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Novel mutations of COL4A3 , COL4A4 , and COL4A5 genes in Chinese patients with Alport Syndrome using next generation sequence technique

机译:使用下一代序列技术进行COL4A3,COL4A4和COL4A5基因的新型突变,使用下一代序列技术

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Background Alport syndrome (AS) is an inherited progressive renal disease caused by mutations in COL4A3 , COL4A4 , and COL4A5 genes. The large sizes of these genes and the absence of mutation hot spots have complicated mutational analysis by routine PCR‐based approaches. In recent years, the development of next‐generation sequencing (NGS) has made possible the time‐ and cost‐effective and accurate analysis of the three genes in a single step. Methods Here, we analyze COL4A3 , COL4A4 , and COL4A5 simultaneously in 29 AS patients using NGS. Candidate mutations were validated by classic Sanger sequencing and Real‐time PCR. Results Twenty two new mutations and 10 known mutations were detected. Of those novel mutations, 18, 3, and 1 mutations were detected in COL4A5 , COL4A4 , and COL4A3 , respectively. Twenty six patients showed X ‐linked inheritance, one showed autosomal recessive inheritance and two showed digenic inheritance (DI). Conclusion A comparison of the clinical manifestations caused by different types of mutations in COL4A5 suggested that large fragment mutations are relatively more severe than the other missense mutations and AS by some mutations may show inter‐ and intra‐familial phenotypic variability. It is important to consider these transmission patterns in the clinical evaluation according to the results of genetic testing, especially for DI. Twenty two new mutations can expand the genotypic spectrum of AS.
机译:背景技术Alport综合征(AS)是Col4A3,COL4A4和COL4A5基因突变引起的遗传性肾病。这些基因的大尺寸和不存在突变热点通过基于常规的PCR的方法具有复杂的突变分析。近年来,下一代测序(NGS)的发展使得在单一步骤中对三个基因的时间和成本效益和准确的分析。方法在此,通过使用NGS的患者同时分析COL4A3,COL4A4和COL4A5。通过经典的Sanger测序和实时PCR验证候选突变。结果检测到二十两种新突变和10个已知突变。在Col4A5,COL4A4和COL4A3中检测到这些新突变,18,3和1突变。二十六名患者表现出X -Linked遗传,一个显示常染色体隐性遗传和两个显示的数字遗传(DI)。结论COL4A5中不同类型突变引起的临床表现的比较表明,大的碎片突变比其他畸变突变相对较严重,并且随着一些突变可能显示间型和内部内型变异性。重要的是根据遗传检测结果考虑这些传输模式,特别是遗传检测结果,特别是对于DI。二十两种新突变可以扩大基因型谱。

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