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阿片肽在生物学和医学中的新作用。

Emerging roles of apelin in biology and medicine.

作者信息

Kleinz Matthias J, Davenport Anthony P

机构信息

Clinical Pharmacology Unit, University of Cambridge, Level 6, Centre for Clinical Investigation, Box 110, Addenbrooke's Hospital, Cambridge, CB2 2QQ, UK.

出版信息

Pharmacol Ther. 2005 Aug;107(2):198-211. doi: 10.1016/j.pharmthera.2005.04.001.

Abstract

The family of apelin peptides is derived from a single gene and activates the 7-transmembrane G-protein-coupled receptor (GPCR) APJ. Apelins have been shown to be involved in the regulation of cardiovascular function and fluid homeostasis and interestingly represent substrates for ACE2, a carboxypeptidase recently described as a novel key enzyme in the renin-angiotensin-aldosterone system (RAS). APJ has further been reported to be a coreceptor for the infection of CD4-positive cells with HIV in the central nervous system (CNS). Apelin-36 and shorter C-terminal sequences have different potencies and efficacies in regulating these functions. Shorter sequences, especially (Pyr(1))apelin-13, are potent regulators of cardiovascular function, while longer peptides such as apelin-36 are more effective in inhibiting human immunodeficiency virus (HIV) infection by blocking the HIV coreceptor APJ. The pyroglutamate modification characteristic of the short apelin peptide (Pyr(1))apelin-13 indicates paramount biological importance of this peptide. The aim of this review is to compile conclusive evidence for the involvement of apelin/APJ in the regulation of cardiovascular function and HIV pathology, emphasizing the properties of this receptor system that may make it a successful future drug target.

摘要

阿片肽家族源自单个基因,可激活7次跨膜G蛋白偶联受体(GPCR)APJ。已证明阿片肽参与心血管功能调节和液体平衡,有趣的是,它还是血管紧张素转换酶2(ACE2)的作用底物,ACE2是一种羧肽酶,最近被描述为肾素-血管紧张素-醛固酮系统(RAS)中的一种新型关键酶。据进一步报道,APJ是中枢神经系统(CNS)中HIV感染CD4阳性细胞的共受体。阿片肽-36和较短的C末端序列在调节这些功能方面具有不同的效力和功效。较短的序列,尤其是(焦谷氨酰(1))阿片肽-13,是心血管功能的有效调节剂,而较长的肽如阿片肽-36通过阻断HIV共受体APJ在抑制人类免疫缺陷病毒(HIV)感染方面更有效。短阿片肽(焦谷氨酰(1))阿片肽-13的焦谷氨酸修饰特征表明该肽具有至关重要的生物学意义。本综述的目的是收集确凿证据,证明阿片肽/APJ参与心血管功能调节和HIV病理过程,强调该受体系统的特性,这些特性可能使其成为未来成功的药物靶点。

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