小儿胆汁淤积症的大规模基因组研究揭示了一种由 PSKH1 基因突变引起的新型肝肾纤毛症

IF 6.6 1区 医学 Q1 GENETICS & HEREDITY Genetics in Medicine Pub Date : 2024-08-09 DOI:10.1016/j.gim.2024.101231
Sateesh Maddirevula , Mohammad Shagrani , Ae-Ri Ji , Christopher R. Horne , Samuel N. Young , Lucy J. Mather , Mashael Alqahtani , Colin McKerlie , Geoffrey Wood , Paul K. Potter , Firdous Abdulwahab , Tarfa AlSheddi , Wendy L. van der Woerd , Koen L.I. van Gassen , Dalal AlBogami , Kishwer Kumar , Ali Syed Muhammad Akhtar , Hiba Binomar , Hadeel Almanea , Eissa Faqeih , Fowzan S. Alkuraya
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引用次数: 0

摘要

目的:小儿胆汁淤积症是临床和遗传异质性胆汁酸合成和流动障碍的表型表现。尽管已发现越来越多的小儿胆汁淤积症的单基因病因,但大多数病例仍未通过分子诊断:方法:在299名患有肝内胆汁淤积症的儿科患者(279个家庭)中,我们进行了外显子组测序作为一级诊断测试:结果:在135个家庭(48.56%)中发现了可能的致病变体。这135个家庭的37个基因中存在变异,这些变异与胆汁淤积症有确定或初步联系。此外,我们还在 4 个家族中提出了一个新的候选基因(PSKH1)(HGNC:9529)。PSKH1 尤其引人注目,因为它在三个近亲家族中具有很强的关联性,而这三个家族都有一种新的肝肾纤毛症表型。这四个家族中有两个家族共享一个创始同源变异体,而第三个家族的 PSKH1 有不同的同源变异体。PSKH1 编码一种功能未知的推定蛋白丝氨酸激酶。患者的成纤维细胞显示出异常的纤毛,纤毛很长,而且运输异常。同卵Pskh1突变小鼠忠实地再现了人类的表型,显示出异常长的纤毛。通过体外激酶试验观察到,每种重组 PSKH1 变体都丧失了催化活性,因此这种表型是合理的:我们的研究结果支持在小儿胆汁淤积症的检查中使用基因组学方法,并揭示了 PSKH1 相关肝肾纤毛症是一种新型的候选单基因病。
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Large-scale genomic investigation of pediatric cholestasis reveals a novel hepatorenal ciliopathy caused by PSKH1 mutations

Purpose

Pediatric cholestasis is the phenotypic expression of clinically and genetically heterogeneous disorders of bile acid synthesis and flow. Although a growing number of monogenic causes of pediatric cholestasis have been identified, the majority of cases remain undiagnosed molecularly.

Methods

In a cohort of 299 pediatric participants (279 families) with intrahepatic cholestasis, we performed exome sequencing as a first-tier diagnostic test.

Results

A likely causal variant was identified in 135 families (48.56%). These comprise 135 families that harbor variants spanning 37 genes with established or tentative links to cholestasis. In addition, we propose a novel candidate gene (PSKH1) (HGNC:9529) in 4 families. PSKH1 was particularly compelling because of strong linkage in 3 consanguineous families who shared a novel hepatorenal ciliopathy phenotype. Two of the 4 families shared a founder homozygous variant, whereas the third and fourth had different homozygous variants in PSKH1. PSKH1 encodes a putative protein serine kinase of unknown function. Patient fibroblasts displayed abnormal cilia that are long and show abnormal transport. A homozygous Pskh1 mutant mouse faithfully recapitulated the human phenotype and displayed abnormally long cilia. The phenotype could be rationalized by the loss of catalytic activity observed for each recombinant PSKH1 variant using in vitro kinase assays.

Conclusion

Our results support the use of genomics in the workup of pediatric cholestasis and reveal PSKH1-related hepatorenal ciliopathy as a novel candidate monogenic form.

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来源期刊
Genetics in Medicine
Genetics in Medicine 医学-遗传学
CiteScore
15.20
自引率
6.80%
发文量
857
审稿时长
1.3 weeks
期刊介绍: Genetics in Medicine (GIM) is the official journal of the American College of Medical Genetics and Genomics. The journal''s mission is to enhance the knowledge, understanding, and practice of medical genetics and genomics through publications in clinical and laboratory genetics and genomics, including ethical, legal, and social issues as well as public health. GIM encourages research that combats racism, includes diverse populations and is written by authors from diverse and underrepresented backgrounds.
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