Uma condrodisplasia pontilhada rizomélica que tem base material em mutação homozigótica ou heterozigótica composta no gene FAR1 no cromossomo 11p15, que é necessária para a conversão de acil-CoAs graxos em álcoois graxos, causando redução ou perda completa da atividade de FAR1, resultando em deficiência de FAR1 peroxisomal.
Introdução
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Uma condrodisplasia pontilhada rizomélica que tem base material em mutação homozigótica ou heterozigótica composta no gene FAR1 no cromossomo 11p15, que é necessária para a conversão de acil-CoAs graxos em álcoois graxos, causando redução ou perda completa da atividade de FAR1, resultando em deficiência de FAR1 peroxisomal.
Escala de raridade
<1/50kMuito rara
1/20kRara
1/10kPouco freq.
1/5kIncomum
1/2k
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Sinais e sintomas
O que aparece no corpo e com que frequência cada sintoma acontece
Partes do corpo afetadas
+ 6 sintomas em outras categorias
Características mais comuns
Os sintomas variam de pessoa para pessoa. Abaixo estão as 33 características clínicas mais associadas, ordenadas por frequência.
Linha do tempo da pesquisa
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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.
Catalyzes the reduction of saturated and unsaturated C16 or C18 fatty acyl-CoA to fatty alcohols (PubMed:15220348, PubMed:24108123, PubMed:35238077). It plays an essential role in the production of ether lipids/plasmalogens which synthesis requires fatty alcohols (PubMed:20071337, PubMed:24108123, PubMed:33239752). In parallel, it is also required for wax monoesters production since fatty alcohols also constitute a substrate for their synthesis (By similarity) (PubMed:24108123, PubMed:35238077)
Peroxisome membrane
Peroxisomal fatty acyl-CoA reductase 1 disorder
An autosomal recessive metabolic disorder clinically characterized by severe intellectual disability, early-onset epilepsy, microcephaly, congenital cataracts, growth retardation, and spasticity.
Variantes genéticas (ClinVar)
41 variantes patogênicas registradas no ClinVar.
Classificação de variantes (ClinVar)
Distribuição de 10 variantes classificadas pelo ClinVar.
Diagnóstico
Os sinais que médicos procuram e os exames que confirmam
Tratamento e manejo
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Onde tratar no SUS
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Publicações mais relevantes
Physiological role of plasmalogen homeostasis in the liver - A link to cholesterol metabolism.
In mammals, plasmalogens are enriched in the brain, kidney, and heart, while the lowest amounts of plasmalogens are found in the liver. The physiological significance of the low level of plasmalogens in the liver remains unknown. Here, we used alkylglycerol, a precursor that is readily converted to plasmalogen upon exogenous administration, to study the effects of elevated liver plasmalogens on fatty acyl-CoA reductase (FAR1), a rate-limiting enzyme in plasmalogen biosynthesis. Indeed, oral administration of alkylglycerol in wild-type mice augmented plasmalogen levels in the liver and resulted in reduced FAR1 protein levels. Vice versa, we determined increased FAR1 levels in mice with diminished plasmalogen levels due to a genetic defect in plasmalogen biosynthesis. Together, these findings suggest a role of FAR1-mediated regulation of plasmalogen biosynthesis in liver physiology. Further experiments indicated that elevation of plasmalogens in the liver of wild-type mice reduces the protein level of squalene epoxidase, and further suppresses a liver X receptor-mediated transcription of genes encoding ATP-binding cassette transporters such as Abca1, Abcg5, and Abcg8. In the livers of plasmalogen-deficient mice, the expression of Abca1 appears to be reduced due to the suppressed function of the nuclear receptor protein hepatocyte nuclear factor 4. These aberrant expression of transporters causes reduced levels of high-density lipoprotein cholesterol in plasma derived from wild-type mice administered alkylglycerol and plasmalogen synthesis-deficient mice. Taken together, the present results suggest that the homeostasis of plasmalogens, mediated by the regulation of FAR1 protein levels in the liver, plays a physiologically important role in the synthesis of high-density lipoprotein.
Identification of BoFAR3a Reveals the Genetic Basis of a Glossy Green Trait in Broccoli.
Mutants with a bright green appearance due to wax synthesis or deposition defects have been reported in various plants such as Arabidopsis thaliana, corn, and rice, but they are relatively rare in broccoli (a brassicaceae crop). Here, we describe SY03, a natural mutant of broccoli with a glossy green phenotype owing to epidermal wax deficiency. Genetic analysis indicated that the leaf luster trait of SY03 was controlled by a single recessive gene. By using the F2 generation and combining bulked segregant analysis and molecular marker techniques, the candidate gene BoFAR3a, homologous to the Arabidopsis FAR gene, was identified within a 96.678 kb interval of chromosome C01. The A→G point mutation in exon 1 of the BoFAR3a coding sequence substitutes the canonical ATG start codon with GTG, which is predicted to abrogate or severely reduce translation initiation. RT-qPCR indicated that the expression levels of BoFAR3a were significantly decreased in the leaves of the glossy green phenotype mutant. Heterologous expression of BoFAR3a in A. thaliana restored the phenotype of A. thaliana mutant FAR3. The discovery of BoFAR3a is of great significance for breeding lustrous and commercially appealing broccoli varieties. This study systematically analyzed the molecular basis of the lustrous green phenotype in broccoli, providing new insights into the epidermal waxy regulatory network of cruciferous crops. In the future, the wax synthesis pathway can be precisely improved through gene editing technology, achieving a coordinated enhancement of the appearance quality and stress resistance of broccoli.
Acyl-CoA Reductase Far1 Deficiency Impairs Ether Lipid Production and Hypomyelination in Mouse Brains.
Mammalian cell membranes contain ether lipids, which include an alkyl chain derived from a fatty alcohol that is produced by fatty acyl-CoA reductases (FARs). There are two mammalian FAR genes, FAR1 and FAR2, and mutations in FAR1 cause the peroxisomal fatty acyl-CoA reductase 1 disorder (PFCRD), which is accompanied by various symptoms, including neurological disorders. To date, the contributions of FAR1 and FAR2 to brain ether lipid production and the molecular mechanism of PFCRD have remained unknown. To investigate these, we analyzed knockout (KO) mice of Far1 and Far2. In the brain, the expression levels of Far1 were higher than those of Far2, and Far1 was widely expressed. Lipidomic analyses showed that the quantity of ether lipids ethanolamine-plasmalogens was reduced in Far1 KO mice, with a complementary increase in diacyl-type phosphatidylethanolamines, but not in Far2 KO mice. Electron microscope analysis of the corpus callosum revealed reductions in the percentage of myelinated axons and myelin thickness in Far1 KO mice relative to WT mice. In conclusion, FAR1 is the major FAR isozyme involved in ether lipid synthesis in the brain, and its deficiency causes hypomyelination. We speculate that this hypomyelination is one of the causes of the neurological symptoms of PFCRD.
Regulation of plasmalogen biosynthesis in mammalian cells and tissues.
Plasmalogens are a unique family of cellular glycerophospholipids that contain a vinyl-ether bond. Synthesis of plasmalogens is initiated in peroxisomes and completed in the endoplasmic reticulum. The absence of plasmalogens in several organs of patients with deficiency in peroxisome biogenesis suggests that de novo synthesis of plasmalogens contributes significantly to plasmalogen homeostasis in humans. Plasmalogen biosynthesis is spatiotemporally regulated by a feedback mechanism that senses the amount of plasmalogens in the inner leaflet of the plasma membrane and regulates the stability of fatty acyl-CoA reductase 1 (FAR1), the rate-limiting enzyme for plasmalogen biosynthesis. Dysregulation of plasmalogen synthesis impairs cholesterol synthesis in cells and brain, resulting in the reduced expression of genes such as mRNA encoding myelin basic protein, a phenotype found in the cerebellum of plasmalogen-deficient mice. In this review, we summarize the current knowledge of molecular mechanisms underlying the regulation of plasmalogen biosynthesis and the link between plasmalogen homeostasis and cholesterol biosynthesis, and address the pathogenesis of impaired plasmalogen homeostasis in rodent and humans.
Normal plasmalogen levels are maintained in tissues from mice with hepatocyte-specific deletion in peroxin 5.
On the basis of findings that cultured rat hepatocytes secrete lipoprotein with a high plasmalogen content and the occurrence of this lipid in human serum, it has been suggested that hepatocytes play a role in the supply of plasmalogens to tissues. We tested this hypothesis in a mouse with a hepatocyte-specific defect in peroxisomes, an organelle essentially required for plasmalogen biosynthesis. We analyzed plasmalogens in lipid extracts of forebrain, liver and five further tissues and in plasma by reaction with dansylhydrazine in hydrochloric acid, which cleaves the vinyl ether of plasmalogens and forms a fluorescent dansylhydrazone, which we quantified by reversed phase high performance liquid chromatography. Reaction with dansylhydrazine in acetic acid was used to quantify free aldehydes as a control. Our results show normal levels of plasmalogens in plasma and in all tissues examined, including forebrain and the liver, irrespective of the inactivation of hepatic peroxisomes. None of the selected ether lipids analyzed by mass spectrometry in plasma and liver was decreased in the mice deficient in liver peroxisomes. In contrast, we found three plasmenylcholine species which were even significantly increased in the livers of these animals. Quantification of mRNA expression of plasmalogen biosynthetic enzymes revealed particularly low expression of fatty acyl-CoA reductase, the key regulatory enzyme of plasmalogen biosynthesis, in liver, with and without hepatic peroxisome deficiency. Our results do not support the suggested role of hepatocytes in supplying plasmalogens to tissues.
Publicações recentes
From molecules to field: Integrated insights into cuticle-mediated drought tolerance in plants.
Diagnostic Utility of FAR1 Methylation Levels in Hepatocellular Carcinoma Patients Undergoing Liver Transplantation.
🥉 Relato de casoPhysiological role of plasmalogen homeostasis in the liver - A link to cholesterol metabolism.
Acyl-CoA Reductase Far1 Deficiency Impairs Ether Lipid Production and Hypomyelination in Mouse Brains.
The lipid basis of cell death and autophagy.
📚 EuropePMC3 artigos no totalmostrando 13
Identification of BoFAR3a Reveals the Genetic Basis of a Glossy Green Trait in Broccoli.
Plants (Basel, Switzerland)Physiological role of plasmalogen homeostasis in the liver - A link to cholesterol metabolism.
Biochimica et biophysica acta. Molecular and cell biology of lipidsAcyl-CoA Reductase Far1 Deficiency Impairs Ether Lipid Production and Hypomyelination in Mouse Brains.
Molecular and cellular biologyMaternal protein deficiency impairs peroxisome biogenesis and leads to oxidative stress and ferroptosis in liver of fetal growth restriction offspring.
The Journal of nutritional biochemistryDisrupted intercellular bridges and spermatogenesis in fatty acyl-CoA reductase 1 knockout mice: A new model of ether lipid deficiency.
FASEB journal : official publication of the Federation of American Societies for Experimental BiologyRegulation of plasmalogen biosynthesis in mammalian cells and tissues.
Brain research bulletinNormal plasmalogen levels are maintained in tissues from mice with hepatocyte-specific deletion in peroxin 5.
Brain research bulletinA rare case of fatty acyl-CoA reductase 1 deficiency in an Indian infant manifesting rhizomelic chondrodystrophy phenotype.
Clinical geneticsImpaired plasmalogen synthesis dysregulates liver X receptor-dependent transcription in cerebellum.
Journal of biochemistryThe Acyl Desaturase CER17 Is Involved in Producing Wax Unsaturated Primary Alcohols and Cutin Monomers.
Plant physiologyHPLC-Based Mass Spectrometry Characterizes the Phospholipid Alterations in Ether-Linked Lipid Deficiency Models Following Oxidative Stress.
PloS oneSynthesis of medium-chain length (C6-C10) fuels and chemicals via β-oxidation reversal in Escherichia coli.
Journal of industrial microbiology & biotechnologyFatty Acyl-CoA Reductase 1 Deficiency.
Pediatric neurology briefsAssociações
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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.
- Physiological role of plasmalogen homeostasis in the liver - A link to cholesterol metabolism.
- Identification of BoFAR3a Reveals the Genetic Basis of a Glossy Green Trait in Broccoli.
- Acyl-CoA Reductase Far1 Deficiency Impairs Ether Lipid Production and Hypomyelination in Mouse Brains.
- Regulation of plasmalogen biosynthesis in mammalian cells and tissues.
- Normal plasmalogen levels are maintained in tissues from mice with hepatocyte-specific deletion in peroxin 5.
- From molecules to field: Integrated insights into cuticle-mediated drought tolerance in plants.
- Diagnostic Utility of FAR1 Methylation Levels in Hepatocellular Carcinoma Patients Undergoing Liver Transplantation.
- The lipid basis of cell death and autophagy.
Bases de dados e fontes oficiais
Identificadores e referências canônicas usadas para montar este verbete.
- ORPHA:438178(Orphanet)
- OMIM OMIM:616154(OMIM)
- MONDO:0014510(MONDO)
- GARD:13319(GARD (NIH))
- Variantes catalogadas(ClinVar)
- Busca completa no PubMed(PubMed)
- Q55784859(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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