首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Combined SAXS and computational approaches for structure determination and binding characteristics of Chimera (CtGH1-L1-CtGH5-F194A) generated by assembling beta-glucosidase (CtGH1) and a mutant endoglucanase (CtGH5-F194A) from Clostridium thermocellum
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Combined SAXS and computational approaches for structure determination and binding characteristics of Chimera (CtGH1-L1-CtGH5-F194A) generated by assembling beta-glucosidase (CtGH1) and a mutant endoglucanase (CtGH5-F194A) from Clostridium thermocellum

机译:通过组装β-葡糖苷酶(CTGH1)和来自Clostridium Thermocillum的嵌合糖苷酶(CTGH1-L1-CTGH5-F194A)产生的嵌合(CTGH1-L1-CTGH5-F194a)的结构测定和结合特征的组合和计算方法

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摘要

Chimera (CtGH1-L1-CtGH5-F194A) developed by fusing 13-glucosidase (CtGH1) at N-terminal and endoglucanase (CtGH5-F194A) at C-terminal was structurally characterized. Its secondary structure analysis by CD showed 38% alpha-helix, 9.3% beta-sheets and 52.7% random coils corroborating with prediction. In-silico modeled structure of Chimera comprised two modules, CtGH1 and CtGH5-F194A displaying (alpha/beta)(8) fold. Ramachandran plot of Chimera showed 99.9% residues in allowed region. Binding interaction of Chimera with cello-oligosaccharides suggested active forms of CtGH1 and CtGH5-F194A and their involvement in catalysis. MD simulation of cellohexaose bound endoglucanase module of Chimera showed favourable flexibility in loops, LA with H-bond formation with Asn510 and in loop LC relocation of Tyr687 away from active site efficiently releasing the product after catalysis. Higher short range interaction energy of Chimera, -383 kJ/mot than the individual endoglucanase, 254 kJ/mol against cellohexaose suggested higher efficient catalysis by Chimera.beta-Glucosidase module of Chimera showed fluctuations in outer loops suggesting conformational changes that might be contributing to improved hydrolysis. SAXS analysis of Chimera displayed monodispersed state. Guinier analysis of Chimera showed globular shape (R-g = 3.15 +/- 0.10 nm). Kratky plot confirmed fully folded and flexible behaviour in solution. Gasbor modeled structure of Chimera displayed an elongated structure with two modules having shape similar to bean-bag contour. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过在C末端在N-末端和内切葡聚糖酶(CTGH5-F194a)的熔化13-葡糖苷酶(CTGH1)开发的嵌合体(CTGH1-L1-CTGH5-F194a)在结构上表征。其二次结构分析CD显示38%α-螺旋,9.3%β-薄片和52.7%随机线圈与预测相关。嵌合体的硅模型结构包括两个模块,CTGH1和CTGH5-F194a显示(alpha / beta)(8)折叠。嵌兰的Ramachandran情节在允许的地区显示99.9%残留物。嵌合与细胞寡糖的结合相互作用提出了CTGH1和CTGH5-F194a的活性形式及其参与催化。 Celohexaose末端内切葡聚糖酶酶模块的MD模拟在环路中具有良好的柔韧性,具有H键形成的H键形成,以及在催化催化遗址中有效地释放产品的活性位点。嵌合体的较高的短距离相互作用能量,-383 kJ / mat比个体内切葡聚糖酶,254 kJ / mol对抗Cellohexaose表明Chimera.Beta-葡萄糖酶模块的嵌合糖酶模块显示出外部环的波动,表明构象变化可能导致的构象变化改善水解。嵌合棉麻展示单分散状态。嵌入式的Guinier分析显示球状(R-G = 3.15 +/- 0.10nm)。 Kratky Plot在解决方案中确认了完全折叠和灵活的行为。嵌合体的加气轴建模结构展示了一个细长的结构,两个模块具有类似于豆袋轮廓的形状。 (c)2020 Elsevier B.v.保留所有权利。

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