Molecular analysis of hyperthermophilic endoglucanase Cel12B from Thermotoga maritima and the properties of its functional residues

Q3 Biochemistry, Genetics and Molecular Biology BMC Structural Biology Pub Date : 2014-02-17 DOI:10.1186/1472-6807-14-8
Hao Shi, Yu Zhang, Liangliang Wang, Xun Li, Wenqian Li, Fei Wang, Xiangqian Li
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引用次数: 7

Abstract

Although many hyperthermophilic endoglucanases have been reported from archaea and bacteria, a complete survey and classification of all sequences in these species from disparate evolutionary groups, and the relationship between their molecular structures and functions are lacking. The completion of several high-quality gene or genome sequencing projects provided us with the unique opportunity to make a complete assessment and thorough comparative analysis of the hyperthermophilic endoglucanases encoded in archaea and bacteria.

Structure alignment of the 19 hyperthermophilic endoglucanases from archaea and bacteria which grow above 80°C revealed that Gly30, Pro63, Pro83, Trp115, Glu131, Met133, Trp135, Trp175, Gly227 and Glu229 are conserved amino acid residues. In addition, the average percentage composition of residues cysteine and histidine of 19 endoglucanases is only 0.28 and 0.74 while it is high in thermophilic or mesophilic one. It can be inferred from the nodes that there is a close relationship among the 19 protein from hyperthermophilic bacteria and archaea based on phylogenetic analysis. Among these conserved amino acid residues, as far as Cel12B concerned, two Glu residues might be the catalytic nucleophile and proton donor, Gly30, Pro63, Pro83 and Gly227 residues might be necessary to the thermostability of protein, and Trp115, Met133, Trp135, Trp175 residues is related to the binding of substrate. Site-directed mutagenesis results reveal that Pro63 and Pro83 contribute to the thermostability of Cel12B and Met133 is confirmed to have role in enhancing the binding of substrate.

The conserved acids have been shown great importance to maintain the structure, thermostability, as well as the similarity of the enzymatic properties of those proteins. We have made clear the function of these conserved amino acid residues in Cel12B protein, which is helpful in analyzing other undetailed molecular structure and transforming them with site directed mutagenesis, as well as providing the theoretical basis for degrading cellulose from woody and herbaceous plants.

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海洋热藻超嗜热内切葡聚糖酶Cel12B的分子分析及其功能残基的性质
尽管已有报道称从古细菌和细菌中发现了许多超嗜热内切葡聚糖酶,但对这些物种中不同进化类群的所有序列的完整调查和分类,以及它们的分子结构和功能之间的关系尚缺乏。几个高质量基因或基因组测序项目的完成为我们提供了一个独特的机会,对古细菌和细菌中编码的超嗜热内切葡聚糖酶进行完整的评估和彻底的比较分析。对生长在80℃以上的古菌和细菌的19种超耐热内切葡聚糖酶的结构比对表明,Gly30、Pro63、Pro83、Trp115、Glu131、Met133、Trp135、Trp175、Gly227和Glu229为保守氨基酸残基。此外,19种内切葡聚糖酶残基半胱氨酸和组氨酸的平均百分比组成仅为0.28和0.74,而嗜热和嗜中温酶残基组成较高。通过系统发育分析可以推断,这19种来自嗜热细菌的蛋白与古生菌之间存在密切的亲缘关系。在这些保守的氨基酸残基中,就Cel12B而言,两个Glu残基可能是催化亲核试剂和质子供体,Gly30、Pro63、Pro83和Gly227残基可能是蛋白质热稳定性所必需的,Trp115、Met133、Trp135、Trp175残基与底物的结合有关。定点诱变结果表明,Pro63和Pro83参与了Cel12B的热稳定性,而Met133则参与了增强底物结合的作用。保守的氨基酸对于维持蛋白质的结构、热稳定性以及酶性质的相似性具有重要意义。我们已经明确了Cel12B蛋白中这些保守氨基酸残基的功能,这有助于分析其他不详细的分子结构并进行定点诱变改造,同时也为木质和草本植物纤维素的降解提供了理论依据。
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来源期刊
CiteScore
3.60
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: BMC Structural Biology is an open access, peer-reviewed journal that considers articles on investigations into the structure of biological macromolecules, including solving structures, structural and functional analyses, and computational modeling.
期刊最新文献
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