与 UQCRFS1 相关的线粒体复合体 III 缺乏症和与 GJA8 相关的隐性白内障的双重诊断

Rare Pub Date : 2024-01-01 DOI:10.1016/j.rare.2024.100040
Elizabeth E. Blue , Samuel J. Huang , Alyna Khan , Katie Golden-Grant , Brenna Boyd , Elisabeth A. Rosenthal , Madelyn A. Gillentine , Leah R. Fleming , David R. Adams , Lynne Wolfe , Aimee Allworth , Michael J. Bamshad , Nikeisha J. Caruana , Sirisak Chanprasert , Jingheng Chen , Nitsuh Dargie , Daniel Doherty , Marisa W. Friederich , Fuki M. Hisama , Martha Horike-Pyne , Ian A. Glass
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引用次数: 0

摘要

UQCRFS1 中的双叶致病变体是一种罕见的孤立性线粒体复合体 III 缺乏症的基础,该病与乳酸酸中毒和独特的头皮脱发有关,以前曾在两个无关联的探究者身上描述过。在这里,我们描述了一位未确诊疾病网络(UDN)的参与者,他通过基因组测序发现了两种常染色体隐性遗传疾病的双重诊断:UQCRFS1 相关线粒体复合体 III 缺乏症和 GJA8 相关白内障。这两种致病变体以前都有报道:UQCRFS1(NM_006003.3:c.215-1 G>C,p.Val72_Thr81del10)是线粒体复合体 III 缺乏症的病例,而 GJA8(NM_005267.5:c.736 G>T,p.Glu246*)是老化角膜的体细胞变异,导致交界耦合功能下降。结合酶测定和细胞蛋白质组学分析的多模式方法提供了复合体 III 呼吸链功能障碍和 Rieske 铁硫蛋白低丰度的明确证据,验证了 UQCRFS1 变体的致病作用。该报告扩展了这两种罕见疾病的基因型和表型谱,并强调了深度表型和基因组学数据在诊断和深入了解罕见疾病方面的效用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual diagnosis of UQCRFS1-related mitochondrial complex III deficiency and recessive GJA8-related cataracts

Biallelic pathogenic variants in UQCRFS1 underlie a rare form of isolated mitochondrial complex III deficiency associated with lactic acidosis and a distinctive scalp alopecia previously described in two unrelated probands. Here, we describe a participant in the Undiagnosed Diseases Network (UDN) with a dual diagnosis of two autosomal recessive disorders revealed by genome sequencing: UQCRFS1-related mitochondrial complex III deficiency and GJA8-related cataracts. Both pathogenic variants have been reported before: UQCRFS1 (NM_006003.3:c.215–1 G>C, p.Val72_Thr81del10) in a case with mitochondrial complex III deficiency and GJA8 (NM_005267.5:c.736 G>T, p.Glu246*) as a somatic change in aged cornea leading to decreased junctional coupling. A multi-modal approach combining enzyme assays and cellular proteomics analysis provided clear evidence of complex III respiratory chain dysfunction and low abundance of the Rieske iron-sulfur protein, validating the pathogenic effect of the UQCRFS1 variant. This report extends the genotypic and phenotypic spectrum for these two rare disorders and highlights the utility of deep phenotyping and genomics data to achieve diagnosis and insights into rare disease.

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