Department of Physiology and Anatomy, University of North Texas Health Science Center , Fort Worth, Texas.
Department of Pharmacy, the First Affiliated Hospital of Anhui University of Traditional Chinese Medicine , Hefei , China.
Am J Physiol Renal Physiol. 2018 May 1;314(5):F855-F863. doi: 10.1152/ajprenal.00513.2017. Epub 2018 Jan 24.
The short-term effect of high-glucose (HG) treatment on store-operated Ca entry in mesangial cells (MCs) is not well-known. The aim of the present study was to determine whether and how HG treatment for a short period altered protein abundance of Orai1, the channel mediating store-operated Ca entry in MCs. Rat and human MCs were exposed to HG (25 mM) for 2, 4, 8, and 24 h, and the abundance of Orai1 protein was significantly decreased at the time points of 8 and 16 h. Consistently, HG treatment for 8 h significantly reduced store-operated Ca entry in rat MCs. However, HG treatment for the same time periods did not alter the levels of Orai1 transcript. Cycloheximide, a protein synthesis inhibitor, did not affect the HG-induced decrease of Orai1 protein, suggesting a posttranslational mechanism was involved. However, the HG effect on Orai1 protein was significantly attenuated by MG132 (a ubiquitin-proteasome inhibitor) and NHCl (a lysosomal pathway inhibitor). Furthermore, HG treatment for 8 h stimulated ubiquitination of Orai1 protein. We further found that polyethylene glycol-catalase, an antioxidant, significantly blunted the HG-induced reduction of Orai1 protein. In support of involvement of reactive oxygen species in the HG effects, hydrogen peroxide (HO) itself significantly decreased abundance of Orai1 protein and increased the level of ubiquitinated Orai1. Taken together, these results suggest that a short-term HG treatment decreased abundance of Orai1 protein in MCs by promoting the protein degradation through the ubiquitination-proteasome and -lysosome mechanisms. This HG-stimulated posttranslational mechanism was mediated by HO.
高糖(HG)处理对系膜细胞(MC)中储存操作钙内流的短期效应尚不清楚。本研究旨在确定 HG 短期处理是否以及如何改变 Orai1 蛋白的丰度,Orai1 是介导 MC 中储存操作钙内流的通道。将大鼠和人 MC 暴露于 HG(25 mM)2、4、8 和 24 h,在 8 和 16 h 时 Orai1 蛋白的丰度显著降低。一致地,HG 处理 8 h 显著减少了大鼠 MC 中的储存操作钙内流。然而,HG 处理相同时间并不改变 Orai1 转录本的水平。蛋白合成抑制剂环己酰亚胺不影响 HG 诱导的 Orai1 蛋白减少,表明涉及翻译后机制。然而,MG132(泛素-蛋白酶体抑制剂)和 NHCl(溶酶体途径抑制剂)显著减弱了 HG 对 Orai1 蛋白的作用。此外,HG 处理 8 h 刺激了 Orai1 蛋白的泛素化。我们进一步发现,聚乙二醇-过氧化氢酶,一种抗氧化剂,显著减弱了 HG 诱导的 Orai1 蛋白减少。支持活性氧在 HG 效应中的作用,过氧化氢(HO)本身显著降低了 Orai1 蛋白的丰度并增加了泛素化 Orai1 的水平。总之,这些结果表明,HG 短期处理通过促进通过泛素-蛋白酶体和溶酶体机制的蛋白降解,降低 MC 中 Orai1 蛋白的丰度。这种 HG 刺激的翻译后机制是由 HO 介导的。