Department of Pharmacology and Toxicology, Michigan State University, East Lansing, Michigan, USA.
Cardiovascular Antisense Drug Discovery, Ionis Pharmaceuticals, Carlsbad, California, USA.
Am J Hypertens. 2020 Nov 3;33(11):975-986. doi: 10.1093/ajh/hpaa084.
The protein chemerin (tazarotene-induced gene, TIG2; RARRES2) is a relatively new adipokine. Many studies support that circulating chemerin levels associate strongly and positively with body mass index, visceral fat, and blood pressure. Here, we focus on the specific relationship of chemerin and blood pressure with the goal of understanding whether and how chemerin drives (pathological) changes in blood pressure such that it could be interfered with therapeutically. We dissect the biosynthesis of chemerin and how current antihypertensive medications change chemerin metabolism. This is followed with a review of what is known about where chemerin is synthesized in the body and what chemerin and its receptors can do to the physiological function of organs important to blood pressure determination (e.g., brain, heart, kidneys, blood vessels, adrenal, and sympathetic nervous system). We synthesize from the literature our best understanding of the mechanisms by which chemerin modifies blood pressure, with knowledge that plasma/serum levels of chemerin may be limited in their pathological relevance. This review reveals several gaps in our knowledge of chemerin biology that could be filled by the collective work of protein chemists, biologists, pharmacologists, and clinicians.
蛋白 chemerin(维 A 酸诱导基因,TIG2;RARRES2)是一种相对较新的脂肪因子。许多研究表明,循环 chemerin 水平与体重指数、内脏脂肪和血压密切正相关。在这里,我们重点关注 chemerin 与血压的特定关系,旨在了解 chemerin 是否以及如何导致血压的(病理)变化,从而可以进行治疗干预。我们剖析了 chemerin 的生物合成以及当前的抗高血压药物如何改变 chemerin 代谢。接着我们回顾了 chemerin 在体内何处合成以及 chemerin 及其受体对决定血压的重要器官的生理功能(例如,大脑、心脏、肾脏、血管、肾上腺和交感神经系统)有何影响。我们综合文献,了解 chemerin 调节血压的机制,我们知道,血浆/血清 chemerin 水平在其病理相关性方面可能受到限制。这篇综述揭示了我们对 chemerin 生物学的认识存在几个空白,这些空白可以通过蛋白质化学家、生物学家、药理学家和临床医生的共同努力来填补。