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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Crystal Structure of GH49 Dextranase from Arthrobacter oxidans KQ11: Identification of Catalytic Base and Improvement of Thermostability Using Semirational Design Based on B-Factors
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Crystal Structure of GH49 Dextranase from Arthrobacter oxidans KQ11: Identification of Catalytic Base and Improvement of Thermostability Using Semirational Design Based on B-Factors

机译:从Arthrobacter oxidans KQ11的GH49葡聚糖酶的晶体结构:使用基于B因子的新型设计鉴定催化基础和改善热稳定性

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摘要

The crystal structure of Dextranase from the marine bacterium Arthrobacter oxidans KQ11 (Aodex) was determined at a resolution of 1.4 angstrom. The crystal structure of the conserved Aodex fragment (A1a52-Thr638) consisted of an N-terminal domain N and a C-terminal domain C. The N-terminal domain N was identified as a beta-sandwich, connected to a right-handed parallel beta-helix at the C-terminus. Sequence comparisons, cavity regions, and key residues of the catalytic domain analysis all suggested that the Aodex was an inverting enzyme, and the catalytic acid and base were Asp439 and Asp420, respectively. Asp440 was not a general base in the Aodex catalytic domain, and Asp396 in Dex49A may not be a general base in the catalytic domain. The thermostability of the SWF mutant using semirational design based on B-factors was clearly better than that of wild-type Aodex. This process may promote the aromatic-aromatic interactions that increase the thermostability of mutant Phe357.
机译:从海洋细菌氧化物氧磷酸盐钾KQ11(AODEX)的葡聚糖酶的晶体结构以1.4埃的分辨率测定。 保守的AODEX片段(A1A52-THR638)的晶体结构由N-末端结构域N和C末端域C组成。N-末端域N被鉴定为β-三明治,连接到右手平行 β-螺旋在C-Terminus。 序列比较,腔区和催化结构域分析的关键残留物均建议AODEX是反相酶,催化酸和碱分别是ASP439和ASP420。 ASP440不是AODEX催化结构域中的一般碱,并且DEX49A中的ASP396可以不是催化结构域中的一般碱。 基于B因子的新型设计的SWF突变体的热稳定性明显优于野生型AODEX。 该方法可以促进增加突变体PHE357的热稳定性的芳族芳族相互作用。

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