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心脏中Med1的缺失会促进早期致死率、心脏重塑和转录重编程。

Cardiac Med1 deletion promotes early lethality, cardiac remodeling, and transcriptional reprogramming.

作者信息

Spitler Kathryn M, Ponce Jessica M, Oudit Gavin Y, Hall Duane D, Grueter Chad E

机构信息

Division of Cardiovascular Medicine, Department of Internal Medicine, Francois M. Abboud Cardiovascular Research Center, Fraternal Order of Eagles Diabetes Research Center, University of Iowa Carver College of Medicine, Iowa City, Iowa; and.

Mazankowski Alberta Heart Institute Canada Research Chair in Heart Failure, Division of Cardiology, Walter Mackenzie Health Sciences Centre, Edmonton, Alberta, Canada.

出版信息

Am J Physiol Heart Circ Physiol. 2017 Apr 1;312(4):H768-H780. doi: 10.1152/ajpheart.00728.2016. Epub 2017 Feb 3.

Abstract

The mediator complex, a multisubunit nuclear complex, plays an integral role in regulating gene expression by acting as a bridge between transcription factors and RNA polymerase II. Genetic deletion of mediator subunit 1 (Med1) results in embryonic lethality, due in large part to impaired cardiac development. We first established that Med1 is dynamically expressed in cardiac development and disease, with marked upregulation of Med1 in both human and murine failing hearts. To determine if Med1 deficiency protects against cardiac stress, we generated two cardiac-specific knockout mouse models in which Med1 is conditionally deleted (Med1cKO mice) or inducibly deleted in adult mice (Med1cKO-MCM mice). In both models, cardiac deletion of Med1 resulted in early lethality accompanied by pronounced changes in cardiac function, including left ventricular dilation, decreased ejection fraction, and pathological structural remodeling. We next defined how Med1 deficiency alters the cardiac transcriptional profile using RNA-sequencing analysis. Med1cKO mice demonstrated significant dysregulation of genes related to cardiac metabolism, in particular genes that are coordinated by the transcription factors Pgc1α, Pparα, and Errα. Consistent with the roles of these transcription factors in regulation of mitochondrial genes, we observed significant alterations in mitochondrial size, mitochondrial gene expression, complex activity, and electron transport chain expression under Med1 deficiency. Taken together, these data identify Med1 as an important regulator of vital cardiac gene expression and maintenance of normal heart function. Disruption of transcriptional gene expression is a hallmark of dilated cardiomyopathy; however, its etiology is not well understood. Cardiac-specific deletion of the transcriptional coactivator mediator subunit 1 (Med1) results in dilated cardiomyopathy, decreased cardiac function, and lethality. Med1 deletion disrupted cardiac mitochondrial and metabolic gene expression patterns.

摘要

中介体复合物是一种多亚基核复合物,通过充当转录因子与RNA聚合酶II之间的桥梁,在调节基因表达中发挥不可或缺的作用。中介体亚基1(Med1)的基因缺失会导致胚胎致死,这在很大程度上归因于心脏发育受损。我们首先证实Med1在心脏发育和疾病中动态表达,在人类和小鼠的衰竭心脏中Med1均显著上调。为了确定Med1缺陷是否能保护心脏免受应激,我们构建了两种心脏特异性敲除小鼠模型,其中Med1被条件性缺失(Med1cKO小鼠)或在成年小鼠中被诱导性缺失(Med1cKO-MCM小鼠)。在这两种模型中,Med1的心脏缺失均导致早期死亡,并伴有心脏功能的明显改变,包括左心室扩张、射血分数降低和病理性结构重塑。接下来,我们使用RNA测序分析来确定Med1缺陷如何改变心脏转录谱。Med1cKO小鼠表现出与心脏代谢相关基因的显著失调,特别是由转录因子Pgc1α、Pparα和Errα协调的基因。与这些转录因子在线粒体基因调控中的作用一致,我们观察到在Med1缺陷情况下线粒体大小、线粒体基因表达、复合物活性和电子传递链表达均有显著改变。综上所述,这些数据确定Med1是心脏重要基因表达和正常心脏功能维持的重要调节因子。转录基因表达的破坏是扩张型心肌病的一个标志;然而,其病因尚不完全清楚。心脏特异性缺失转录共激活因子中介体亚基1(Med1)会导致扩张型心肌病、心脏功能下降和死亡。Med1缺失扰乱了心脏线粒体和代谢基因的表达模式。

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