Isolated Macrocytosis: Adenosine Kinase Deficiency With a Novel Mutation.

Journal of pediatric hematology/oncology
2024

Genetic variation and clinical phenotype analysis of hypermethioninemia caused by MAT1A gene mutation: Case report.

Medicine
2024

Asymptomatic pediatric presentation of S-adenosylhomocysteine hydrolase deficiency.

JIMD reports
2024

Hypermethioninemia due to methionine adenosyltransferase I/III deficiency and brain damage.

BMC pediatrics
2024

Tannic acid: A possible therapeutic agent for hypermethioninemia-induced neurochemical changes in young rats.

Biochemical and biophysical research communications
2024

Interactions between Lipid Vesicle Membranes and Single Amino Acid Fibrils: Probable Origin of Specific Neurological Disorders.

Langmuir : the ACS journal of surfaces and colloids
2024

Tangshen formula improves diabetic nephropathy in STZ-induced diabetes rats fed with hyper-methionine by regulating the methylation status of kidney.

Clinical epigenetics
2023

Effects of S-Adenosylhomocysteine Hydrolase Downregulation on Wnt Signaling Pathway in SW480 Cells.

International journal of molecular sciences
2023

Pathological role of methionine in the initiation and progression of biliary atresia.

Frontiers in pediatrics
2023

Paracetamol toxicity in classic homocystinuria: Effect of N-acetylcysteine on total homocysteine.

JIMD reports
2023

Cystathionine Beta-Synthase Deficiency: Three Consecutive Cases Detected in 40 Days by Newborn Screening in Emilia Romagna (Italy) and a Comprehensive Review of the Literature.

Children (Basel, Switzerland)
2022

Long-term prognosis of 35 patients with methionine adenosyltransferase deficiency based on newborn screening in China.

Frontiers in cell and developmental biology
2022

Efficacy and pharmacokinetics of betaine in CBS and cblC deficiencies: a cross-over randomized controlled trial.

Orphanet journal of rare diseases
2023

Chemical hypermethioninemia in young mice: oxidative damage and reduction of antioxidant enzyme activity in brain, kidney, and liver.

Metabolic brain disease
2022

Methionine Adenosyltransferase I/III Deficiency Detected by Newborn Screening.

Genes
2022

Genomic analysis of 9 infants with hypermethioninemia by whole-exome sequencing among in Henan, China.

Clinica chimica acta; international journal of clinical chemistry
2022

Amyloids Formed by Nonaromatic Amino Acid Methionine and Its Cross with Phenylalanine Significantly Affects Phospholipid Vesicle Membrane: An Insight into Hypermethioninemia Disorder.

Langmuir : the ACS journal of surfaces and colloids
2022

Epigenetic Upregulation of H19 and AMPK Inhibition Concurrently Contribute to S-Adenosylhomocysteine Hydrolase Deficiency-Promoted Atherosclerotic Calcification.

Circulation research
2022

Anesthetic Management of a Patient With S-Adenosylhomocysteine Hydrolase Deficiency: A Case Report.

A&A practice
2022

Diagnosis of inborn errors of metabolism within the expanded newborn screening in the Madrid region.

JIMD reports
2021

Clinical utility of methionine restriction in adenosine kinase deficiency.

JIMD reports
2021

Unusual Aggregates Formed by the Self-Assembly of Proline, Hydroxyproline, and Lysine.

ACS chemical neuroscience
2022

The Protective Effects of Pioglitazone Against Cognitive Impairment Caused by L-methionine Administration in a Rat Model.

CNS & neurological disorders drug targets
2021

Pilot Study on Neonatal Screening for Methylmalonic Acidemia Caused by Defects in the Adenosylcobalamin Synthesis Pathway and Homocystinuria Caused by Defects in Homocysteine Remethylation.

International journal of neonatal screening
2021

Targeted NMR-based serum metabolic profiling of serine, glycine and methionine in acute-on-chronic liver failure patients: Possible insights into mitochondrial dysfunction.

Analytical science advances
2021

Acute hypermethioninemia impairs redox homeostasis and acetylcholinesterase activity in the hippocampus, striatum, and cerebellum of young rats.

International journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience
2021

Adenosine kinase deficiency: Three new cases and diagnostic value of hypermethioninemia.

Molecular genetics and metabolism
2020

Ameliorative effect of tannic acid on hypermethioninemia-induced oxidative and nitrosative damage in rats: biochemical-based evidences in liver, kidney, brain, and serum.

Amino acids
2020

Metabolism of Sulfur-Containing Amino Acids: How the Body Copes with Excess Methionine, Cysteine, and Sulfide.

The Journal of nutrition
2020

Methionine adenosyltransferase I/III deficiency: Long-term follow-up and treatment of 3 adult siblings.

European journal of medical genetics
2020

Interplay of Enzyme Therapy and Dietary Management of Murine Homocystinuria.

Nutrients
2020

A cautionary tale of pyridoxine toxicity in cystathionine beta-synthase deficiency detected by two-tier newborn screening highlights the need for clear pyridoxine dosing guidelines.

American journal of medical genetics. Part A
2020

Hypermethioninemia Leads to Fatal Bleeding and Increased Mortality in a Transgenic I278T Mouse Model of Homocystinuria.

Biomedicines
2020

CRB1-related retinopathy overlapping the ocular phenotype of S-adenosylhomocysteine hydrolase deficiency.

Ophthalmic genetics
2020

Withdrawal Effects Following Methionine Exposure in Adult Zebrafish.

Molecular neurobiology
2020

Structural basis of the dominant inheritance of hypermethioninemia associated with the Arg264His mutation in the MAT1A gene.

Acta crystallographica. Section D, Structural biology
2020

Characterization of macrophage phenotype, redox, and purinergic response upon chronic treatment with methionine and methionine sulfoxide in mice.

Amino acids
2020

Cystathionine beta synthase deficiency and brain edema associated with methionine excess under betaine supplementation: Four new cases and a review of the evidence.

JIMD reports
2020

Novel method for l-methionine determination using l-methionine decarboxylase and application of the enzyme for l-homocysteine determination.

Bioscience, biotechnology, and biochemistry
2020

A Turkish patient with novel AHCY variants and presumed diagnosis of S-adenosylhomocysteine hydrolase deficiency.

American journal of medical genetics. Part A
2020

Hypermethioninemia induces memory deficits and morphological changes in hippocampus of young rats: implications on pathogenesis.

Amino acids
2020

Methionine and methionine sulfoxide induces neurochemical and morphological changes in cultured astrocytes: Involvement of Na+, K+-ATPase activity, oxidative status, and cholinergic and purinergic signaling.

Neurotoxicology
2020

Analysis of five cases of hypermethioninemia diagnosed by neonatal screening.

Journal of pediatric endocrinology & metabolism : JPEM
2019

Expanded Newborn Screening for Inborn Errors of Metabolism by Tandem Mass Spectrometry in Suzhou, China: Disease Spectrum, Prevalence, Genetic Characteristics in a Chinese Population.

Frontiers in genetics
2019

Hypermethioninemia in Campania: Results from 10 years of newborn screening.

Molecular genetics and metabolism reports
2019

The neuroprotective role of melatonin in a gestational hypermethioninemia model.

International journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience
2019

Excessive Methionine Supplementation Exacerbates the Development of Abdominal Aortic Aneurysm in Rats.

Journal of vascular research
2019

Plasma methionine concentrations and incidence of hypermethioninemic encephalopathy during infancy in a large cohort of 36 patients with classical homocystinuria in the Republic of Ireland.

JIMD reports
2019

Mild Persistent Isolated Hypermethioninemia Identified through Newborn Screening in Michigan.

Journal of pediatric genetics
2019

Control and regulation of S-Adenosylmethionine biosynthesis by the regulatory β subunit and quinolone-based compounds.

The FEBS journal
2019

Whole exome sequencing revealed mutations in FBXL4, UNC80, and ADK in Thai patients with severe intellectual disabilities.

Gene
2019

Newborn screening for homocystinurias: Recent recommendations versus current practice.

Journal of inherited metabolic disease
2019

A comprehensive multiplex PCR based exome-sequencing assay for rapid bloodspot confirmation of inborn errors of metabolism.

BMC medical genetics
2019

Neonatal methionine adenosyltransferase I/III deficiency with abnormal signal intensity in the central tegmental tract.

Brain & development
2019

Amyloid-like Structures Formed by Single Amino Acid Self-Assemblies of Cysteine and Methionine.

ACS chemical neuroscience
2019

High levels of methionine and methionine sulfoxide: Impact on adenine nucleotide hydrolysis and redox status in platelets and serum of young rats.

Journal of cellular biochemistry
2018

Methionine adenosyltransferase I/III deficiency: beyond the central nervous system manifestations.

Therapeutics and clinical risk management
2018

Methionine Administration in Pregnant Rats Causes Memory Deficit in the Offspring and Alters Ultrastructure in Brain Tissue.

Neurotoxicity research
2017

[Gene mutations in a newborn infant with hypermethioninemia].

Zhongguo dang dai er ke za zhi = Chinese journal of contemporary pediatrics
2018

Adult classical homocystinuria requiring parenteral nutrition: Pitfalls and management.

Clinical nutrition (Edinburgh, Scotland)
2017

Confirmation that MAT1A p.Ala259Val mutation causes autosomal dominant hypermethioninemia.

Molecular genetics and metabolism reports
2018

Methionine and/or Methionine Sulfoxide Alter Ectoenzymes Activities in Lymphocytes and Inflammatory Parameters in Serum from Young Rats: Acute and Chronic Effects.

Cell biochemistry and biophysics
2017

Acute administration of methionine and/or methionine sulfoxide impairs redox status and induces apoptosis in rat cerebral cortex.

Metabolic brain disease
2017

Potential Misdiagnosis of Hyperhomocysteinemia due to Cystathionine Beta-Synthase Deficiency During Pregnancy.

JIMD reports
2017

Attenuated brain lesion on magnetic resonance imaging in an adult patient with methionine adenosyltransferase I/III deficiency.

Neurological sciences : official journal of the Italian Neurological Society and of the Italian Society of Clinical Neurophysiology
2017

[Analysis of MAT1A gene mutations in a child affected with simple hypermethioninemia].

Zhonghua yi xue yi chuan xue za zhi = Zhonghua yixue yichuanxue zazhi = Chinese journal of medical genetics
2017

Recent advances in liver transplantation for metabolic disease.

Journal of inherited metabolic disease
2018

Maternal Hypermethioninemia Affects Neurons Number, Neurotrophins Levels, Energy Metabolism, and Na+,K+-ATPase Expression/Content in Brain of Rat Offspring.

Molecular neurobiology
2016

Adenosine Kinase Deficiency in the Brain Results in Maladaptive Synaptic Plasticity.

The Journal of neuroscience : the official journal of the Society for Neuroscience
2016

Mechanistic basis of hypermethioninemia.

Amino acids
2017

Methionine and methionine sulfoxide treatment induces M1/classical macrophage polarization and modulates oxidative stress and purinergic signaling parameters.

Molecular and cellular biochemistry
2017

Chronic administration of methionine and/or methionine sulfoxide alters oxidative stress parameters and ALA-D activity in liver and kidney of young rats.

Amino acids
2017

Consensus recommendations for the diagnosis, treatment and follow-up of inherited methylation disorders.

Journal of inherited metabolic disease
2016

Adenosine kinase deficiency with neurodevelopemental delay and recurrent hepatic dysfunction: A case report.

Advances in rare diseases
2017

Glycine N-Methyltransferase Deficiency: A Member of Dysmethylating Liver Disorders?

JIMD reports
2016

The remarkable S. Harvey Mudd - A reminiscence.

Molecular genetics and metabolism
2016

Abnormal Hypermethylation at Imprinting Control Regions in Patients with S-Adenosylhomocysteine Hydrolase (AHCY) Deficiency.

PloS one
2016

Adenosine kinase deficiency: expanding the clinical spectrum and evaluating therapeutic options.

Journal of inherited metabolic disease
2015

Successive MRI Findings of Reversible Cerebral White Matter Lesions in a Patient with Cystathionine β-Synthase Deficiency.

The Tohoku journal of experimental medicine
2015

Adult-onset liver disease and hepatocellular carcinoma in S-adenosylhomocysteine hydrolase deficiency.

Molecular genetics and metabolism
2015

Gestational hypermethioninaemia alters oxidative/nitrative status in skeletal muscle and biomarkers of muscular injury and inflammation in serum of rat offspring.

International journal of experimental pathology
2015

Mudd's disease (MAT I/III deficiency): a survey of data for MAT1A homozygotes and compound heterozygotes.

Orphanet journal of rare diseases
2015

Liver transplantation for treatment of severe S-adenosylhomocysteine hydrolase deficiency.

Molecular genetics and metabolism
2015

Newborn Screening for Homocystinuria Revealed a High Frequency of MAT I/III Deficiency in Iberian Peninsula.

JIMD reports
2015

MAT2A mutations predispose individuals to thoracic aortic aneurysms.

American journal of human genetics

Associações

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Doenças relacionadas

Doenças com sintomas parecidos — ajudam quem ainda está buscando diagnóstico

Ordenadas pelo número de sintomas em comum.

Referências e fontes

Bases de dados externas citadas neste artigo

Publicações científicas

Artigos indexados no PubMed ligados a esta doença no grafo RarasNet — título, periódico e PMID direto da fonte, sem intermediação de IA.

  1. ADK deficiency without hypermethioninemia presenting as intractable epilepsy: a rare neurometabolic case and literature review.
    Neurogenetics· 2026· PMID 41543614mais citado
  2. Expanded newborn screening for inborn errors of metabolism and genetic variants in Xinjiang, China.
    Frontiers in genetics· 2025· PMID 40727585mais citado
  3. Rare Etiology of Isolated Macrocytosis: Adenosine Kinase Deficiency With a Novel Mutation.
    Journal of pediatric hematology/oncology· 2025· PMID 39899686mais citado
  4. Hypermethioninemia due to methionine adenosyltransferase I/III deficiency and brain damage.
    BMC pediatrics· 2024· PMID 39511588mais citado
  5. Genetic variation and clinical phenotype analysis of hypermethioninemia caused by MAT1A gene mutation: Case report.
    Medicine· 2024· PMID 39705457mais citado
  6. Tannic acid: A possible therapeutic agent for hypermethioninemia-induced neurochemical changes in young rats.
    Biochem Biophys Res Commun· 2024· PMID 39236587recente

Bases de dados e fontes oficiais

Identificadores e referências canônicas usadas para montar este verbete.

  1. ORPHA:289891(Orphanet)
  2. OMIM OMIM:606664(OMIM)
  3. MONDO:0011698(MONDO)
  4. GARD:10764(GARD (NIH))
  5. Variantes catalogadas(ClinVar)
  6. Busca completa no PubMed(PubMed)
  7. Q32146351(Wikidata)

Dados compilados pelo RarasNet a partir de fontes abertas (Orphanet, OMIM, MONDO, PubMed/EuropePMC, ClinicalTrials.gov, DATASUS, PCDT/MS). Este conteúdo é informativo e não substitui avaliação médica.

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Compêndio · Raras BR

Hipermetioninemia por deficiência de glicina N-metiltransferase

ORPHA:289891 · MONDO:0011698
CID-10
E72.1 · Distúrbios do metabolismo dos aminoácidos que contêm enxofre
CID-11
MedGen
UMLS
C1847720
Wikidata
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