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COL4A5 基因中的三个外显子变异在迷你基因试验中改变了 RNA 的剪接。

Three exonic variants in the COL4A5 gene alter RNA splicing in a minigene assay.

机构信息

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

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

出版信息

Mol Genet Genomic Med. 2024 Feb;12(2):e2395. doi: 10.1002/mgg3.2395.

Abstract

BACKGROUND

X-linked Alport syndrome (XLAS) is an inherited renal disease caused by rare variants of COL4A5 on chromosome Xq22. Many studies have indicated that single nucleotide variants (SNVs) in exons can disrupt normal splicing process of the pre-mRNA by altering various splicing regulatory signals. The male patients with XLAS have a strong genotype-phenotype correlation. Confirming the effect of variants on splicing can help to predict kidney prognosis. This study aimed to investigate whether single nucleotide substitutions, located within three bases at the 5' end of the exons or internal position of the exons in COL4A5 gene, cause aberrant splicing process.

METHODS

We analyzed 401 SNVs previously presumed missense and nonsense variants in COL4A5 gene by bioinformatics programs and identified candidate variants that may affect the splicing of pre-mRNA via minigene assays.

RESULTS

Our study indicated three of eight candidate variants induced complete or partial exon skipping. Variants c.2678G>C and c.2918G>A probably disturb classic splice sites leading to corresponding exon skipping. Variant c.3700C>T may disrupt splicing enhancer motifs accompanying with generation of splicing silencer sequences resulting in the skipping of exon 41.

CONCLUSION

Our study revealed that two missense variants positioned the first nucleotides of the 5' end of COL4A5 exons and one internal exonic nonsense variant caused aberrant splicing. Importantly, this study emphasized the necessity of assessing the effects of SNVs at the mRNA level.

摘要

背景

X 连锁 Alport 综合征(XLAS)是一种遗传性肾脏疾病,由 X 染色体 q22 上的 COL4A5 罕见变异引起。许多研究表明,外显子中的单核苷酸变异(SNVs)可以通过改变各种剪接调控信号来破坏前体 mRNA 的正常剪接过程。XLAS 男性患者具有很强的基因型-表型相关性。确认变异对剪接的影响有助于预测肾脏预后。本研究旨在探讨位于 COL4A5 基因外显子 5'端三个碱基内或内部的单核苷酸取代是否会导致异常剪接过程。

方法

我们通过生物信息学程序分析了 COL4A5 基因中先前假定为错义和无义变异的 401 个 SNVs,并通过小基因检测鉴定了可能通过前体 mRNA 剪接影响剪接的候选变异。

结果

我们的研究表明,8 个候选变异中有 3 个诱导完全或部分外显子跳跃。变异 c.2678G>C 和 c.2918G>A 可能干扰经典剪接位点,导致相应外显子跳跃。变异 c.3700C>T 可能破坏剪接增强子序列,同时产生剪接沉默序列,导致外显子 41 的跳跃。

结论

本研究表明,两个错义变异位于 COL4A5 外显子 5'端的第一个核苷酸,一个内部无义变异导致异常剪接。重要的是,本研究强调了在 mRNA 水平评估 SNVs 影响的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6262/10891438/5d533484f451/MGG3-12-e2395-g003.jpg

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