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首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Relationship of sequence and structure to specificity in the α-amylase family of enzymes
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Relationship of sequence and structure to specificity in the α-amylase family of enzymes

机译:酶的α-淀粉酶家族中序列和结构与特异性的关系

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摘要

The hydrolases and transferases that constitute the α-amylase family are multidomain proteins, but each has a catalytic domains in the form of a (β/α)_8-barrel, with the active site being at the C-terminal end of the barrel β-strands. Although the enzymes are believed to share the same catalytic acids and a common mechanism of action, they have been assigned to three separate families - 13, 70 and 77 - in the classification scheme for glycoside hydrolases and transferases that is based on amino acid sequence similarities. Each enzyme has one glutamic acid and two aspartic acid residues necessary for activity, while most enzymes of the family also contain two histidine residues critical for transition state stabilisation. These five residues occur in four short sequences conserved throughout the family, and within such sequences some key amino acid residues are related to enzyme specificity. A table is given showing motifs distinctive for each specificity as extracted from 316 sequences, which should aid in identifying the enzyme from primary structure information. Where appropriate, existing problems with identification of some enzymes of the family are pointed out. For enzymes of known three-dimensional structure, action is discussed in terms of molecular architecture. The sequence-specificity and structure-specificity relationships described may provide useful pointers for rational protein engineering.
机译:构成α-淀粉酶家族的水解酶和转移酶是多域蛋白,但每个都具有(β/α)_8桶形式的催化域,其活性位点位于桶β的C末端-股。尽管人们认为这些酶具有相同的催化酸和共同的作用机制,但在基于氨基酸序列相似性的糖苷水解酶和转移酶分类方案中,它们已被分为三个独立的家族-13、70和77 。每种酶具有一个谷氨酸残基和两个天冬氨酸残基,它们是活性所必需的,而该家族的大多数酶也含有两个对于过渡态稳定至关重要的组氨酸残基。这五个残基以整个家族中保守的四个短序列出现,并且在这些序列内一些关键的氨基酸残基与酶特异性有关。给出了一个表格,显示了从316个序列中提取的每种特异性所特有的基序,这应有助于从一级结构信息中识别酶。在适当的地方,指出了鉴定该家族某些酶的现有问题。对于已知的三维结构的酶,根据分子结构来讨论作用。所述的序列特异性和结构特异性关系可以为合理的蛋白质工程提供有用的指示。

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