细菌氨基肽酶的性质和功能。

Acta microbiologica Polonica Pub Date : 2003-01-01
Urszula Jankiewicz, Wiesław Bielawski
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引用次数: 0

摘要

氨基肽酶是从寡肽、多肽和蛋白质中释放n端氨基残基的酶。氨基肽酶的分类通常基于催化机理、活性位点结构、底物特异性、动力学和分子性质。细菌氨基肽酶的催化机制可分为三大类:金属氨基肽酶、半胱氨酸氨基肽酶和丝氨酸氨基肽酶。根据它们的底物特异性,酶可以分为两个亚组:具有广泛的特异性或狭窄的特异性。几乎一半的特征氨基肽酶显示亚基结构。具有四级结构的酶通常由2,4,6个亚基组合而成。细菌的氨肽酶可能定位于细胞质、膜上、与包膜相关或分泌到细胞外介质中。氨基肽酶合成的调控被认为主要发生在转录水平上。大多数编码这些酶的基因是单顺反子的,并且含有与sigma70因子相关的RNA聚合酶转录的基因的启动子特征。氨基肽酶在蛋白质周转的初始和最后阶段发挥重要作用,并参与几种特定的调节功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The properties and functions of bacterial aminopeptidases.

Aminopeptidases are enzymes that release N-terminal amino residues from oligopeptides, polypeptides and proteins. The classification of aminopeptidases has often been based on mechanism of catalysis, structure of active site, substrate specificity kinetic and molecular properties. In terms of catalytic mechanism bacterial aminopeptidases can be divided into three main catalytic groups: metallo-, cysteine- and serine aminopeptidases. According to their substrate specificity the enzymes can be ordered into two sub-groups: having broad or narrow specificity. Almost half of the characterized aminopeptidases show a subunit structure. Enzymes having a quaternary structure are most often built of a combination of 2, 4, 6 subunits. Bacterial aminopeptidases may be localised in the cytoplasm, on membranes, associated with the envelope or secreted into the extracellular media. Regulation of the synthesis of aminopeptidases is assumed to take place mainly at the level of transcription. Most genes encoding the enzymes are monocistronic and contain a promotor characteristic for the genes transcribed by RNA polymerase associated with the factor sigma70. Aminopeptidases play an important role in the initial and final steps of protein turnover and they are involved in several specific regulatory functions.

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