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BAG-1蛋白通过一种独立于蛋白酶体的细胞存活替代机制,保护心肌细胞免受模拟缺血/再灌注诱导的细胞凋亡。

BAG-1 proteins protect cardiac myocytes from simulated ischemia/reperfusion-induced apoptosis via an alternate mechanism of cell survival independent of the proteasome.

作者信息

Townsend Paul A, Cutress Ramsey I, Carroll Christopher J, Lawrence Kevin M, Scarabelli Tiziano M, Packham Graham, Stephanou Anastasis, Latchman David S

机构信息

Medical Molecular Biology Unit, Institute of Child Health, University College London, London WC1N 1EH, United Kingdom.

出版信息

J Biol Chem. 2004 May 14;279(20):20723-8. doi: 10.1074/jbc.M400399200. Epub 2004 Feb 20.

Abstract

BAG-1 (Bcl-2-associated athanogene-1) proteins interact with the HSC70 and HSP70 heat shock proteins and have been proposed to promote cell survival by coordinating the function of these chaperones with the proteasome to facilitate protein degradation. Consistent with this proposal, previous analyses in cancer cells have demonstrated that BAG-1 requires protein domains important for HSC70/HSP70 and proteasome binding in order to interfere with the growth inhibition induced by heat shock (Townsend, P. A., Cutress, R. I., Sharp, A., Brimmell, M., and Packham, G. (2003) Cancer Res., 63, 4150-4157). Moreover, cellular stress triggered the relocalization of the cytoplasmic BAG-1S (approximately 36 kDa) isoform to the nucleus, and both BAG-1S and the constitutively nuclear localized BAG-1L (approximately 50 kDa) isoform suppressed heat shock-induced apoptosis to the same extent, suggesting a critical role in the nucleus. Because ischemia (I) and reperfusion (R) are important stress signals in acute and chronic heart disease, we have examined the expression and function of BAG-1 proteins in primary cardiac myocytes (CMs) and the Langendorff-perfused intact heart. The expression of both BAG-1 isoforms, BAG-1S and BAG-1L, was rapidly induced following ischemia in rat CM, and this was maintained during subsequent reperfusion. In control hearts, BAG-1S and BAG-1L were readily detectable in both the nucleus and the cytoplasm. However, BAG-1S did not relocate to the nucleus following simulated I/R. BAG-1 interacted with both RAF-1 and HSC70 in CMs and the whole heart, and binding to HSC70 was increased following I/R. Overexpression of the human BAG-1S and BAG-1 M isoforms significantly reduced CM apoptosis following simulated I/R. By contrast, BAG-1L or BAG-1S fused to a heterologous nuclear localization sequence failed to protect CM. Finally, overexpression of BAG-1 deletion and point mutants unable to bind HSC70/HSP70 failed to offer cardioprotection. Surprisingly, a deletion mutant lacking the N-terminal ubiquitin-like domain, which mediates interaction with the proteasome, still promoted cardioprotection. Therefore, BAG-1 has a novel cardioprotective role, mediated via association with HSC70/HSP70, which is critical upon cytoplasmic localization but independent of the BAG-1 ubiquitin-like domain. Our studies demonstrate that BAG-1 can influence cellular response to stress by multiple mechanisms, potentially influenced by the cell type and nature of the stress signal.

摘要

BAG-1(Bcl-2相关抗凋亡基因1)蛋白与HSC70和HSP70热休克蛋白相互作用,有人提出它通过协调这些伴侣蛋白与蛋白酶体的功能以促进蛋白质降解来促进细胞存活。与这一观点一致的是,先前在癌细胞中的分析表明,BAG-1需要对HSC70/HSP70和蛋白酶体结合重要的蛋白质结构域,才能干扰热休克诱导的生长抑制(汤森德,P.A.,卡特雷斯,R.I.,夏普,A.,布里梅尔,M.,和帕克姆,G.(2003年)《癌症研究》,63,4150 - 4157)。此外,细胞应激触发了细胞质BAG-1S(约36 kDa)异构体重新定位到细胞核,并且BAG-1S和组成型核定位的BAG-1L(约50 kDa)异构体在相同程度上抑制热休克诱导的细胞凋亡,表明其在细胞核中起关键作用。由于缺血(I)和再灌注(R)是急性和慢性心脏病中的重要应激信号,我们研究了BAG-1蛋白在原代心肌细胞(CMs)和Langendorff灌注的完整心脏中的表达和功能。在大鼠CM中,缺血后BAG-1的两种异构体BAG-1S和BAG-1L的表达迅速诱导,并且在随后的再灌注期间维持。在对照心脏中,在细胞核和细胞质中都很容易检测到BAG-1S和BAG-1L。然而,模拟I/R后BAG-1S没有重新定位到细胞核。BAG-1在CMs和整个心脏中与RAF-1和HSC70都相互作用,并且I/R后与HSC70的结合增加。人BAG-1S和BAG-1 M异构体的过表达显著减少了模拟I/R后的CM凋亡。相比之下,与异源核定位序列融合的BAG-1L或BAG-1S未能保护CM。最后,无法结合HSC70/HSP70的BAG-1缺失和点突变体的过表达未能提供心脏保护作用。令人惊讶的是,一个缺乏介导与蛋白酶体相互作用且位于N端的泛素样结构域的缺失突变体仍然促进了心脏保护作用。因此,BAG-1具有一种新的心脏保护作用,通过与HSC70/HSP70结合介导,这在细胞质定位时至关重要,但独立于BAG-1泛素样结构域。我们的研究表明,BAG-1可以通过多种机制影响细胞对应激的反应,这可能受细胞类型和应激信号性质的影响。

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