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将代谢性疾病与PGC-1α基因Gly482Ser多态性联系起来

Linking Metabolic Disease With the PGC-1α Gly482Ser Polymorphism.

作者信息

Vandenbeek Roxanne, Khan Naveen P, Estall Jennifer L

机构信息

Institut de recherches cliniques de Montreal, Montreal, Quebec, Canada.

Division of Experimental Medicine, McGill University, Montreal, Quebec, Canada.

出版信息

Endocrinology. 2018 Feb 1;159(2):853-865. doi: 10.1210/en.2017-00872.

Abstract

Peroxisome proliferator-activated receptor γ coactivator 1-α (PGC-1α) is a highly conserved transcriptional coactivator enriched in metabolically active tissues including liver, adipose, pancreas, and muscle. It plays a role in regulating whole body energy metabolism and its deregulation has been implicated in type 2 diabetes (T2D). A single nucleotide variant of the PPARGC1A gene (rs8192678) is associated with T2D susceptibility, relative risk of obesity and insulin resistance, and lower indices of β cell function. This common polymorphism is within a highly conserved region of the bioactive protein and leads to a single amino acid substitution (glycine 482 to serine). Its prevalence and effects on metabolic parameters appear to vary depending on factors including ethnicity and sex, suggesting important interactions between genetics and cultural/environmental factors and associated disease risk. Interestingly, carriers of the serine allele respond better to some T2D interventions, illustrating the importance of understanding functional impacts of genetic variance on PGC-1α when targeting this pathway for personalized medicine. This review summarizes a growing body of literature surrounding possible links between the PGC-1α Gly482Ser single nucleotide polymorphism and diabetes, with focus on key clinical findings, affected metabolic systems, potential molecular mechanisms, and the influence of geographical or ethnic background on associated risk.

摘要

过氧化物酶体增殖物激活受体γ共激活因子1-α(PGC-1α)是一种高度保守的转录共激活因子,在包括肝脏、脂肪、胰腺和肌肉在内的代谢活跃组织中含量丰富。它在调节全身能量代谢中发挥作用,其失调与2型糖尿病(T2D)有关。PPARGC1A基因的一个单核苷酸变体(rs8192678)与T2D易感性、肥胖和胰岛素抵抗的相对风险以及β细胞功能指标降低有关。这种常见的多态性位于生物活性蛋白的高度保守区域内,会导致单个氨基酸替换(甘氨酸482替换为丝氨酸)。其患病率以及对代谢参数的影响似乎因种族和性别等因素而异,这表明遗传因素与文化/环境因素之间存在重要相互作用以及相关的疾病风险。有趣的是,丝氨酸等位基因携带者对某些T2D干预措施反应更好,这说明了在将该途径作为个性化医疗靶点时,了解基因变异对PGC-1α功能影响的重要性。本综述总结了围绕PGC-1α Gly482Ser单核苷酸多态性与糖尿病之间可能联系的越来越多的文献,重点关注关键临床发现、受影响的代谢系统及其潜在分子机制,以及地理或种族背景对相关风险的影响。

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