Valenzuela F J, Vera J, Venegas C, Muñoz S, Oyarce S, Muñoz K, Lagunas C
Department of Basic Sciences, Universidad del Bío-Bío, Campus Fernando May, 378000 Chillán, Chile; Group of Biotechnological Sciences, Department of Basic Sciences, Universidad del Bío-Bío, Campus Fernando May, 378000 Chillán, Chile.
Department of Basic Sciences, Universidad del Bío-Bío, Campus Fernando May, 378000 Chillán, Chile.
Int J Endocrinol. 2016;2016:2746909. doi: 10.1155/2016/2746909. Epub 2016 May 22.
The circadian system is a supraphysiological system that modulates different biological functions such as metabolism, sleep-wake, cellular proliferation, and body temperature. Different chronodisruptors have been identified, such as shift work, feeding time, long days, and stress. The environmental changes and our modern lifestyle can alter the circadian system and increase the risk of developing pathologies such as cancer, preeclampsia, diabetes, and mood disorder. This system is organized by transcriptional/tranductional feedback loops of clock genes Clock, Bmal1, Per1-3, and Cry1-2. How molecular components of the clock are able to influence the development of diseases and their risk relation with genetic components of polymorphism of clock genes is unknown. This research describes different genetic variations in the population and how these are associated with risk of cancer, metabolic diseases such as diabetes, obesity, and dyslipidemias, and also mood disorders such as depression, bipolar disease, excessive alcohol intake, and infertility. Finally, these findings will need to be implemented and evaluated at the level of genetic interaction and how the environment factors trigger the expression of these pathologies will be examined.
昼夜节律系统是一个超生理系统,可调节不同的生物学功能,如新陈代谢、睡眠-觉醒、细胞增殖和体温。已确定了不同的昼夜节律紊乱因素,如轮班工作、进食时间、长时间工作和压力。环境变化和我们现代的生活方式会改变昼夜节律系统,并增加患癌症、先兆子痫、糖尿病和情绪障碍等疾病的风险。该系统由时钟基因Clock、Bmal1、Per1 - 3和Cry1 - 2的转录/转导反馈环组成。时钟的分子成分如何影响疾病的发展以及它们与时钟基因多态性的遗传成分的风险关系尚不清楚。这项研究描述了人群中的不同基因变异,以及这些变异如何与癌症、糖尿病、肥胖症和血脂异常等代谢疾病以及抑郁症、双相情感障碍、过量饮酒和不孕症等情绪障碍的风险相关。最后,这些发现需要在基因相互作用层面上得到实施和评估,并且将研究环境因素如何触发这些疾病的表达。