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Molecular genetic studies of gene identification for sarcopenia

机译:少肌症基因鉴定的分子遗传学研究

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摘要

Sarcopenia, which is characterized by a progressive decrease of skeletal muscle mass and function with aging, is closely related to several common diseases (such as cardiovascular and airway diseases) and functional impairment/disability. Strong genetic determination has been reported for muscle mass and muscle strength, two most commonly recognized and studied risk phenotypes for sarcopenia, with heritability ranging from 30 to 85% for muscle strength and 45–90% for muscle mass. Sarcopenia has been the subject of increasing genetic research over the past decade. This review is designed to comprehensively summarize the most important and representative molecular genetic studies designed to identify genetic factors associated with sarcopenia. We have methodically reviewed whole-genome linkage studies in humans, quantitative trait loci mapping in animal models, candidate gene association studies, newly reported genome-wide association studies, DNA microarrays and microRNA studies of sarcopenia or related skeletal muscle phenotypes. The major results of each study are tabulated for easy comparison and reference. The findings of representative studies are discussed with respect to their influence on our present understanding of the genetics of sarcopenia. This is a comprehensive review of molecular genetic studies of gene identification for sarcopenia, and an overarching theme for this review is that the currently accumulating results are tentative and occasionally inconsistent and should be interpreted with caution pending further investigation. Consequently, this overview should enhance recognition of the need to validate/replicate the genetic variants underlying sarcopenia in large human cohorts and animal. We believe that further progress in understanding the genetic etiology of sarcopenia will provide valuable insights into important fundamental biological mechanisms underlying muscle physiology that will ultimately lead to improved ability to recognize individuals at risk for developing sarcopenia and our ability to treat this debilitating condition.
机译:肌肉减少症的特征在于骨骼肌质量和功能随着年龄的增长而逐渐减少,与几种常见疾病(如心血管疾病和气道疾病)和功能障碍/残疾密切相关。据报道,肌肉质量和肌肉强度是肌肉减少症的两种最常见的风险表型,具有很强的遗传决定性,肌肉强度的遗传力范围为30%至85%,肌肉质量的遗传力范围为45%至90%。在过去的十年中,肌肉减少症一直是基因研究的主题。这篇综述旨在全面总结最重要和最具代表性的分子遗传学研究,旨在鉴定与少肌症相关的遗传因素。我们有条不紊地审查了人类的全基因组连锁研究,动物模型中的定量性状基因座作图,候选基因关联研究,新报告的全基因组关联研究,少肌症或相关骨骼肌表型的DNA微阵列和microRNA研究。将每个研究的主要结果制成表格,以方便比较和参考。讨论了代表性研究的结果,这些研究对我们目前对少肌症遗传学的理解有影响。这是对少肌症基因鉴定的分子遗传学研究的全面综述,该综述的总体主题是当前积累的结果是暂时性的,有时是不一致的,应谨慎解释,以待进一步研究。因此,本概述应增强人们认识到需要验证/复制大型人群和动物中少肌症基础遗传变异的必要性。我们认为,进一步了解肌肉减少症的遗传病因将为深入了解肌肉生理基础的重要基本生物学机制提供宝贵的见解,这些机制最终将提高识别患有肌肉减少症风险个体的能力以及我们治疗这种虚弱状态的能力。

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  • 来源
    《Human Genetics》 |2012年第1期|p.1-31|共31页
  • 作者单位

    Laboratory of Molecular and Statistical Genetics and the Key Laboratory of Protein Chemistry and Developmental Biology of Ministry of Education, College of Life Sciences, Hunan Normal University, Changsha, 410081, Hunan, People’s Republic of China;

    Laboratory of Molecular and Statistical Genetics and the Key Laboratory of Protein Chemistry and Developmental Biology of Ministry of Education, College of Life Sciences, Hunan Normal University, Changsha, 410081, Hunan, People’s Republic of China;

    Laboratory of Molecular and Statistical Genetics and the Key Laboratory of Protein Chemistry and Developmental Biology of Ministry of Education, College of Life Sciences, Hunan Normal University, Changsha, 410081, Hunan, People’s Republic of China;

    Department of Basic Medical Science, School of Medicine, University of Missouri-Kansas City, Kansas City, MO, 64108, USA;

    Laboratory of Molecular and Sta;

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  • 入库时间 2022-08-18 01:50:07

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