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首页> 外文期刊>Extremophiles: Life under extreme conditions >Sequence fingerprints of enzyme specificities from the glycoside hydrolase family GH57
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Sequence fingerprints of enzyme specificities from the glycoside hydrolase family GH57

机译:糖苷水解酶家族GH57酶特异性的序列指纹图谱

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The glycoside hydrolase family 57 (GH57) contains five well-established enzyme specificities: α-amylase, amylopullulanase, branching enzyme, 4-α-glucanotransferase and α-galactosidase. Around 700 GH57 members originate from Bacteria and Archaea, a substantial number being produced by thermophiles. An intriguing feature of family GH57 is that only slightly more than 2 % of its members (i. e., less than 20 enzymes) have already been biochemically characterized. The main goal of the present bioinformatics study was to retrieve from databases, and analyze in detail, sequences having clear features of the five GH57 enzyme specificities mentioned above. Of the 367 GH57 sequences, 56 were evaluated as α-amylases, 99 as amylopullulanases, 158 as branching enzymes, 46 as 4-α-glucanotransferases and 8 as α-galactosidases. Based on the analysis of collected sequences, sequence logos were created for each specificity and unique sequence features were identified within the logos. These features were proposed to define the so-called sequence fingerprints of GH57 enzyme specificities. Domain arrangements characteristic of the individual enzyme specificities as well as evolutionary relationships within the family GH57 are also discussed. The results of this study could find use in rational protein design of family GH57 amylolytic enzymes and also in the possibility of assigning a GH57 specificity to a hypothetical GH57 member prior to its biochemical characterization.
机译:糖苷水解酶家族57(GH57)包含五种公认的酶特异性:α-淀粉酶,淀粉酶,支链酶,4-α-葡糖基转移酶和α-半乳糖苷酶。大约700个GH57成员来自细菌和古细菌,其中很大一部分是由嗜热菌产生的。 GH57家族的一个令人着迷的特征是仅略微超过其成员的2%(即少于20种酶)已被生物化学表征。本生物信息学研究的主要目标是从数据库中检索并详细分析具有上述五种GH57酶特异性的明确特征的序列。在367个GH57序列中,有56个被评估为α-淀粉酶,99个被评估为支链淀粉酶,158个为分支酶,46个被评估为4-α-葡萄糖基转移酶和8个被评估为α-半乳糖苷酶。基于对收集到的序列的分析,为每种特异性创建了序列徽标,并在徽标中标识了独特的序列特征。提出了这些特征以定义所谓的GH57酶特异性的序列指纹。还讨论了个体酶特异性的结构域排列以及GH57家族内的进化关系。这项研究的结果可以用于家庭GH57淀粉分解酶的合理蛋白质设计中,也可以用于在假设的GH57成员进行生化表征之前为其指定GH57特异性。

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