A mutation in the human CBP4 ortholog UQCC3 impairs complex III assembly, activity and cytochrome b stability

生物 细胞色素b 蛋白质亚单位 辅酶Q-细胞色素c还原酶 细胞色素 突变 错义突变 细胞色素c 遗传学 基因 细胞生物学 生物化学 线粒体 线粒体DNA
作者
Bas F.J. Wanschers,Radek Szklarczyk,Mariël A.M. van den Brand,An I. Jonckheere,Janneke Suijskens,Roel Smeets,Richard J. Rodenburg,Katharina Stephan,Ingrid B. Helland,Areej Elkamil,Terje Rootwelt,Martin Ott,Lambert van den Heuvel,Leo Nijtmans,Martijn A. Huynen
出处
期刊:Human Molecular Genetics [Oxford University Press]
卷期号:23 (23): 6356-6365 被引量:74
标识
DOI:10.1093/hmg/ddu357
摘要

Complex III (cytochrome bc1) is a protein complex of the mitochondrial inner membrane that transfers electrons from ubiquinol to cytochrome c. Its assembly requires the coordinated expression of mitochondrial-encoded cytochrome b and nuclear-encoded subunits and assembly factors. Complex III deficiency is a severe multisystem disorder caused by mutations in subunit genes or assembly factors. Sequence-profile-based orthology predicts C11orf83, hereafter named UQCC3, to be the ortholog of the fungal complex III assembly factor CBP4. We describe a homozygous c.59T>A missense mutation in UQCC3 from a consanguineous patient diagnosed with isolated complex III deficiency, displaying lactic acidosis, hypoglycemia, hypotonia and delayed development without dysmorphic features. Patient fibroblasts have reduced complex III activity and lower levels of the holocomplex and its subunits than controls. They have no detectable UQCC3 protein and have lower levels of cytochrome b protein. Furthermore, in patient cells, cytochrome b is absent from a high-molecular-weight complex III. UQCC3 is reduced in cells depleted for the complex III assembly factors UQCC1 and UQCC2. Conversely, absence of UQCC3 in patient cells does not affect UQCC1 and UQCC2. This suggests that UQCC3 functions in the complex III assembly pathway downstream of UQCC1 and UQCC2 and is consistent with what is known about the function of Cbp4 and of the fungal orthologs of UQCC1 and UQCC2, Cbp3 and Cbp6. We conclude that UQCC3 functions in complex III assembly and that the c.59T>A mutation has a causal role in complex III deficiency.

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