Frazier-Wood Alexis C
USDA/ARS Children's Nutrition Research Center, Baylor College of Medicine, Houston, Texas USA.
Curr Genet Med Rep. 2015 Dec;3(4):196-201. doi: 10.1007/s40142-015-0077-7. Epub 2015 Aug 29.
Lipoprotein subclass measures associate with cardiometabolic disease risk. Currently the information that lipoproteins convey on disease risk over that of traditional demographic and lipid measures is minimal, and so their use is clinics is limited. However, lipoprotein subclass perturbations represent some of the earliest manifestations of metabolic dysfunction, and their etiology is partially distinct from lipids, so information on the genetic etiology of lipoproteins offers promise for improved risk prediction, and unique mechanistic insights into IR and atherosclerosis. Here, I review the genetic variants validated as associating with lipoprotein measures to date, and show that the majority of identified variants have functionality that is best understood as related to lipid measures. Until we focus on the genes as they relate to lipoprotein subclass production, we are limiting our understanding of biological mechanisms underlying cardiometabolic disease.
脂蛋白亚类测量与心血管代谢疾病风险相关。目前,脂蛋白所传达的疾病风险信息相对于传统人口统计学和脂质测量而言非常少,因此它们在临床中的应用有限。然而,脂蛋白亚类紊乱是代谢功能障碍的一些最早表现,其病因部分与脂质不同,因此脂蛋白的遗传病因信息为改善风险预测以及对胰岛素抵抗和动脉粥样硬化的独特机制见解提供了希望。在此,我回顾了迄今为止已被证实与脂蛋白测量相关的基因变异,并表明大多数已鉴定的变异具有与脂质测量相关的最佳理解功能。在我们关注与脂蛋白亚类产生相关的基因之前,我们对心血管代谢疾病潜在生物学机制的理解是有限的。