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迷你基因剪接分析揭示了 Gitelman 综合征中 SLC12A3 基因外显子变异的新见解。

Minigene splicing assays reveal new insights into exonic variants of the SLC12A3 gene in Gitelman syndrome.

机构信息

Department of Nephrology, the Affiliated Qingdao Municipal Hospital of Qingdao University, Qingdao, China.

Department of Nephrology, Qingdao Eighth People's Hospital, Qingdao, China.

出版信息

Mol Genet Genomic Med. 2023 Apr;11(4):e2128. doi: 10.1002/mgg3.2128. Epub 2023 Jan 3.

Abstract

BACKGROUND

Gitelman syndrome (GS) is a type of salt-losing tubular disease, most of which is caused by SLC12A3 gene variants, and missense variants account for the majority. Recently, the phenomenon of exon skipping, in which variants disrupt normal pre-mRNA splicing, has been related to a variety of diseases. Therefore, we hypothesize that a certain proportion of SLC12A3 variants can result in disease via interfering with the normal splicing process.

METHODS

We analyzed 342 previously presumed SLC12A3 missense variants using bioinformatics programs and identified candidate variants that may alter the splicing of pre-mRNA through minigene assays.

RESULTS

Our study revealed that, among ten candidate variants, six variants (c.602G>A, c.602G>T, c.1667C>T, c.1925G>A, c.2548G>C, and c.2549G>C) led to complete or incomplete exon skipping by affecting exonic splicing regulatory elements and/or disturbing canonical splice sites.

CONCLUSION

It is worth mentioning that this is the largest study on pre-mRNA splicing of SLC12A3 exonic variants. In addition, our study emphasizes the importance of detecting splicing function at the mRNA level in GS and indicates that minigene analysis is a valuable tool for splicing functional assays of variants in vitro.

摘要

背景

Gitelman 综合征(GS)是一种失盐性管状疾病,大多数由 SLC12A3 基因突变引起,其中错义变异占大多数。最近,外显子跳跃现象(exon skipping)已被认为与多种疾病有关,其特征是变异会破坏正常的前体 mRNA 剪接。因此,我们假设一定比例的 SLC12A3 变异可能通过干扰正常剪接过程导致疾病。

方法

我们使用生物信息学程序分析了 342 个先前假定的 SLC12A3 错义变异体,并通过小基因检测鉴定了可能通过改变前体 mRNA 剪接的候选变异体。

结果

我们的研究表明,在十个候选变异体中,六个变异体(c.602G>A、c.602G>T、c.1667C>T、c.1925G>A、c.2548G>C 和 c.2549G>C)通过影响外显子剪接调控元件和/或干扰规范剪接位点,导致完全或不完全的外显子跳跃。

结论

值得一提的是,这是对 SLC12A3 外显子变异体前体 mRNA 剪接的最大研究。此外,我们的研究强调了在 GS 中检测 mRNA 水平剪接功能的重要性,并表明小基因分析是体外变异体剪接功能检测的一种有价值的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe9d/10094094/994cbaab7f80/MGG3-11-e2128-g001.jpg

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