Activation of a cryptic splice site in the mitochondrial elongation factor GFM1 causes combined OXPHOS deficiency

线粒体延长因子 GFM1 中隐蔽剪接位点的激活导致联合 OXPHOS 缺乏

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作者:Mariella T Simon, Bobby G Ng, Marisa W Friederich, Raymond Y Wang, Monica Boyer, Martin Kircher, Renata Collard, Kati J Buckingham, Richard Chang, Jay Shendure, Deborah A Nickerson, Michael J Bamshad; University of Washington Center for Mendelian Genomics; Johan L K Van Hove, Hudson H Freeze, Jose E

Abstract

We report the clinical, biochemical, and molecular findings in two brothers with encephalopathy and multi-systemic disease. Abnormal transferrin glycoforms were suggestive of a type I congenital disorder of glycosylation (CDG). While exome sequencing was negative for CDG related candidate genes, the testing revealed compound heterozygous mutations in the mitochondrial elongation factor G gene (GFM1). One of the mutations had been reported previously while the second, novel variant was found deep in intron 6, activating a cryptic splice site. Functional studies demonstrated decreased GFM1 protein levels, suggested disrupted assembly of mitochondrial complexes III and V and decreased activities of mitochondrial complexes I and IV, all indicating combined OXPHOS deficiency.

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