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通过全转录组 RNA 测序鉴定 2 型糖尿病肾病中的 Smad3 相关转录组。

Identification of Smad3-related transcriptomes in type-2 diabetic nephropathy by whole transcriptome RNA sequencing.

机构信息

Department of Nephrology, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.

National Health Commission Key Laboratory of Nephrology, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.

出版信息

J Cell Mol Med. 2021 Feb;25(4):2052-2068. doi: 10.1111/jcmm.16133. Epub 2020 Dec 25.

Abstract

Smad3 deficiency prevents the development of type 2 diabetic nephropathy; however, the underlying molecular mechanisms remain unknown. In this study, we aimed to identify Smad3-related genes involved in the pathogenesis of diabetic kidney disease. High-throughput RNA sequencing was performed to profile the whole transcriptome in the diabetic kidney of Smad3 WT-db/db, Smad3 KO-db/db, Smad3 db/db and their littermate control db/m mice at 20 weeks. The gene ontology, pathways and alternative splicing of differentially expressed protein-coding genes and long non-coding RNAs related to Smad3 in diabetic kidney were analysed. Compared to Smad3 WT-db/db mice, Smad3 KO-db/db mice exhibited an alteration of genes associated with RNA splicing and metabolism, whereas heterozygosity deletion of Smad3 (Smad3 db/db mice) significantly altered genes related to cell division and cell cycle. Notably, three protein-coding genes (Upk1b, Psca and Gdf15) and two lncRNAs (NONMMUG023520.2 and NONMMUG032975.2) were identified to be Smad3-dependent and to be associated with the development of diabetic nephropathy. By using whole transcriptome RNA sequencing, we identified novel Smad3 transcripts related to the development of diabetic nephropathy. Thus, targeting these transcripts may represent a novel and effective therapy for diabetic nephropathy.

摘要

Smad3 缺乏可预防 2 型糖尿病肾病的发生;然而,其潜在的分子机制尚不清楚。在本研究中,我们旨在鉴定与糖尿病肾病发病机制相关的 Smad3 相关基因。采用高通量 RNA 测序技术对 Smad3 WT-db/db、Smad3 KO-db/db、Smad3 db/db 及其同窝对照 db/m 糖尿病肾脏中的全转录组进行了分析。分析了与糖尿病肾脏中 Smad3 相关的差异表达蛋白编码基因和长非编码 RNA 的基因本体、通路和可变剪接。与 Smad3 WT-db/db 小鼠相比,Smad3 KO-db/db 小鼠的 RNA 剪接和代谢相关基因发生了改变,而 Smad3 的杂合缺失(Smad3 db/db 小鼠)显著改变了与细胞分裂和细胞周期相关的基因。值得注意的是,鉴定到三个蛋白编码基因(Upk1b、Psca 和 Gdf15)和两个 lncRNA(NONMMUG023520.2 和 NONMMUG032975.2)是 Smad3 依赖性的,并与糖尿病肾病的发生发展相关。通过全转录组 RNA 测序,我们鉴定到了与糖尿病肾病发生发展相关的新的 Smad3 转录本。因此,针对这些转录本可能代表糖尿病肾病的一种新的有效治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8069/7882931/4071810483ef/JCMM-25-2052-g001.jpg

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