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节杆菌属S37菌株菊粉酶的催化机制

Catalytic mechanism of inulinase from Arthrobacter sp. S37.

作者信息

Kim Kyoung-Yun, Nascimento Alessandro S, Golubev Alexander M, Polikarpov Igor, Kim Chung-Sei, Kang Su-Il, Kim Su-Il

机构信息

School of Agricultural Biotechnology, Seoul National University, San 56-1, Sinlim-Dong, Gwanak-Gu, Seoul 151-742, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2008 Jul 11;371(4):600-5. doi: 10.1016/j.bbrc.2008.03.126. Epub 2008 Apr 3.

Abstract

Detailed catalytic roles of the conserved Glu323, Asp460, and Glu519 of Arthrobacter sp. S37 inulinase (EnIA), a member of the glycoside hydrolase family 32, were investigated by site-directed mutagenesis and pH-dependence studies of the enzyme efficiency and homology modeling were carried out for EnIA and for D460E mutant. The enzyme efficiency (k(cat)/K(m)) of the E323A and E519A mutants was significantly lower than that of the wild-type due to a substantial decrease in k(cat), but not due to variations in K(m), consistent with their putative roles as nucleophile and acid/base catalyst, respectively. The D460A mutant was totally inactive, whereas the D460E and D460N mutants were active to some extent, revealing Asp460 as a catalytic residue and demonstrating that the presence of a carboxylate group in this position is a prerequisite for catalysis. The pH-dependence studies indicated that the pK(a) of the acid/base catalyst decreased from 9.2 for the wild-type enzyme to 7.0 for the D460E mutant, implicating Asp460 as the residue that interacts with the acid/base catalyst Glu519 and elevates its pK(a). Homology modeling and molecular dynamics simulation of the wild-type enzyme and the D460E mutant shed light on the structural roles of Glu323, Asp460, and Glu519 in the catalytic activity of the enzyme.

摘要

通过定点突变研究了节杆菌属S37菊粉酶(EnIA,糖苷水解酶家族32的成员)中保守的Glu323、Asp460和Glu519的详细催化作用,并对该酶的效率进行了pH依赖性研究,同时对EnIA和D460E突变体进行了同源建模。E323A和E519A突变体的酶效率(k(cat)/K(m))显著低于野生型,这是由于k(cat)大幅降低,而非K(m)的变化,这分别与其作为亲核试剂和酸/碱催化剂的假定作用一致。D460A突变体完全无活性,而D460E和D460N突变体在一定程度上有活性,这表明Asp460是催化残基,并证明该位置存在羧基是催化的先决条件。pH依赖性研究表明,酸/碱催化剂的pK(a)从野生型酶的9.2降至D460E突变体的7.0,这表明Asp460是与酸/碱催化剂Glu519相互作用并提高其pK(a)的残基。野生型酶和D460E突变体的同源建模和分子动力学模拟揭示了Glu323、Asp460和Glu519在该酶催化活性中的结构作用。

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