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p35,一种非细胞周期蛋白依赖性激酶 5 的激活剂,可保护足细胞免受体内外细胞凋亡。

p35, the non-cyclin activator of Cdk5, protects podocytes against apoptosis in vitro and in vivo.

机构信息

Division of Nephrology, Department of Medicine, University of Washington, Seattle, Washington 98195-6521, USA.

出版信息

Kidney Int. 2010 Apr;77(8):690-9. doi: 10.1038/ki.2009.548. Epub 2010 Feb 3.

Abstract

Cyclin-dependent kinase-5 is widely expressed and predominantly regulated by the non-cyclin activator p35. Since we recently showed that expression of p35 in the kidney is restricted to podocytes, we examined here its function in mice in which p35 was genetically deleted. The mice did not exhibit kidney abnormalities during glomerular development or during adult life. Conditionally immortalized cultured podocytes, derived from these null mice, did not have any change in their morphology, differentiation, or proliferation. However, when these cultured podocytes were exposed to UV-C irradiation, serum depletion, puromycin aminonucleoside, or transforming growth factor-beta-1, they showed increased apoptosis compared to those from wild-type mice. Levels of Bcl-2 were decreased in these null podocytes but increased after transduction with human p35. Restoration of p35 or the ectopic expression of Bcl-2 reduced the susceptibility of p35-null podocytes to apoptosis. Experimental glomerulonephritis, characterized by podocyte apoptosis and subsequent crescent formation, was utilized to test these findings in vivo. Podocyte apoptosis was significantly increased in diseased p35-null compared with wild-type mice, accompanied by increased glomerulosclerosis and decreased renal function. Our study shows that p35 does not affect glomerulogenesis but controls podocyte survival following injury, in part, by regulating Bcl-2 expression.

摘要

周期素依赖性激酶-5 广泛表达,并主要受非周期素激活剂 p35 调控。由于我们最近发现 p35 在肾脏中的表达仅限于足细胞,因此我们在此研究了其在 p35 基因缺失的小鼠中的功能。在肾小球发育或成年期,这些小鼠均未出现肾脏异常。从这些基因敲除小鼠中分离出的条件永生化培养的足细胞,其形态、分化或增殖均无任何变化。然而,当这些培养的足细胞受到 UV-C 照射、血清耗竭、嘌呤霉素氨基核苷或转化生长因子-β-1 处理时,与野生型小鼠相比,它们的凋亡增加。这些基因敲除的足细胞中 Bcl-2 的水平降低,但在转导人源 p35 后增加。p35 的恢复或 Bcl-2 的异位表达降低了 p35 基因敲除的足细胞对凋亡的易感性。利用实验性肾小球肾炎(其特征为足细胞凋亡和随后的新月体形成),在体内验证了这些发现。与野生型小鼠相比,患病的 p35 基因敲除小鼠的足细胞凋亡明显增加,同时伴有肾小球硬化和肾功能下降。我们的研究表明,p35 不会影响肾小球发生,但可通过调节 Bcl-2 的表达来控制损伤后的足细胞存活。

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