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拷贝数变异分析确定QPRT为与孤立性功能肾易感性相关的候选基因。

Copy Number Variations Analysis Identifies QPRT as a Candidate Gene Associated With Susceptibility for Solitary Functioning Kidney.

作者信息

Zhou Xiao Y, Zheng Hao Y, Han Li, Wang Yan, Zhang Li, Shu Xiao M, Zhang Mu L, Liu Guan N, Ding Lian S

机构信息

Department of Obstetrics, The Affiliated Huai'an No. 1 People's Hospital of Nanjing Medical University, Huai'an, China.

College of Biological and Pharmaceutical Engineering, Nanjing Tech University, Nanjing, China.

出版信息

Front Genet. 2021 May 17;12:575830. doi: 10.3389/fgene.2021.575830. eCollection 2021.

Abstract

BACKGROUND

The lack of understanding of molecular pathologies of the solitary functioning kidney makes improving and strengthening the continuity of care between pediatric and adult nephrological patients difficult. Copy number variations (CNVs) account for a molecular cause of solitary functioning kidney, but characterization of the pathogenic genes remains challenging.

METHODS

In our prospective cohort study, 99 fetuses clinically diagnosed with a solitary functioning kidney were enrolled and evaluated using chromosomal microarray analysis (CMA). The genetic drivers for the pathogenic CNVs were analyzed. We characterized QPRT localization in fetal kidneys using immunohistochemistry and its expression in adult kidneys using quantitative RT-PCR. Further, QPRT was knocked down using siRNA in human embryonic kidney (HEK293T) cells, and the cell cycle and proliferation were tested.

RESULTS

Besides one Triple X syndrome and one Down syndrome, we identified a total of 45 CNVs out of 34 subjects. Among the 14 pathogenic CNVs, CNV 16p11.2 reached the highest number of records with the phenotype of kidney anomalies in the Decipher database. Among the 26 genes within the 16p11.2 region, as a key enzyme for nicotinamide adenine dinucleotide (NAD+) biosynthesis, QPRT was distinctly localized in renal tubules but was barely observed in renal interstitial and glomeruli in fetal kidneys. The loss of QPRT prevented cells' efficient transition into S phase, affected cell-cycle progression, and abrogated proliferation of human embryonic kidney cells.

CONCLUSION

Our data suggest that QPRT is a candidate gene associated with susceptibility for solitary functioning kidney. The CNVs discovered in our study exhibit great potential for future applications in genetic counseling and pregnancy management.

摘要

背景

对孤立性功能肾分子病理学缺乏了解,使得改善和加强儿科与成人肾病患者之间的护理连续性变得困难。拷贝数变异(CNV)是孤立性功能肾的一个分子病因,但致病基因的特征描述仍然具有挑战性。

方法

在我们的前瞻性队列研究中,纳入了99例临床诊断为孤立性功能肾的胎儿,并使用染色体微阵列分析(CMA)进行评估。分析致病CNV的遗传驱动因素。我们使用免疫组织化学对胎儿肾脏中的QPRT定位进行了表征,并使用定量RT-PCR对其在成人肾脏中的表达进行了检测。此外,在人胚肾(HEK293T)细胞中使用siRNA敲低QPRT,并检测细胞周期和增殖情况。

结果

除1例三X综合征和1例唐氏综合征外,我们在34名受试者中总共鉴定出45个CNV。在14个致病CNV中,16p11.2的CNV在Decipher数据库中具有肾脏异常表型的记录数量最多。在16p11.2区域内的26个基因中,作为烟酰胺腺嘌呤二核苷酸(NAD+)生物合成的关键酶,QPRT明显定位于肾小管,但在胎儿肾脏的肾间质和肾小球中几乎未观察到。QPRT的缺失阻止了细胞有效过渡到S期,影响细胞周期进程,并消除了人胚肾细胞的增殖。

结论

我们的数据表明,QPRT是与孤立性功能肾易感性相关的候选基因。我们研究中发现的CNV在未来的遗传咨询和妊娠管理应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4814/8165445/104934f8cb26/fgene-12-575830-g001.jpg

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