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Genome sequencing identifies a rare case of moderate Zellweger spectrum disorder caused by a PEX3 defect: Case report and literature review.


ABSTRACT: Defects in PEX3 are associated with a severe neonatal-lethal form of Zellweger spectrum disorder. We report two moderately affected siblings whose clinical and biochemical phenotypes expand the reported spectrum of PEX3-related disease. Genome sequencing of an adolescent male with progressive movement disorder, spasticity and neurodegeneration, and previous non-diagnostic plasma very-long chain fatty acid analysis, revealed a homozygous likely pathogenic missense variant in PEX3 [c.991G > A; p.(Gly331Arg)]. A younger sibling with significant motor decline since the age of three years was also subsequently found to be homozygous for the familial PEX3 variant. A comprehensive review of the scientific literature identified three additional families with non-lethal infantile- or childhood-onset PEX3-related disease, which together with this clinical report illustrate the potential for highly variable disease severity. Our findings demonstrate the diagnostic utility of genome-wide sequencing for identifying clinically and biochemically heterogeneous inherited metabolic disorders such as the peroxisome biogenesis disorders.

SUBMITTER: Lee W 

PROVIDER: S-EPMC7578253 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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Genome sequencing identifies a rare case of moderate Zellweger spectrum disorder caused by a <i>PEX3</i> defect: Case report and literature review.

Lee Whiwon W   Costain Gregory G   Blaser Susan S   Walker Susan S   Marshall Christian R CR   Gonorazky Hernan H   Inbar-Feigenberg Michal M  

Molecular genetics and metabolism reports 20201019


Defects in <i>PEX3</i> are associated with a severe neonatal-lethal form of Zellweger spectrum disorder. We report two moderately affected siblings whose clinical and biochemical phenotypes expand the reported spectrum of <i>PEX3</i>-related disease. Genome sequencing of an adolescent male with progressive movement disorder, spasticity and neurodegeneration, and previous non-diagnostic plasma very-long chain fatty acid analysis, revealed a homozygous likely pathogenic missense variant in <i>PEX3  ...[more]

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