GSTK1和RETREG1/ fam134b介导的网状吞噬通过内质网应激和细胞凋亡减轻糖尿病肾病小管损伤。

IF 14.3
Shumin Zhang, Wei Chen, Wenpeng Wang, Yifei Liu, Chanyue Zhao, Kexin Yang, Wenni Dai, Yanglei Ou, Xiangxiang Yin, Yangjun Long, Yu Liu, Lei Zhang, Lin Sun, Fuyou Liu, Li Xiao
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引用次数: 0

摘要

网状吞噬是内质网应激恢复和内质网稳态维持的关键过程,它可以选择性地清除受损的内质网及其组分。然而,其在糖尿病肾病(DN)中的确切机制尚不清楚。本研究发现,在DN患者和动物模型的小管细胞中,RETREG1/FAM134B(网状吞噬调节因子1)的表达降低,与估计的肾小球滤过率(eGFR)呈正相关,与小管间质损伤呈负相关。在高脂饮食(HFD)联合链脲佐菌素(STZ)诱导的糖尿病小鼠中,近端小管特异性敲除Retreg1加重了网状吞噬异常,并伴有内质网应激增加、小管细胞凋亡和小管间质纤维化。在体外,高糖处理的人近端肾小管细胞系HK-2细胞中,过表达RETREG1可明显恢复网状吞噬,减轻内质网应激和凋亡。免疫沉淀联用质谱(IP-MS)表明RETREG1可以与GSTK1(谷胱甘肽s-转移酶kappa 1)相互作用。GSTK1的沉默进一步加重了体内和体外网状吞噬和小管损伤的减轻。这些作用在体外被过表达RETREG1部分阻断。综上所述,这些发现表明GSTK1和RETREG1通过恢复DN小管细胞的网状吞噬和减轻内质网应激,在小管损伤中发挥保护作用。缩写:ACTB:肌动蛋白;cCASP3: cleaved caspase 3;CANX: calnexin;CASP:半胱天冬酶;Co-IP: co-immunoprecipitation;DDIT3: DNA损伤诱导转录本3;DN:糖尿病肾病;ER:内质网;FN1:纤维连接蛋白1;GSTK1:谷胱甘肽s转移酶kappa 1;HFD:高脂肪饮食;HG:高葡萄糖;HK-2:人小管细胞;HSPA5:热休克蛋白家族A (Hsp70)成员5;包含IHC:免疫组织化学;如果:免疫荧光;IP MS:免疫沉淀-质谱联用;LIR: lc3相互作用区;莲花凝集素;MAP1LC3/LC3:微管相关蛋白1轻链3;PACS2:磷酸氟酸簇分选蛋白2;ptc:近端小管细胞;PT:近端小管;RETREG1/FAM134B:网状吞噬调节因子1;RHD:网状同源域;RT-qPCR:实时定量PCR;SQSTM1/p62: sequestosome 1;STZ:链脲霉素;TECs:小管上皮细胞;TEM:透射电子显微镜;末端脱氧核苷酸转移酶dUTP镍端标记;UACR:尿白蛋白肌酸比;UPR:未折叠蛋白反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GSTK1 and RETREG1/FAM134B-mediated reticulophagy attenuates tubular injury in diabetic nephropathy through endoplasmic reticulum stress and apoptosis.

Reticulophagy is a key process to recovery from endoplasmic reticulum (ER) stress and for maintaining ER homeostasis by selectively removing damaged ER and its components. However, its precise mechanisms in diabetic nephropathy (DN) remain unclear. Here, we found that the expression of RETREG1/FAM134B (reticulophagy regulator 1) was decreased in the tubular cells in DN patients and animal models, which was positively correlated with estimated glomerular filtration rate (eGFR) and negatively associated with tubulointerstitial damage. Proximal tubule-specific knockout of Retreg1 exacerbated reticulophagy abnormalities in diabetic mice induced by high-fat diet (HFD) combined with streptozotocin (STZ), which was accompanied by increased ER stress, apoptosis of tubular cells and tubulointerstitial fibrosis. In vitro, overexpression of RETREG1 notably restored reticulophagy, and alleviated ER stress and apoptosis in HK-2 cells, a human proximal tubular cell line, treated with high glucose. Mechanistically, immunoprecipitation coupled with mass spectrometry (IP-MS) suggested that RETREG1 could interact with GSTK1 (glutathione s-transferase kappa 1). Silencing of GSTK1 further aggravated the reduction of reticulophagy and tubular injury both in vivo and in vitro. These effects in in vitro were partially blocked by overexpressing RETREG1. Collectively, these findings suggest that GSTK1 and RETREG1 exert a protective role in tubular injury through restoring reticulophagy and mitigating ER stress of tubular cells in DN.Abbreviation: ACTB: actin beta; cCASP3: cleaved caspase 3; CANX: calnexin; CASP: caspase; Co-IP: co-immunoprecipitation; DDIT3: DNA damage-inducible transcript 3; DN: diabetic nephropathy; ER: endoplasmic reticulum; FN1: fibronectin 1; GSTK1: glutathione S-transferase kappa 1; HFD: high-fat diet; HG: high glucose; HK-2: human tubular cell; HSPA5: heat shock protein family A (Hsp70) member 5; IHC: immunohistochemistry; IF: immunofluorescence; IP MS: immunoprecipitation coupled with mass spectrometry; LIR: LC3-interacting region; LTL: Lotus tetragonolobus lectin; MAP1LC3/LC3: microtubule associated protein 1 light chain 3; PACS2: phosphofurin acidic cluster sorting protein 2; PTCs: proximal tubular cells; PT: proximal tubule; RETREG1/FAM134B: reticulophagy regulator 1; RHD: reticulon homology domain; RT-qPCR: real time-quantitative PCR; SQSTM1/p62: sequestosome 1; STZ: streptozotocin; TECs: tubular epithelial cells; TEM: transmission electron microscopy; TUNEL: terminal deoxynucleotidyl transferase dUTP nick-end labeling; UACR: urine albumin creatine ratio; UPR: unfolded protein response.

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