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STAT3 在保护心脏免受急性和慢性应激中的关键作用:新进展和未解决的问题。

Pivotal Importance of STAT3 in Protecting the Heart from Acute and Chronic Stress: New Advancement and Unresolved Issues.

机构信息

American University of Beirut Faculty of Medicine , Beirut , Lebanon.

Department of Pharmacology and Toxicology, School of Medicine, The University of Mississippi Medical Center , Jackson, MS , USA.

出版信息

Front Cardiovasc Med. 2015 Nov 30;2:36. doi: 10.3389/fcvm.2015.00036. eCollection 2015.

Abstract

The transcription factor, signal transducer and activator of transcription 3 (STAT3), has been implicated in protecting the heart from acute ischemic injury under both basal conditions and as a crucial component of pre- and post-conditioning protocols. A number of anti-oxidant and antiapoptotic genes are upregulated by STAT3 via canonical means involving phosphorylation on Y705 and S727, although other incompletely defined posttranslational modifications are involved. In addition, STAT3 is now known to be present in cardiac mitochondria and to exert actions that regulate the electron transport chain, reactive oxygen species production, and mitochondrial permeability transition pore opening. These non-canonical actions of STAT3 are enhanced by S727 phosphorylation. The molecular basis for the mitochondrial actions of STAT3 is poorly understood, but STAT3 is known to interact with a critical subunit of complex I and to regulate complex I function. Dysfunctional complex I has been implicated in ischemic injury, heart failure, and the aging process. Evidence also indicates that STAT3 is protective to the heart under chronic stress conditions, including hypertension, pregnancy, and advanced age. Paradoxically, the accumulation of unphosphorylated STAT3 (U-STAT3) in the nucleus has been suggested to drive pathological cardiac hypertrophy and inflammation via non-canonical gene expression, perhaps involving a distinct acetylation profile. U-STAT3 may also regulate chromatin stability. Our understanding of how the non-canonical genomic and mitochondrial actions of STAT3 in the heart are regulated and coordinated with the canonical actions of STAT3 is rudimentary. Here, we present an overview of what is currently known about the pleotropic actions of STAT3 in the heart in order to highlight controversies and unresolved issues.

摘要

转录因子信号转导子和转录激活子 3(STAT3)被认为在基础条件下以及作为预处理和后处理方案的重要组成部分,可保护心脏免受急性缺血性损伤。通过涉及 Y705 和 S727 磷酸化的经典途径,STAT3 上调了许多抗氧化和抗凋亡基因,尽管还涉及其他不完全定义的翻译后修饰。此外,STAT3 现在已知存在于心脏线粒体中,并发挥调节电子传递链、活性氧物种产生和线粒体通透性转换孔打开的作用。STAT3 的这些非经典作用通过 S727 磷酸化增强。STAT3 在线粒体中的作用的分子基础理解甚少,但 STAT3 已知与复合物 I 的关键亚基相互作用并调节复合物 I 功能。功能失调的复合物 I 与缺血性损伤、心力衰竭和衰老过程有关。有证据表明,STAT3 在慢性应激条件下对心脏具有保护作用,包括高血压、妊娠和高龄。矛盾的是,核中未磷酸化的 STAT3(U-STAT3)的积累被认为通过非经典基因表达驱动病理性心肌肥大和炎症,可能涉及不同的乙酰化谱。U-STAT3 还可能调节染色质稳定性。我们对心脏中 STAT3 的非经典基因组和线粒体作用如何与 STAT3 的经典作用相调节和协调的理解还处于初级阶段。在这里,我们概述了目前已知的 STAT3 在心脏中的多效作用,以突出争议和未解决的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db82/4671345/b78cd8187736/fcvm-02-00036-g001.jpg

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