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心脏肥大:一个转化医学的问题。

Cardiac hypertrophy: a matter of translation.

作者信息

Hannan R D, Jenkins A, Jenkins A K, Brandenburger Y

机构信息

Gene Transcription Laboratory, Baker Medical Research Institute, Melbourne, Victoria, Australia.

出版信息

Clin Exp Pharmacol Physiol. 2003 Aug;30(8):517-27. doi: 10.1046/j.1440-1681.2003.03873.x.

Abstract
  1. Left ventricular hypertrophy (LVH) of the heart is an adaptive response to sustained increases in blood pressure and hormone imbalances. Left ventricular hypertrophy is associated with programmed responses at the molecular and biochemical level in different subsets of cardiac cells, including the cardiac muscle cells (cardiomyocytes), fibroblasts, conductive tissue and coronary vasculature. 2. Regardless of the initiating cause, the actual increase in chamber enlargement is, in each case, due to an increase in size of a pre-existing cardiomyocyte population, with little or no change in their number; a process referred to as cellular hypertrophy. 3. An accelerated rate of global protein synthesis is the primary mechanism by which protein accumulation increases during cardiomyocyte hypertrophy. In turn, increased rates of synthesis are a result of increased translational rates of existing ribosomes (translational efficiency) and/or synthesis and recruitment of additional ribosomes (translational capacity). 4. The present review examines the relative importance of translational capacity and translational efficiency in the response of myocytes to acute and chronic demands for increased protein synthesis and the role of these mechanisms in the development of LVH.
摘要
  1. 心脏左心室肥厚(LVH)是对血压持续升高和激素失衡的一种适应性反应。左心室肥厚与不同类型心脏细胞(包括心肌细胞、成纤维细胞、传导组织和冠状血管)在分子和生化水平上的程序性反应有关。2. 无论引发原因如何,在每种情况下,心室扩大的实际增加都是由于预先存在的心肌细胞群体大小增加,而其数量几乎没有变化或没有变化;这一过程称为细胞肥大。3. 整体蛋白质合成速率加快是心肌细胞肥大期间蛋白质积累增加的主要机制。反过来,合成速率的增加是现有核糖体翻译速率增加(翻译效率)和/或额外核糖体的合成与募集(翻译能力)的结果。4. 本综述探讨了翻译能力和翻译效率在心肌细胞对急性和慢性蛋白质合成增加需求的反应中的相对重要性,以及这些机制在左心室肥厚发展中的作用。

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