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利用结构建模评估框内 CACNA1F 插入缺失变异的致病性。

Assessing the Pathogenicity of In-Frame CACNA1F Indel Variants Using Structural Modeling.

机构信息

Division of Evolution and Genomic Sciences, School of Biological Sciences, Faculty of Biology, Medicines and Health, University of Manchester, Manchester Academic Health Science Centre, Manchester, United Kingdom; Manchester Centre for Genomic Medicine, Manchester University NHS Foundation Trust, Manchester Academic Health Science Centre, St. Mary's Hospital, Manchester, United Kingdom.

Division of Evolution and Genomic Sciences, School of Biological Sciences, Faculty of Biology, Medicines and Health, University of Manchester, Manchester Academic Health Science Centre, Manchester, United Kingdom; Manchester Centre for Genomic Medicine, Manchester University NHS Foundation Trust, Manchester Academic Health Science Centre, St. Mary's Hospital, Manchester, United Kingdom.

出版信息

J Mol Diagn. 2022 Dec;24(12):1232-1239. doi: 10.1016/j.jmoldx.2022.09.005. Epub 2022 Oct 1.

Abstract

Small in-frame insertion-deletion (indel) variants are a common form of genomic variation whose impact on rare disease phenotypes has been understudied. The prediction of the pathogenicity of such variants remains challenging. X-linked incomplete congenital stationary night blindness type 2 (CSNB2) is a nonprogressive, inherited retinal disorder caused by variants in CACNA1F, encoding the Ca1.4α1 channel protein. Here, structural analysis was used through homology modeling to interpret 10 disease-correlated and 10 putatively benign CACNA1F in-frame indel variants. CSNB2-correlated changes were found to be more highly conserved compared with putative benign variants. Notably, all 10 disease-correlated variants but none of the benign changes were within modeled regions of the protein. Structural analysis revealed that disease-correlated variants are predicted to destabilize the structure and function of the Ca1.4α1 channel protein. Overall, the use of structural information to interpret the consequences of in-frame indel variants provides an important adjunct that can improve the diagnosis for individuals with CSNB2.

摘要

小的框内插入-缺失(indel)变体是一种常见的基因组变异形式,其对罕见疾病表型的影响尚未得到充分研究。此类变体致病性的预测仍然具有挑战性。X 连锁不完全先天性静止性夜盲症 2 型(CSNB2)是一种非进行性遗传性视网膜疾病,由 CACNA1F 中的变异引起,该基因编码 Ca1.4α1 通道蛋白。在这里,通过同源建模进行结构分析,以解释 10 种与疾病相关的和 10 种推测良性的 CACNA1F 框内 indel 变体。与推测良性变体相比,CSNB2 相关的变化具有更高的保守性。值得注意的是,所有 10 种与疾病相关的变体都位于蛋白的模型区域内,但没有一种良性变化位于该区域内。结构分析表明,与疾病相关的变体预计会破坏 Ca1.4α1 通道蛋白的结构和功能。总的来说,使用结构信息来解释框内 indel 变体的后果提供了一个重要的辅助手段,可以提高 CSNB2 患者的诊断准确性。

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