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热休克蛋白60(HSPD1)在糖尿病诱导的肾小管功能障碍中的作用:对细胞内蛋白质聚集、ATP生成及氧化应激的调节

Role of HSP60 (HSPD1) in diabetes-induced renal tubular dysfunction: regulation of intracellular protein aggregation, ATP production, and oxidative stress.

作者信息

Aluksanasuwan Siripat, Sueksakit Kanyarat, Fong-Ngern Kedsarin, Thongboonkerd Visith

机构信息

Medical Proteomics Unit, Office for Research and Development, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.

Center for Research in Complex Systems Science, Mahidol University, Bangkok, Thailand.

出版信息

FASEB J. 2017 May;31(5):2157-2167. doi: 10.1096/fj.201600910RR. Epub 2017 Feb 14.

Abstract

Because underlying mechanisms of diabetic nephropathy/tubulopathy remained poorly understood, we aimed to define a key protein involving in hyperglycemia-induced renal tubular dysfunction. All altered renal proteins identified from previous large-scale proteome studies were subjected to global protein network analysis, which revealed heat shock protein 60 (HSP60, also known as HSPD1) as the central node of protein-protein interactions. Functional validation was performed using small interfering RNA (siRNA) to knock down HSP60 (siHSP60). At 48 h after exposure to high glucose (HG) (25 mM), Madin-Darby canine kidney (MDCK) renal tubular cells transfected with controlled siRNA (siControl) had significantly increased level of HSP60 compared to normal glucose (NG) (5.5 mM), whereas siHSP60-transfected cells showed a dramatically decreased HSP60 level. siHSP60 modestly increased intracellular protein aggregates in both NG and HG conditions. Luciferin-luciferase assay showed that HG modestly increased intracellular ATP, and siHSP60 further enhanced such an increase. OxyBlot assay showed significantly increased level of oxidized proteins in HG-treated siControl-transfected cells, whereas siHSP60 caused marked increase of oxidized proteins under the NG condition. However, the siHSP60-induced accumulation of oxidized proteins was abolished by HG. In summary, our data demonstrated that HSP60 plays roles in regulation of intracellular protein aggregation, ATP production, and oxidative stress in renal tubular cells. Its involvement in HG-induced tubular cell dysfunction was most likely regulation of intracellular ATP production.-Aluksanasuwan, S., Sueksakit, K., Fong-ngern, K., Thongboonkerd, V. Role of HSP60 (HSPD1) in diabetes-induced renal tubular dysfunction: regulation of intracellular protein aggregation, ATP production, and oxidative stress.

摘要

由于糖尿病肾病/肾小管病的潜在机制仍未得到充分了解,我们旨在确定一种参与高血糖诱导的肾小管功能障碍的关键蛋白。对先前大规模蛋白质组研究中鉴定出的所有改变的肾脏蛋白进行全局蛋白质网络分析,结果显示热休克蛋白60(HSP60,也称为HSPD1)是蛋白质-蛋白质相互作用的中心节点。使用小干扰RNA(siRNA)敲低HSP60(siHSP60)进行功能验证。在暴露于高糖(HG)(25 mM)48小时后,与正常葡萄糖(NG)(5.5 mM)相比,转染对照siRNA(siControl)的马-达二氏犬肾(MDCK)肾小管细胞中HSP60水平显著升高,而转染siHSP60的细胞中HSP60水平显著降低。在NG和HG条件下,siHSP60均适度增加细胞内蛋白质聚集体。荧光素-荧光素酶测定表明,HG适度增加细胞内ATP,而siHSP60进一步增强这种增加。氧印迹法显示,在HG处理的siControl转染细胞中氧化蛋白水平显著增加,而siHSP60在NG条件下导致氧化蛋白显著增加。然而,HG消除了siHSP60诱导的氧化蛋白积累。总之,我们的数据表明,HSP60在肾小管细胞内蛋白质聚集调控、ATP生成和氧化应激中发挥作用。其参与HG诱导的肾小管细胞功能障碍很可能是通过调控细胞内ATP生成实现的。-阿卢卡萨努万,S.,苏埃萨克吉特,K.,方恩根,K.,通布恩克德,V. HSP60(HSPD1)在糖尿病诱导的肾小管功能障碍中的作用:细胞内蛋白质聚集、ATP生成和氧化应激的调控

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