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Catalytic Domain Architecture of Metzincin Metalloproteases

机译:Metzincin金属蛋白酶的催化域结构

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摘要

Metalloproteases cleave proteins and peptides, and deregulation of their function leads to pathology. An understanding of their structure and mechanisms of action is necessary to the development of strategies for their regulation. Among metallopeptidases are the metzincins, which are mostly multidomain proteins with ∼130–260-residue globular catalytic domains showing a common core architecture characterized by a long zinc-binding consensus motif, HEXXHXXGXX(H/D), and a methionine-containing Met-turn. Metzincins participate in unspecific protein degradation such as digestion of intake proteins and tissue development, maintenance, and remodeling, but they are also involved in highly specific cleavage events to activate or inactivate themselves or other (pro)enzymes and bioactive peptides. Metzincins are subdivided into families, and seven such families have been analyzed at the structural level: the astacins, ADAMs/adamalysins/reprolysins, serralysins, matrix metalloproteinases, snapalysins, leishmanolysins, and pappalysins. These families are reviewed from a structural point of view.
机译:金属蛋白酶切割蛋白质和肽,其功能失调导致病理。必须了解它们的结构和作用机理,以制定对其进行调节的策略。在金属肽酶中有metzincins,其主要是具有〜130-260个残基的球形催化结构域的多结构域蛋白,显示出具有长的锌结合共有基序,HEXXHXXGXX(H / D)和含有甲硫氨酸的Met-转。麦琴菌素参与非特异性蛋白质降解,例如摄入蛋白质的消化以及组织的发育,维持和重塑,但它们还参与高度特异性的裂解事件,以激活或灭活自身或其他(前)酶和生物活性肽。 Metzincins分为多个家族,并在结构水平上分析了7个此类家族:葡萄球菌素,ADAM / adamlysins / reprolysins,serralysins,基质金属蛋白酶,snaplysins,Leishmanolysins和pappalysins。从结构的角度审查了这些家族。

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