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首页> 外文期刊>Biophysical Journal >Hypertrophic and dilated cardiomyopathy: Four decades of basic research on muscle lead to potential therapeutic approaches to these devastating genetic diseases
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Hypertrophic and dilated cardiomyopathy: Four decades of basic research on muscle lead to potential therapeutic approaches to these devastating genetic diseases

机译:肥厚性和扩张型心肌病:长达40年的肌肉基础研究导致了针对这些破坏性遗传疾病的潜在治疗方法

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摘要

With the advent of technologies to obtain the complete sequence of the human genome in a cost-effective manner, this decade and those to come will see an exponential increase in our understanding of the underlying genetics that lead to human disease. And where we have a deep understanding of the biochemical and biophysical basis of the machineries and pathways involved in those genetic changes, there are great hopes for the development of modern therapeutics that specifically target the actual machinery and pathways altered by individual mutations. Prime examples of such a genetic disease are those classes of hypertrophic and dilated cardiomyopathy that result from single amino-acid substitutions in one of several of the proteins that make up the cardiac sarcomere or from the truncation of myosin binding protein C. Hypertrophic cardiomyopathy alone affects ~1 in 500 individuals, and it is the leading cause of sudden cardiac death in young adults. Here I describe approaches to understand the molecular basis of the alterations in power output that result from these mutations. Small molecules binding to the mutant sarcomeric protein complex should be able to mitigate the effects of hypertrophic and dilated cardiomyopathy mutations at their sources, leading to possible new therapeutic approaches for these genetic diseases.
机译:随着以经济有效的方式获得人类基因组完整序列的技术的出现,在本十年及以后的十年中,我们对导致人类疾病的潜在遗传学的理解将呈指数级增长。在我们对与这些遗传变化有关的机制和途径的生化和生物物理基础有了深刻的了解的情况下,人们对于开发专门针对个体突变所改变的实际机制和途径的现代疗法抱有巨大的希望。这种遗传性疾病的主要例子是肥大性和扩张型心肌病,其归因于组成心肌肌小节的几种蛋白质之一中的单个氨基酸取代或肌球蛋白结合蛋白C的截短。仅肥大性心肌病会影响每500个人中约有1人,这是年轻人猝死的主要原因。在这里,我将介绍一些方法,以了解由这些突变导致的功率输出变化的分子基础。结合突变型肌氨酸蛋白复合物的小分子应该能够减轻肥大性和扩张型心肌病突变的影响,从而为这些遗传疾病带来新的治疗方法。

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