TRPC6-Calpain-1轴通过抑制线粒体自噬促进糖尿病肾脏病中的肾小管间质炎症

TRPC6-Calpain-1 Axis Promotes Tubulointerstitial Inflammation by Inhibiting Mitophagy in Diabetic Kidney Disease.

作者信息Cong-Cong Liu, Jia-Ling Ji, Ze Wang, Xing-Jian Zhang, Lin Ding, Yao Zhang, Yan Zhou, Dong-Jie Zhang, Zhen-Lin Tang, Jing-Yuan Cao, Ai-Qing Zhang, Bi-Cheng Liu, Zuo-Lin Li, Rui-Xia Ma
PMID39534194
发布时间2024-08-23
DOI10.1016/j.ekir.2024.08.019

实验完整度

包含体内小鼠模型、体外细胞模型、药理学干预(尿石素A)和基因干预(Trpc6敲低),并涉及线粒体自噬和炎症的功能及机制验证。

主要模型

链脲佐菌素诱导的DKD小鼠模型 HK-2人肾近端肾小管上皮细胞系

重点核对

链脲佐菌素剂量:50 mg/kg/d连续5天腹腔注射 尿石素A给药剂量:50 mg/kg/d灌胃8周 Trpc6敲低慢病毒注射途径:尾静脉注射,每周一次,共4周 HG处理浓度:35 mM葡萄糖 BAPTA和calpeptin处理浓度:10 μM和1 μM

摘要

Introduction: Renal tubulointerstitial inflammation represents an effective indicator for predicting the progression of diabetic kidney disease (DKD). Mitophagy abnormality is 1 of the most important factors involved in tubule injury. However, the exact molecular mechanism underlying mitophagy abnormality-mediated tubulointerstitial inflammation in DKD remains poorly understood.Methods: In this study, a streptozotocin-induced DKD mouse model was established and HK-2 cells treated with high glucose (HG) served as an in vitro model. Tubular mitophagy was regulated through pharmacological urolithin A (UA) administration. The functional effect of the transient receptor potential cation channel, subfamily C, member 6 (TRPC6) was explored using genetic interventions in vivo and in vitro.Results: We found that renal tubulointerstitial inflammation in DKD was closely associated with mitophagy inhibition, which was mediated by disturbance of PINK1/Parkin pathway. Mitophagy activation significantly attenuated tubular injury and tubulointerstitial inflammation. Further, it was found that TRPC6 was markedly increased in DKD and played an essential role in mitophagy inhibition by activating calpain-1. Knockdown of Trpc6 partially reversed mitophagy abnormality and consequently attenuated tubular injury and tubulointerstitial inflammation in vivo and in vitro. Finally, we found that tubular TRPC6-mediated mitophagy inhibition was blocked with BAPTA (a specific Ca2+ chelator) or calpeptin (a specific calpain-1 inhibitor).Conclusion: Our study reveals that TRPC6-calpain-1 axis promotes tubulointerstitial inflammation in DKD by inhibiting mitophagy.

实验结论

提炼研究问题、关键发现与证据,快速把握文章的核心贡献。

研究问题
糖尿病肾脏病中,线粒体自噬异常介导的肾小管间质炎症的确切分子机制是什么?
核心机制
TRPC6通过介导Ca2+内流激活calpain-1,进而抑制PINK1/Parkin介导的线粒体自噬,导致受损线粒体积累,促进肾小管间质炎症。
主要证据
在DKD小鼠和HG处理的HK-2细胞中,TRPC6表达升高,线粒体自噬受抑制;Trpc6敲低或calpain-1抑制可恢复线粒体自噬,减轻肾小管损伤和炎症;BAPTA阻断Ca2+或calpeptin抑制calpain-1可阻断TRPC6介导的线粒体自噬抑制。
研究意义
为DKD的发病机制提供了新见解,并提示干预TRPC6-calpain-1轴可能成为延缓DKD进展的治疗策略。

研究路径

按研究推进顺序梳理实验设计、验证步骤与关键观察。

1

建立DKD小鼠和细胞模型

模拟糖尿病肾脏病的体内和体外条件,用于后续机制研究。

雄性C57BL/6J小鼠腹腔注射链脲佐菌素建立DKD模型;HK-2细胞用高糖处理。

2

评估肾小管损伤和炎症表型

确认DKD模型中肾小管损伤和肾小管间质炎症的存在。

检测空腹血糖、尿白蛋白肌酐比、血尿素氮;PAS和Masson染色评估肾小管损伤和纤维化;免疫组化检测F4/80;RT-qPCR检测炎症因子mRNA。

3

检测线粒体自噬水平

观察DKD条件下肾小管细胞线粒体自噬的变化。

透射电镜观察线粒体自噬体;Western blot检测LC3B、P62、PINK1、Parkin;免疫荧光检测LC3B与COX IV共定位。

4

药理学激活线粒体自噬

验证激活线粒体自噬是否改善DKD中的肾小管损伤和炎症。

DKD小鼠灌胃给予尿石素A(UA);HG处理的HK-2细胞给予UA。检测线粒体自噬指标和肾损伤、炎症指标。

5

遗传干预TRPC6表达

探究TRPC6在DKD中对线粒体自噬和炎症的作用。

DKD小鼠尾静脉注射Trpc6敲低慢病毒;HG处理的HK-2细胞转染Trpc6 siRNA。检测TRPC6表达、线粒体自噬指标和炎症指标。

6

验证calpain-1的作用

阐明TRPC6抑制线粒体自噬的下游机制是否涉及calpain-1。

检测DKD或HG条件下calpain-1表达;用BAPTA阻断Ca2+或用calpeptin抑制calpain-1,检测线粒体自噬和炎症指标。

研究方法

按研究目的归类文中使用的方法,便于定位所需技术。

产品清单

实验环节名称品牌货号
链脲佐菌素Sigma-Aldrich--
DMEM/F12培养基Gibco--
胎牛血清Gibco--
青霉素-链霉素----
尿石素AMCEHY-100599
BAPTAMCEHY-100168
CalpeptinMCEHY-100223
二甲基亚砜BeyotimeST038
血清肌酐检测试剂盒Jiancheng--
尿肌酐检测试剂盒Jiancheng--
血尿素氮检测试剂盒Jiancheng--
小鼠微量白蛋白尿ELISA试剂盒Elabscience--
细胞线粒体分离试剂盒BeyotimeC3601
组织线粒体分离试剂盒BeyotimeC3606
RIPA裂解液Servicebio--
二辛可宁酸蛋白定量试剂盒Beyotime--
聚偏二氟乙烯膜Millipore--
NcmBlot封闭液NCM Biotech--
TRPC6一抗Proteintech18236-1-AP
KIM-1一抗Thermo Fisher ScientificMA5-28211
calpain-1一抗Proteintech10538-1-AP
β-actin一抗AbwaysAB2001
LC3B一抗CSTE5Q2K
P62一抗Sigma-AldrichWH0008878M1
PINK1一抗Proteintech23274-1-AP
Parkin一抗Santa Cruzsc-32282
COX IV一抗Proteintech11242-1-AP
HRP标记的山羊抗小鼠IgGCST--
HRP标记的山羊抗兔IgGCST--
化学发光检测系统GE Healthcare--
TriZol试剂Vazyme--
HiScript III逆转录预混液Vazyme--
ChamQ通用SYBR qPCR预混液Vazyme--
7300实时PCR检测系统Applied Biosystems--
链霉亲和素过氧化物酶检测系统Maixin Technology Co., Ltd.--
DAPIBeyotime--
山羊抗小鼠二抗Abcamab150114
山羊抗兔二抗Abcamab150077
Fluo-4 AMBeyotimeS1060

关键环节

汇总复现实验时建议重点确认的条件及原文阅读提示。

环节核对要点
动物模型建立
链脲佐菌素剂量、注射途径、糖尿病模型成功标准(空腹血糖>16.7 mmol/l)
阅读提示:Methods - Animals
尿石素A处理
UA剂量、给药途径、给药时长
阅读提示:Methods - Animals
慢病毒干预
LV-Trpc6或LV-NC注射途径、注射频率、治疗时长
阅读提示:Methods - Animals
细胞培养和处理
HG浓度、甘露醇对照浓度、siRNA浓度、UA/BAPTA/calpeptin浓度和处理时间
阅读提示:Methods - Cell Culture and Treatment
线粒体自噬检测
TEM观察、Western blot抗体稀释比、免疫荧光共定位分析
阅读提示:Methods - Transmission Electron Microscopy, Western Blotting, Immunofluorescence