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内皮素-1的合成与降解

Synthesis and degradation of endothelin-1.

作者信息

D'Orléans-Juste P, Plante M, Honoré J C, Carrier E, Labonté J

机构信息

Department of Pharmacology, Medical School, Institut de pharmacologie de Sherbrooke, Université de Sherbrooke, 3001 12th Avenue North, Sherbrooke, QC J1H 5N4, Canada.

出版信息

Can J Physiol Pharmacol. 2003 Jun;81(6):503-10. doi: 10.1139/y03-032.

DOI:10.1139/y03-032
PMID:12839262
Abstract

The endothelin-converting enzyme (ECE) is the main enzyme responsible for the genesis of the potent pressor peptide endothelin-1 (ET-1). It is suggested that the ECE is pivotal in the genesis of ET-1, considering that the knockout of both genes generates the same lethal developments during the embryonic stage. Several isoforms of the ECE have been disclosed, namely ECE-1, ECE-2, and ECE-3. Within each of the first two groups, several sub-isoforms derived through splicing of single genes have also been identified. In this review, the characteristics of each sub-isoform for ECE-1 and 2 will be discussed. It is important to mention that the ECE is, however, not the sole enzyme involved in the genesis of endothelins. Indeed, other moieties, such as chymase and matrix metalloproteinase II, have been suggested to be involved in the production of ET intermediates, such as ET-1 (1-31) and ET-1 (1-32), respectively. Other enzymes, such as the neutral endopeptidase 24-11, is curiously not only involved in the degradation and inactivation of ET-1, but is also responsible for the final production of the peptide via the hydrolysis of ET-1 (1-31). In this review, we will attempt to summarize, through the above-mentioned characteristics, the current wisdom on the role of these different enzymes in the genesis and termination of effect of the most potent pressor peptide reported to date.

摘要

内皮素转化酶(ECE)是负责生成强效升压肽内皮素-1(ET-1)的主要酶。鉴于两个基因的敲除在胚胎期会产生相同的致死性发育情况,提示ECE在ET-1的生成中起关键作用。已发现ECE有几种同工型,即ECE-1、ECE-2和ECE-3。在前两组中的每一组内,还鉴定出了通过单个基因剪接产生的几种亚型。在本综述中,将讨论ECE-1和2各亚型的特征。然而,必须指出的是,ECE并非参与内皮素生成的唯一酶。实际上,其他一些成分,如糜酶和基质金属蛋白酶II,分别被认为参与了ET中间体如ET-1(1-31)和ET-1(1-32)的生成。另一些酶,如中性内肽酶24-11,奇怪的是它不仅参与ET-1的降解和失活,还通过水解ET-1(1-31)负责该肽的最终生成。在本综述中,我们将试图通过上述特征总结目前关于这些不同酶在迄今为止报道的最强效升压肽的生成及作用终止中所起作用的认识。

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