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糖胺聚糖对蛋白酶活性的调节

Proteinase activity regulation by glycosaminoglycans.

作者信息

Tersariol I L S, Pimenta D C, Chagas J R, Almeida P C

机构信息

Centro Interdisciplinar de Investigação Bioquímica, Universidade de Mogi das Cruzes, Mogi das Cruzes, SP, Brasil.

出版信息

Braz J Med Biol Res. 2002 Feb;35(2):135-44. doi: 10.1590/s0100-879x2002000200001.

Abstract

There are few reports concerning the biological role and the mechanisms of interaction between proteinases and carbohydrates other than those involved in clotting. It has been shown that the interplay of enzymes and glycosaminoglycans is able to modulate the activity of different proteases and also to affect their structures. From the large number of proteases belonging to the well-known protease families and also the variety of carbohydrates described as widely distributed, only few events have been analyzed more deeply. The term "family" is used to describe a group of proteases in which every member shows an evolutionary relationship to at least one other protease. This relationship may be evident throughout the entire sequence, or at least in that part of the sequence responsible for catalytic activity. The majority of proteases belong to the serine, cysteine, aspartic or metalloprotease families. By considering the existing limited proteolysis process, in addition to the initial idea that the proteinases participate only in digestive processes, it is possible to conclude that the function of the enzymes is strictly limited to the cleavage of intended substrates since the destruction of functional proteins would result in normal tissue damage. In addition, the location as well as the eventual regulation of protease activity promoted by glycosaminoglycans can play an essential role in the development of several physiopathological conditions.

摘要

除了与凝血相关的蛋白酶和碳水化合物之间的相互作用外,关于它们的生物学作用和相互作用机制的报道很少。已经表明,酶与糖胺聚糖的相互作用能够调节不同蛋白酶的活性,并影响其结构。在众多属于著名蛋白酶家族的蛋白酶以及被描述为广泛分布的各种碳水化合物中,只有少数情况得到了更深入的分析。术语“家族”用于描述一组蛋白酶,其中每个成员与至少一种其他蛋白酶具有进化关系。这种关系可能在整个序列中都很明显,或者至少在负责催化活性的序列部分中很明显。大多数蛋白酶属于丝氨酸、半胱氨酸、天冬氨酸或金属蛋白酶家族。通过考虑现有的有限蛋白水解过程,除了蛋白酶仅参与消化过程的最初想法外,可以得出结论,酶的功能严格限于切割预期的底物,因为功能性蛋白质的破坏会导致正常组织损伤。此外,糖胺聚糖促进的蛋白酶活性的位置以及最终调节在几种生理病理状况的发展中可能起着至关重要的作用。

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