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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Three-dimensional models and structure analysis of corynemycolyltransferases in Corynebacterium glutamicum and Corynebacterium efficiens
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Three-dimensional models and structure analysis of corynemycolyltransferases in Corynebacterium glutamicum and Corynebacterium efficiens

机译:谷氨酸棒杆菌和高效棒状杆菌中棒状霉菌基转移酶的三维模型和结构分析

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The corynemycolyltransferase proteins were identified from Corynebacterium glutamicum and Corynebacterium efficiens genomes using computational tools available in the public domain. Three-dimensional models were constructed for corynemycolyltransferases based on the crystal structures of related mycolyltransferases in Mycobacterium tuberculosis using the comparative modeling methods. The corynemycolyltransferases share overall an alpha/beta-fold characteristic of the mycolyltransferases despite low sequence identity (<20%) shared by some of the corynemycolyltransferases. However, a significant difference is observed in the region between amino acid residues Trp82-Trp97 and Ala222-Asn223 corresponding to mycolyltransferases. The specificity pockets defined by interactions with the trehalose substrate observed in the crystal structure complex of Ag85B mycolyltransferase (PDB code: 1FOP) suggests that trehalose may not bind some corynemycolyltransferases. This is due to critical mutations in corynemycolyltransferase binding subsites that lead to loss of equivalent side-chain interactions with trehalose and unfavorable steric interactions, particularly, in the case of cmytC gene and the protein corresponding to the gene identifier CE0356 with the equivalent Ala222-Asn223 "long insertion loop". Further, the fibronectin binding region (Phe58-Val69), in mycolyltransferases associated with mediating host-pathogen interactions in M. tuberculosis comprises amino acid residue mutations in the corresponding region in the soil bacterium-Corynebacterium corynemycolyltransferases, that suggest a different epitope and therefore possible lack of binding to fibronectin. The corynemycolyltransferase cmytA responsible for the cell shape formation and for maintaining the cell surface integrity is associated with a C-terminal domain that we have recently shown to comprise tandem amino acid sequence repeats that is likely to be associated with a regular secondary structural motif. (C) 2004 Elsevier B.V. All rights reserved.
机译:使用公共领域中可用的计算工具,从谷氨酸棒杆菌和高效棒状杆菌基因组中鉴定了棒状杆菌烯基转移酶蛋白。使用比较建模方法,基于结核分枝杆菌中相关霉菌基转移酶的晶体结构,构建了棒状霉菌烯基转移酶的三维模型。尽管某些炔烃基转移酶具有较低的序列同一性(<20%),但炔烃基转移酶总体上具有霉菌基转移酶的α/β-折叠特征。然而,在对应于麦考糖基转移酶的氨基酸残基Trp82-Trp97和Ala222-Asn223之间的区域中观察到显着差异。通过在Ag85B麦考糖基转移酶(PDB代码:1FOP)的晶体结构复合物中观察到的与海藻糖底物的相互作用所定义的特异性口袋表明,海藻糖可能不结合某些棒状麦考糖基转移酶。这是由于棒状炔醇基转移酶结合亚位点的关键突变导致与海藻糖的等效侧链相互作用丧失和不利的空间相互作用,特别是在cmytC基因和对应于基因标识符CE0356的蛋白具有等效的Ala222-Asn223 “长插入循环”。此外,与介导结核分枝杆菌中的宿主-病原体相互作用有关的分枝杆菌转移酶中的纤连蛋白结合区(Phe58-Val69)在土壤细菌-棒状杆菌棒状结肠醇基转移酶的相应区域中包含氨基酸残基突变,这表明存在不同的表位,因此可能缺乏与纤连蛋白的结合。负责细胞形状形成和维持细胞表面完整性的棒状炔基转移酶cmytA与我们最近显示的串联氨基酸序列重复序列(可能与规则的二级结构基序相关)的C末端结构域相关。 (C)2004 Elsevier B.V.保留所有权利。

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