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Deficiência de piruvato carboxilase, tipo neonatal grave
ORPHA:353314CID-10 · E74.4CID-11 · 5C53.03DOENÇA RARA

A deficiência grave de piruvato carboxilase (PC) neonatal (Tipo B) é uma forma rara e extremamente grave de deficiência de PC, caracterizada por acidose metabólica grave de início precoce e um resultado geralmente fatal na primeira infância.

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Introdução

O que você precisa saber de cara

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A deficiência grave de piruvato carboxilase (PC) neonatal (Tipo B) é uma forma rara e extremamente grave de deficiência de PC, caracterizada por acidose metabólica grave de início precoce e um resultado geralmente fatal na primeira infância.

Escala de raridade

CLASSIFICAÇÃO ORPHANET · BRASIL 2024
Unknown
Ultra-rara
<1/50k
Muito rara
1/20k
Rara
1/10k
Pouco freq.
1/5k
Incomum
1/2k
Prevalência
0.0
Worldwide
Início
Infancy
+ neonatal
🏥
SUS: Cobertura mínimaScore: 15%
CID-10: E74.4
🇧🇷Dados SUS / DATASUS
PROCEDIMENTOS SIGTAP (6)
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)
0301070040
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Sinais e sintomas

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

Linha do tempo da pesquisa

Publicações por ano — veja quando o interesse científico cresceu
Anos de pesquisa33desde 1993
Últimos 10 anos4publicações
Pico20181 papers
Linha do tempo
2000201020201993Hoje · 2026
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. Padrão de herança: Autosomal recessive.

PCPyruvate carboxylase, mitochondrialDisease-causing germline mutation(s) inRestrito
FUNÇÃO

Pyruvate carboxylase catalyzes a 2-step reaction, involving the ATP-dependent carboxylation of the covalently attached biotin in the first step and the transfer of the carboxyl group to pyruvate in the second. Catalyzes in a tissue specific manner, the initial reactions of glucose (liver, kidney) and lipid (adipose tissue, liver, brain) synthesis from pyruvate

LOCALIZAÇÃO

Mitochondrion matrix

VIAS BIOLÓGICAS (2)
Defective HLCS causes multiple carboxylase deficiencyBiotin transport and metabolism
MECANISMO DE DOENÇA

Pyruvate carboxylase deficiency

Leads to lactic acidosis, intellectual disability and death. It occurs in three forms: mild or type A, severe neonatal or type B, and a very mild lacticacidemia.

EXPRESSÃO TECIDUAL(Ubíquo)
Fígado
115.0 TPM
Tecido adiposo
48.7 TPM
Cerebelo
48.2 TPM
Cérebro - Hemisfério cerebelar
45.6 TPM
Adipose Visceral Omentum
41.1 TPM
OUTRAS DOENÇAS (4)
pyruvate carboxylase deficiency diseasepyruvate carboxylase deficiency, benign typepyruvate carboxylase deficiency, infantile formpyruvate carboxylase deficiency, severe neonatal type
HGNC:8636UniProt:P11498

Variantes genéticas (ClinVar)

286 variantes patogênicas registradas no ClinVar.

🧬 PC: NM_001040716.2(PC):c.988C>T (p.Gln330Ter) ()
🧬 PC: NM_001040716.2(PC):c.787C>G (p.Arg263Gly) ()
🧬 PC: NM_001040716.2(PC):c.2846A>C (p.Gln949Pro) ()
🧬 PC: NM_001040716.2(PC):c.2139del (p.Ser714fs) ()
🧬 PC: NM_001040716.2(PC):c.919G>A (p.Ala307Thr) ()
Ver todas no ClinVar

Vias biológicas (Reactome)

4 vias biológicas associadas aos genes desta condição.

Diagnóstico

Os sinais que médicos procuram e os exames que confirmam

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Tratamento e manejo

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🇧🇷 Atendimento SUS — Deficiência de piruvato carboxilase, tipo neonatal grave

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Publicações mais relevantes

Timeline de publicações
0 papers (10 anos)
#1

In silico Analysis of Two Novel Variants in the Pyruvate Carboxylase (PC) Gene Associated with the Severe Form of PC Deficiency.

Iranian biomedical journal2023 Sep 01

Inborne errors of metabolism are a common cause of neonatal death. This study evaluated the acute early-onset metabolic derangement and death in two unrelated neonates. Whole-exome sequencing (WES), Sanger sequencing, homology modeling, and in silico bioinformatics analysis were employed to assess the effects of variants on protein structure and function. WES revealed a novel homozygous variant, p.G303Afs*40 and p.R156P, in the pyruvate carboxylase (PC) gene of each neonate, which both were confirmed by Sanger sequencing. Based on the American College of Medical Genetics and Genomics guidelines, the p.G303Afs*40 was likely pathogenic, and the p.R156P was a variant of uncertain significance (VUS). Nevertheless, a known variant at position 156, the p.R156Q, was also a VUS. Protein secondary structure prediction showed changes in p.R156P and p.R156Q variants compared to the wild-type protein. However, p.G303Afs*40 depicted significant changes at C-terminal. Furthermore, comparing the interaction of wild-type and variant proteins with the ATP ligand during simulations, revealed a decreased affinity to the ATP in all the variants. Moreover, analysis of Single nucleotide polymorphism impacts on PC protein using Polyphen-2, SNAP2, FATHMM, and SNPs&GO servers predicted both R156P and R156Q as damaging variants. Likewise, free energy calculations demonstrated the destabilizing effect of both variants on PC. This study confirmed the pathogenicity of both variants and suggested them as a cause of type B Pyruvate carboxylase deficiency. The results of this study would provide the family with prenatal diagnosis and expand the variant spectrum in the PC gene,which is beneficial for geneticists and endocrinologists.

#2

A Rare Case of Type B Neonatal Pyruvate Carboxylase Enzyme Deficiency Presenting With Refractory Lactic Acidosis in the Early Neonatal Period.

Cureus2022 Oct

Pyruvate carboxylase (PC) enzyme deficiency is a rare genetic disorder inherited in an autosomal recessive (AR) manner. PC, a mitochondrial enzyme, converts pyruvate to oxaloacetate (OAA), which enters the tricarboxylic acid (TCA) cycle. Based on the tissue type, intermediate metabolites of the TCA cycle play a vital role in gluconeogenesis, lipogenesis, synthesis of nicotinamide adenine dinucleotide phosphate (NADPH), and neurotransmitter glutamate in the astrocytes. The severity of clinical presentation depends on the type of PC deficiency and on the residual enzyme activity. We present a term female infant admitted with refractory lactic acidosis that developed soon after birth. On biochemical evaluation, serum ammonia was 125 µmol/L; plasma amino acid analysis showed elevated citrulline, lysine, proline, decreased glutamine, and aspartic acid; urine organic acid analysis showed markedly increased lactic acid, and moderately elevated 3-hydroxy-butyric and acetoacetic acid. MRI brain demonstrated abnormal diffuse white matter edema, loculated and septate large cysts along the caudothalamic notch as well as lateral aspect of the frontal horn bilaterally. Magnetic resonance (MR) spectroscopy showed large amounts of lactate peak. Molecular genetic analysis showed two pathogenic variants in the PC gene confirming the diagnosis of PC enzyme deficiency. The infant was discharged home on palliative and hospice care, and she died on the 22nd day after birth.

#3

Prenatal onset of the neuroradiologic phenotype of pyruvate carboxylase deficiency due to homozygous PC c.1828G > A mutations.

JIMD reports2021 Sep

Pyruvate carboxylase (PC) deficiency (MIM# 266150) is an autosomal recessive disorder with three subtypes. Patients homozygous for the c.1828G > A mutation in the PC gene belong to type A, which typically has infantile onset, severe to profound developmental delay, hypotonia, and lactic acidemia. We report the neuroimaging abnormalities in a 33-week gestation infant homozygous for the c.1828G > A mutation. Brain magnetic resonance imaging on day 10 of life revealed increased T2 signal within the subcortical and periventricular white matter, an immature gyral pattern, large periventricular cysts with mass effect on the lateral ventricles, and dilatation of the occipital and temporal horns. Magnetic resonance spectroscopy showed reduced creatine and NAA peaks, a relatively high choline peak and no lactate peak. These findings were observed prior to the neonate experiencing any episodes of decompensation with lactic acidosis. The presence of these brain anomalies at this gestational age, prior to any metabolic decompensation, supports the essential role of PC in normal brain morphogenesis and the resulting in-utero brain anomalies secondary to its deficiency. Our experience with this affected premature infant and many others we have managed with the same founder mutation suggests that the clinical phenotypes of the type A and the more severe type B PC deficient patients are on a spectrum rather than distinct subtypes.

#4

Pyruvate Carboxylase Deficiency Type C: A Rare Cause of Acute Transient Flaccid Paralysis with Ketoacidosis.

Neuropediatrics2018 Dec

Pyruvate carboxylase (PC) is a biotin-containing enzyme that is responsible for the adenosine triphosphate-dependent carboxylation of pyruvate to oxaloacetate, a key intermediate in the tricarboxylic acid cycle. PC deficiency (OMIM 266150) is a rare autosomal recessive metabolic disease, causing elevation of pyruvate, lactate, and alanine. Three types of PC deficiency have been described in the literature; A, B, and C. Type A PC deficiency, also called infantile or North American type, is characterized by infantile onset acidosis, failure to thrive, and developmental delay. The second subtype or type B, the neonatal or French form, presents usually in the neonatal period, mostly in the first 72 hours of life with severe lactic acidosis, truncal hypotonia, and seizures. The third type is called type C, is extremely rare with few cases published in the literature. In this case report, we present an 11-month-old girl who presented with acute flaccid paralysis, lethargy, and constipation with elevated ketones and lactate. She was confirmed genetically and biochemically to have PC deficiency type C. The patient's unusual presentation expands the clinical phenotype of this extremely rare disease.

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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. In silico Analysis of Two Novel Variants in the Pyruvate Carboxylase (PC) Gene Associated with the Severe Form of PC Deficiency.
    Iranian biomedical journal· 2023· PMID 37873728mais citado
  2. A Rare Case of Type B Neonatal Pyruvate Carboxylase Enzyme Deficiency Presenting With Refractory Lactic Acidosis in the Early Neonatal Period.
    Cureus· 2022· PMID 36348915mais citado
  3. Prenatal onset of the neuroradiologic phenotype of pyruvate carboxylase deficiency due to homozygous PC c.1828G&#xa0;&gt;&#x2009;A mutations.
    JIMD reports· 2021· PMID 34485016mais citado
  4. Pyruvate Carboxylase Deficiency Type C: A Rare Cause of Acute Transient Flaccid Paralysis with Ketoacidosis.
    Neuropediatrics· 2018· PMID 30045381mais citado
  5. Long-term efficacy and safety of pegunigalsidase alfa administered every 4 weeks in adults with Fabry disease: results from up to 5 years of the BRIGHT F51 phase III, open-label extension study.
    Orphanet J Rare Dis· 2026· PMID 41862950recente
  6. Bridging the gap between patient and physician perspectives on management of generalized myasthenia gravis: a Delphi consensus study.
    Orphanet J Rare Dis· 2026· PMID 41862942recente
  7. The landscape of 605 genetically confirmed distinct rare diseases in a single center in Mexico (2005-2025).
    Orphanet J Rare Dis· 2026· PMID 41862923recente
  8. Advances in hereditary angioedema in the modern treatment era in China: a focus on diagnosis, treatment, and prognosis.
    Orphanet J Rare Dis· 2026· PMID 41862921recente
  9. Health-related quality of life in adults with epidermolysis bullosa: a cross-sectional study in seven European countries using EQ-5D-5L.
    Orphanet J Rare Dis· 2026· PMID 41857746recente

Bases de dados e fontes oficiais

Identificadores e referências canônicas usadas para montar este verbete.

  1. ORPHA:353314(Orphanet)
  2. MONDO:0018142(MONDO)
  3. GARD:17537(GARD (NIH))
  4. Variantes catalogadas(ClinVar)
  5. Busca completa no PubMed(PubMed)
  6. Q56014098(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.

Conteúdo mantido por Agente Raras · Médicos e pesquisadores podem colaborar

Compêndio · Raras BR

Deficiência de piruvato carboxilase, tipo neonatal grave

ORPHA:353314 · MONDO:0018142
Prevalência
Unknown
Herança
Autosomal recessive
CID-10
E74.4 · Distúrbios do metabolismo do piruvato e da gliconeogênese
CID-11
Início
Infancy, Neonatal
Prevalência
0.0 (Worldwide)
MedGen
UMLS
C5679929
Wikidata
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