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系膜细胞有丝分裂中热休克蛋白90的需求

Requirement of heat shock protein 90 in mesangial cell mitogenesis.

作者信息

Pieper M, Rupprecht H D, Bruch K M, De Heer E, Schöcklmann H O

机构信息

Medizinische Klinik IV, Universität Erlangen-Nürnberg, Erlangen, Germany, and Department of Pathology, University of Leiden, Leiden, The Netherlands.

出版信息

Kidney Int. 2000 Dec;58(6):2377-89. doi: 10.1046/j.1523-1755.2000.00421.x.

Abstract

BACKGROUND

Hyperplasia of mesangial cells (MCs) is a frequent finding in glomerulonephritis. Heat shock protein 90 (HSP90) is a major cellular chaperone that assists protein folding under physiological and stress conditions.

METHODS

To identify genes that are potentially involved in the pathogenesis of glomerulonephritis, we analyzed glomerular gene expression in mesangioproliferative rat anti-Thy1.1 nephritis by representational difference analysis (RDA). Expression of HSP90beta in anti-Thy1.1 nephritis was studied by Northern and Western blot analyses and immunohistochemistry. In cultured rat MCs, the requirement of HSP90 for mitogenic signaling steps and MC replication was studied by incubation with the specific HSP90 inhibitor geldanamycin.

RESULTS

By RDA, a cDNA fragment homologous to HSP90beta was identified. Glomerular mRNA and protein expression of HSP90beta was markedly and transiently up-regulated during the course of anti-Thy1.1 nephritis, with a maximum at day 6, coinciding with the peak of MC proliferation. By immunohistochemistry, HSP90beta expression in normal glomeruli was detected in podocytes. However, in anti-Thy1.1 nephritis, glomerular HSP90beta protein expression was strongly and transiently increased in mesangial localization. In vitro, mitogenic stimulation of rat MCs led to the induction of HSP90beta mRNA and protein. Incubation of MCs with geldanamycin dose-dependently inhibited DNA synthesis and replication. Moreover, geldanamycin interfered with mitogen-induced phosphorylation of extracellular signal-regulated kinase and transcription of c-fos and Egr-1, but not with transactivation of STAT1 transcription factor. Cell cycle analysis of serum-stimulated MCs revealed that geldanamycin inhibited kinase activity of cyclin D1/CDK4 complexes and blocked progression in the G0/G1 phase and at the S/G2 phase transition.

CONCLUSIONS

The up-regulation of HSP90beta in anti-Thy1.1 nephritis may reflect its functional involvement in phenotypical alterations of MCs in mesangioproliferative glomerulonephritis. Our in vitro studies indicate that HSP90 governs the capacity of MCs to respond to proliferative stimuli by regulating critical mitogenic signaling steps necessary for G1 entry and S-phase progression.

摘要

背景

系膜细胞(MCs)增生是肾小球肾炎中常见的表现。热休克蛋白90(HSP90)是一种主要的细胞伴侣蛋白,在生理和应激条件下协助蛋白质折叠。

方法

为了鉴定可能参与肾小球肾炎发病机制的基因,我们通过代表性差异分析(RDA)分析了系膜增生性大鼠抗Thy1.1肾炎模型中的肾小球基因表达。通过Northern印迹、Western印迹分析和免疫组织化学研究了抗Thy1.1肾炎中HSP90β的表达。在培养的大鼠系膜细胞中,通过与特异性HSP90抑制剂格尔德霉素孵育,研究了HSP90对有丝分裂信号传导步骤和系膜细胞复制的需求。

结果

通过RDA,鉴定出一个与HSP90β同源的cDNA片段。在抗Thy1.1肾炎过程中,肾小球HSP90β的mRNA和蛋白表达显著且短暂上调,在第6天达到峰值,与系膜细胞增殖的高峰一致。通过免疫组织化学,在正常肾小球的足细胞中检测到HSP90β表达。然而,在抗Thy1.1肾炎中,肾小球系膜定位的HSP90β蛋白表达强烈且短暂增加。在体外,对大鼠系膜细胞的有丝分裂刺激导致HSP90β的mRNA和蛋白诱导。用格尔德霉素孵育系膜细胞剂量依赖性地抑制DNA合成和复制。此外,格尔德霉素干扰有丝分裂原诱导细胞外信号调节激酶的磷酸化以及c-fos和Egr-1的转录,但不影响STAT1转录因子的反式激活。血清刺激的系膜细胞的细胞周期分析显示,格尔德霉素抑制细胞周期蛋白D1/细胞周期蛋白依赖性激酶4复合物的激酶活性,并阻断G0/G1期进展以及S/G2期转换。

结论

抗Thy1.1肾炎中HSP90β的上调可能反映其在系膜增生性肾小球肾炎中系膜细胞表型改变中的功能参与。我们的体外研究表明,HSP90通过调节进入G1期和S期进展所需的关键有丝分裂信号传导步骤来控制系膜细胞对增殖刺激的反应能力。

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