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分泌型磷脂酶 A2:从蛇伤中毒到多种与炎症相关的人类疾病——它们的活性有何奥秘?

Secretory Phospholipases A2, from Snakebite Envenoming to a Myriad of Inflammation Associated Human Diseases-What Is the Secret of Their Activity?

机构信息

CNR of Italy, Neuroscience Institute, Viale G. Colombo 3, 35131 Padova, Italy.

出版信息

Int J Mol Sci. 2023 Jan 13;24(2):1579. doi: 10.3390/ijms24021579.

Abstract

Secreted phospholipases of type A2 (sPLA2s) are proteins of 14-16 kDa present in mammals in different forms and at different body sites. They are involved in lipid transformation processes, and consequently in various immune, inflammatory, and metabolic processes. sPLA2s are also major components of snake venoms, endowed with various toxic and pharmacological properties. The activity of sPLA2s is not limited to the enzymatic one but, through interaction with different types of molecules, they exert other activities that are still little known and explored, both outside and inside the cells, as they can be endocytosed. The aim of this review is to analyze three features of sPLA2s, yet under-explored, knowledge of which could be crucial to understanding the activity of these proteins. The first feature is their disulphide bridge pattern, which has always been considered immutable and necessary for their stability, but which might instead be modulable. The second characteristic is their ability to undergo various post-translational modifications that would control their interaction with other molecules. The third feature is their ability to participate in active molecular condensates both on the surface and within the cell. Finally, the implications of these features in the design of anti-inflammatory drugs are discussed.

摘要

分泌型 PLA2(sPLA2)是哺乳动物中存在的不同形式和不同部位的 14-16 kDa 的蛋白质。它们参与脂质转化过程,因此参与各种免疫、炎症和代谢过程。sPLA2 也是蛇毒的主要成分,具有多种毒性和药理学特性。sPLA2 的活性不仅限于酶活性,而且通过与不同类型的分子相互作用,它们还发挥其他尚未充分了解和探索的活性,无论是在细胞内外,因为它们可以被内吞。本综述的目的是分析 sPLA2 的三个特征,这些特征尚未得到充分探索,对这些蛋白质活性的了解可能至关重要。第一个特征是它们的二硫键模式,该模式一直被认为是不可改变的,是其稳定性所必需的,但实际上可能是可调节的。第二个特征是它们能够进行各种翻译后修饰,从而控制它们与其他分子的相互作用。第三个特征是它们能够参与细胞表面和细胞内的活性分子凝聚物。最后,讨论了这些特征在抗炎药物设计中的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c76/9863470/8fdb871deb8d/ijms-24-01579-g001.jpg

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