Verma Anil Kumar, Goyal Arun
Mol Biol (Mosk). 2014 Mar-Apr;48(2):322-32.
CtXynGH30 is a carbohydrate active modular enzyme and component of cellulosome of Clostridium thermocellum. The full length CtXynGH30 contains an N-terminal catalytic module named as Xyn30A and a family 6 carbohydrate binding module (CBM6) at C-terminuis. Xyn30A was modeled by computer program Modeller9v8 taking crystal structure of XynC from B. subtilis as a template to generate the molecular model. Model refinement was done using energy minimization by implementing steepest descent algorithm with GROMOS96 43al force field. Quality assessment by Ramachandran plot showed that 91% amino acids lie in most favourable region and 9% in additional allowed region. Structural analysis depicted that Xyn30A has a (beta/alpha)8 barrel fold. Ad- ditionally, it had a beta-strand rich structure called 'side beta-structure' attached with main catalytic core. Structural superimposition reflected that Glu136 act as a catalytic acid/base while Glu225 act as a catalytic nucleophile. Multiple sequence alignment showed that these catalytic residues are conserved within the family. The docking results showed that these residues display polar interaction with linear and substituted xylo-oligosaccharides. The binding interaction of ligands depicted that aromatic amino acids Trp81, Tyr139, Trp143, Phe172, His198, Tyr200, Tyr227, Trp264 and Tyr265 create binding site pocket around the active site. We report overall structural feature, conserved active site residues and enzymeligand docking of first glucuronoxylan-xylanohydrolase (Xyn30A) of family 30 glycosyl hydrolase (GH30) from Clostridium thermocellum.
CtXynGH30是一种具有碳水化合物活性的模块化酶,也是嗜热栖热放线菌纤维小体的组成部分。全长CtXynGH30包含一个位于N端的名为Xyn30A的催化模块和一个位于C端的6型碳水化合物结合模块(CBM6)。Xyn30A通过计算机程序Modeller9v8进行建模,以枯草芽孢杆菌的XynC晶体结构为模板生成分子模型。使用GROMOS96 43al力场的最速下降算法通过能量最小化进行模型优化。通过拉氏图进行的质量评估表明,91%的氨基酸位于最有利区域,9%位于额外允许区域。结构分析表明,Xyn30A具有(β/α)8桶状折叠结构。此外,它还有一个富含β链的结构,称为“侧翼β结构”,与主要催化核心相连。结构叠加反映出Glu136作为催化酸/碱,而Glu225作为催化亲核试剂。多序列比对表明,这些催化残基在该家族中是保守的。对接结果表明,这些残基与线性和取代的木寡糖显示出极性相互作用。配体的结合相互作用表明,芳香族氨基酸Trp81、Tyr139、Trp143、Phe172、His198、Tyr200、Tyr227、Trp264和Tyr265在活性位点周围形成了结合位点口袋。我们报道了嗜热栖热放线菌30型糖基水解酶(GH30)家族的首个葡糖醛酸木聚糖-木聚糖水解酶(Xyn30A)的整体结构特征、保守的活性位点残基和酶-配体对接情况。