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人类 IIA 组磷酯酶 A-发现三十年。

Human Group IIA Phospholipase A-Three Decades on from Its Discovery.

机构信息

School of Medicine, Western Sydney University, Campbelltown, NSW 2560, Australia.

Ingham Institute of Applied Medical Research, Liverpool, NSW 2170, Australia.

出版信息

Molecules. 2021 Nov 30;26(23):7267. doi: 10.3390/molecules26237267.

Abstract

Phospholipase A (PLA) enzymes were first recognized as an enzyme activity class in 1961. The secreted (sPLA) enzymes were the first of the five major classes of human PLAs to be identified and now number nine catalytically-active structurally homologous proteins. The best-studied of these, group IIA sPLA, has a clear role in the physiological response to infection and minor injury and acts as an amplifier of pathological inflammation. The enzyme has been a target for anti-inflammatory drug development in multiple disorders where chronic inflammation is a driver of pathology since its cloning in 1989. Despite intensive effort, no clinically approved medicines targeting the enzyme activity have yet been developed. This review catalogues the major discoveries in the human group IIA sPLA field, focusing on features of enzyme function that may explain this lack of success and discusses future research that may assist in realizing the potential benefit of targeting this enzyme. Functionally-selective inhibitors together with isoform-selective inhibitors are necessary to limit the apparent toxicity of previous drugs. There is also a need to define the relevance of the catalytic function of hGIIA to human inflammatory pathology relative to its recently-discovered catalysis-independent function.

摘要

磷脂酶 A(PLA)酶于 1961 年首次被确认为一种酶活性类别。分泌型(sPLA)酶是最早被鉴定的五类人类 PLA 中的第一类,现在已经有九种催化活性结构同源的蛋白质。其中研究最深入的 IIA 组 sPLA 在感染和轻微损伤的生理反应中具有明确的作用,并作为病理性炎症的放大器。自 1989 年克隆以来,该酶一直是多种慢性炎症是病理学驱动因素的疾病的抗炎药物开发的靶点。尽管付出了巨大的努力,但目前还没有开发出针对该酶活性的临床批准药物。本文综述了人类 IIA 组 sPLA 领域的主要发现,重点介绍了可能解释这种缺乏成功的酶功能特征,并讨论了未来可能有助于实现靶向该酶的潜在益处的研究。功能选择性抑制剂与同工型选择性抑制剂相结合对于限制先前药物的明显毒性是必要的。还需要定义 hGIIA 的催化功能与人类炎症病理学的相关性,相对于其最近发现的非催化依赖性功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a771/8658914/cdbb91c52d27/molecules-26-07267-g001.jpg

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