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将基因与心血管疾病相联系:基因作用与基因-环境相互作用

Linking Genes to Cardiovascular Diseases: Gene Action and Gene-Environment Interactions.

作者信息

Pasipoularides Ares

机构信息

Duke University School of Medicine, Durham, NC, USA.

Duke/NSF Research Center for Emerging Cardiovascular Technologies, Durham, NC, USA.

出版信息

J Cardiovasc Transl Res. 2015 Dec;8(9):506-27. doi: 10.1007/s12265-015-9658-9. Epub 2015 Nov 6.

Abstract

A unique myocardial characteristic is its ability to grow/remodel in order to adapt; this is determined partly by genes and partly by the environment and the milieu intérieur. In the "post-genomic" era, a need is emerging to elucidate the physiologic functions of myocardial genes, as well as potential adaptive and maladaptive modulations induced by environmental/epigenetic factors. Genome sequencing and analysis advances have become exponential lately, with escalation of our knowledge concerning sometimes controversial genetic underpinnings of cardiovascular diseases. Current technologies can identify candidate genes variously involved in diverse normal/abnormal morphomechanical phenotypes, and offer insights into multiple genetic factors implicated in complex cardiovascular syndromes. The expression profiles of thousands of genes are regularly ascertained under diverse conditions. Global analyses of gene expression levels are useful for cataloging genes and correlated phenotypes, and for elucidating the role of genes in maladies. Comparative expression of gene networks coupled to complex disorders can contribute insights as to how "modifier genes" influence the expressed phenotypes. Increasingly, a more comprehensive and detailed systematic understanding of genetic abnormalities underlying, for example, various genetic cardiomyopathies is emerging. Implementing genomic findings in cardiology practice may well lead directly to better diagnosing and therapeutics. There is currently evolving a strong appreciation for the value of studying gene anomalies, and doing so in a non-disjointed, cohesive manner. However, it is challenging for many-practitioners and investigators-to comprehend, interpret, and utilize the clinically increasingly accessible and affordable cardiovascular genomics studies. This survey addresses the need for fundamental understanding in this vital area.

摘要

心肌的一个独特特征是其为适应而生长/重塑的能力;这部分由基因决定,部分由环境和内环境决定。在“后基因组”时代,阐明心肌基因的生理功能以及环境/表观遗传因素引起的潜在适应性和 maladaptive 调节的需求正在出现。基因组测序和分析进展最近呈指数级增长,我们对心血管疾病有时存在争议的遗传基础的认识也在不断升级。当前技术可以识别各种参与不同正常/异常形态力学表型的候选基因,并深入了解涉及复杂心血管综合征的多种遗传因素。在不同条件下定期确定数千个基因的表达谱。基因表达水平的全局分析有助于对基因和相关表型进行编目,并阐明基因在疾病中的作用。与复杂疾病相关的基因网络的比较表达可以为“修饰基因”如何影响表达表型提供见解。越来越多地,对例如各种遗传性心肌病背后的遗传异常有了更全面和详细的系统理解。在心脏病学实践中应用基因组学发现很可能直接带来更好的诊断和治疗方法。目前,人们越来越重视研究基因异常的价值,并以一种连贯、统一的方式进行研究。然而,对于许多从业者和研究人员来说,理解、解释和利用临床上越来越容易获得且价格合理的心血管基因组学研究具有挑战性。本次调查满足了在这一重要领域进行基本理解的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66f7/4880019/f7eb0d7ed96d/nihms785646f1.jpg

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Insights into alternative splicing of sarcomeric genes in the heart.心肌中肌节基因可变剪接的研究进展。
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