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α-微管蛋白增强肾小管细胞增殖和组织修复,但减少细胞死亡和细胞-晶体黏附。

Alpha-tubulin enhanced renal tubular cell proliferation and tissue repair but reduced cell death and cell-crystal adhesion.

机构信息

Medical Proteomics Unit, Office for Research and Development, Faculty of Medicine Siriraj Hospital, and Center for Research in Complex Systems Science, Mahidol University, Bangkok 10700, Thailand.

出版信息

Sci Rep. 2016 Jul 1;6:28808. doi: 10.1038/srep28808.

Abstract

Adhesion of calcium oxalate (CaOx) crystals on renal tubular epithelial cells is a critical event for kidney stone disease that triggers many cascades of cellular response. Our previous expression proteomics study identified several altered proteins in MDCK renal tubular cells induced by CaOx crystals. However, functional significance of those changes had not been investigated. The present study thus aimed to define functional roles of such proteome data. Global protein network analysis using STRING software revealed α-tubulin, which was decreased, as one of central nodes of protein-protein interactions. Overexpression of α-tubulin (pcDNA6.2-TUBA1A) was then performed and its efficacy was confirmed. pcDNA6.2-TUBA1A could maintain levels of α-tubulin and its direct interacting partner, vimentin, after crystal exposure. Also, pcDNA6.2-TUBA1A successfully reduced cell death to almost the basal level and increased cell proliferation after crystal exposure. Additionally, tissue repair capacity was improved in pcDNA6.2-TUBA1A cells. Moreover, cell-crystal adhesion was reduced by pcDNA6.2-TUBA1A. Finally, levels of potential crystal receptors (HSP90, HSP70, and α-enolase) on apical membrane were dramatically reduced to basal levels by pcDNA6.2-TUBA1A. These findings implicate that α-tubulin has protective roles in kidney stone disease by preventing cell death and cell-crystal adhesion, but on the other hand, enhancing cell proliferation and tissue repair function.

摘要

草酸钙 (CaOx) 晶体黏附在肾小管上皮细胞上是肾结石病的一个关键事件,它引发了许多细胞反应级联。我们之前的表达蛋白质组学研究鉴定了 MDCK 肾小管细胞中由 CaOx 晶体诱导的几种改变的蛋白质。然而,这些变化的功能意义尚未被研究。因此,本研究旨在定义这些蛋白质组数据的功能作用。使用 STRING 软件进行的全局蛋白质网络分析显示,α-微管蛋白(α-tubulin)作为蛋白质-蛋白质相互作用的中心节点之一,其表达量降低。然后进行α-微管蛋白(pcDNA6.2-TUBA1A)的过表达,并证实其有效性。pcDNA6.2-TUBA1A 可以在晶体暴露后维持α-微管蛋白及其直接相互作用伴侣波形蛋白的水平。此外,pcDNA6.2-TUBA1A 成功地将细胞死亡降低到几乎基础水平,并在晶体暴露后增加细胞增殖。此外,pcDNA6.2-TUBA1A 细胞的组织修复能力得到改善。此外,pcDNA6.2-TUBA1A 减少了细胞-晶体黏附。最后,pcDNA6.2-TUBA1A 将潜在晶体受体(HSP90、HSP70 和α-烯醇酶)在顶膜上的水平降低到基础水平。这些发现表明,α-微管蛋白通过防止细胞死亡和细胞-晶体黏附,在肾结石病中具有保护作用,但另一方面,增强了细胞增殖和组织修复功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0a4/4929438/fcd6113c242d/srep28808-f1.jpg

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