Center for Cell Death, Injury and Regeneration, Department of Pharmaceutical and Biomedical Sciences, Medical University of South Carolina, Charleston, South Carolina 29425, USA.
Kidney Int. 2012 Feb;81(4):391-400. doi: 10.1038/ki.2011.356. Epub 2011 Oct 19.
Whereas most calpains are cytosolic proteases, calpain 10 is resident in mitochondria and is important in mitochondrial homeostasis. Because calpain 10 has been implicated in type 2 diabetes, we studied its possible role in diabetes-induced renal dysfunction. We treated renal proximal tubular cells with high glucose (17 mmol/l) and found decreased mitochondrial calpain 10 mRNA and protein at 96 h compared with cells incubated with 0 or 5 mmol/l glucose or 17 mmol/l D-mannitol. High glucose increased mitochondrial calpain 10 substrates (NDUFB8 and ATP synthase β), decreased basal and uncoupled respiration, and initiated cell apoptosis as indicated by cleaved caspase 3 and nuclear condensation. Renal calpain 10 protein and mRNA were specifically decreased in streptozotocin-induced diabetic rats with kidney dysfunction, and in diabetic ob/ob mice. In agreement with our in vitro data, the kidneys of streptozotocin-induced diabetic rats had elevated calpain 10 substrates and cleaved caspase 3. Finally, specific siRNA-induced knockdown of calpain 10 in the proximal tubules of control rats resulted in decreased renal function as evidenced by increased serum creatinine, and increased caspase 3 cleavage compared with rats receiving scrambled siRNA. Thus, the glucose-induced loss of calpain 10 in vivo results in renal cell apoptosis and organ failure through accumulation of mitochondrial calpain 10 substrates and mitochondrial dysfunction. Whether this is a major cause of the decreased renal function in diabetic nephropathy will require further studies.
虽然大多数钙蛋白酶是胞质溶胶蛋白酶,但钙蛋白酶 10 存在于线粒体中,在维持线粒体稳态中发挥重要作用。由于钙蛋白酶 10 与 2 型糖尿病有关,我们研究了其在糖尿病引起的肾功能障碍中的可能作用。我们用高葡萄糖(17mmol/l)处理肾近端小管细胞,与用 0mmol/l、5mmol/l 葡萄糖或 17mmol/l D-甘露醇孵育的细胞相比,发现 96 小时时线粒体钙蛋白酶 10 mRNA 和蛋白减少。高葡萄糖增加了线粒体钙蛋白酶 10 的底物(NDUFB8 和 ATP 合酶β),降低了基础呼吸和去耦联呼吸,并启动细胞凋亡,表现为 cleaved caspase 3 和核浓缩。在肾功能障碍的链脲佐菌素诱导的糖尿病大鼠和糖尿病 ob/ob 小鼠中,肾钙蛋白酶 10 蛋白和 mRNA 特异性减少。与我们的体外数据一致,链脲佐菌素诱导的糖尿病大鼠的肾脏中钙蛋白酶 10 底物和 cleaved caspase 3 升高。最后,用特异性 siRNA 敲低对照组大鼠近端小管中的钙蛋白酶 10 导致肾功能下降,表现为血清肌酐升高,与接受 scrambled siRNA 的大鼠相比,caspase 3 切割增加。因此,体内葡萄糖诱导的钙蛋白酶 10 丢失导致肾细胞凋亡和器官衰竭,其机制是线粒体钙蛋白酶 10 底物积累和线粒体功能障碍。这是否是糖尿病肾病肾功能下降的主要原因还需要进一步研究。