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[利用蛋白质组学方法对心脏肥大反应转录因子GATA4复合物进行功能分析]

[Functional Analysis of GATA4 Complex, a Cardiac Hypertrophy-response Transcriptional Factor, Using a Proteomics Approach].

作者信息

Sunagawa Yoichi, Katanasaka Yasufumi, Wada Hiromichi, Hasegawa Koji, Morimoto Tatsuya

机构信息

Graduate School of Pharmaceutical Sciences, University of Shizuoka.

出版信息

Yakugaku Zasshi. 2016;136(2):151-6. doi: 10.1248/yakushi.15-00226-2.

Abstract

Various stresses on the heart, such as myocardial infarction and hemodynamic overload, activate the sympathetic nervous system and the renin-angiotensin system, ultimately reach the nuclei of cardiomyocytes, and change the pattern of gene expression associated with cardiac hypertrophy. Although present pharmacological therapy for heart failure targets such extracellular molecules, mortality due to heart failure is still high. A zinc finger protein, GATA4, is one of the hypertrophy-responsive transcription factors, forms a functional protein complex with an intrinsic histone acetyltransferase, p300, and regulates pathological cardiac hypertrophy. Disruption of this complex results in the inhibition of cardiac hypertrophy and heart failure in vivo. To establish a more effective therapy for heart failure, we have been analyzing a common nuclear pathway within cardiomyocytes. We identified 73 GATA4 binding proteins by tandem-affinity purification and mass spectrometric analysis. Noble GATA4 binding partners, such as cyclin-dependent kinase-9 (Cdk9: the core factor of positive transcription elongation factor b) and retinoblastoma-association protein 48/46 (RbAp48/46: the co-repressor complexes containing HDAC1/2), regulate the p300/GATA4-mediated signaling pathway and hypertrophic responses. Further analysis of p300/GATA4 complex is expected to identify target molecules for heart failure therapy.

摘要

心脏受到的各种应激,如心肌梗死和血流动力学过载,会激活交感神经系统和肾素 - 血管紧张素系统,最终作用于心肌细胞核,并改变与心脏肥大相关的基因表达模式。尽管目前针对心力衰竭的药物治疗以这些细胞外分子为靶点,但心力衰竭导致的死亡率仍然很高。一种锌指蛋白GATA4是肥大反应性转录因子之一,它与内在的组蛋白乙酰转移酶p300形成功能性蛋白复合物,并调节病理性心脏肥大。破坏这种复合物会导致体内心脏肥大和心力衰竭受到抑制。为了建立更有效的心力衰竭治疗方法,我们一直在分析心肌细胞内的一条常见核通路。我们通过串联亲和纯化和质谱分析鉴定了73种GATA4结合蛋白。重要的GATA4结合伙伴,如细胞周期蛋白依赖性激酶9(Cdk9:正转录延伸因子b的核心因子)和视网膜母细胞瘤相关蛋白48/46(RbAp48/46:包含HDAC1/2的共抑制复合物),调节p300/GATA4介导的信号通路和肥大反应。对p300/GATA4复合物的进一步分析有望确定心力衰竭治疗的靶分子。

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