通过对植物液泡转化酶和果糖基转移酶的突变分析揭示了一个决定糖基转移的受体-底物结合位点。

An acceptor-substrate binding site determining glycosyl transfer emerges from mutant analysis of a plant vacuolar invertase and a fructosyltransferase.

作者信息

Altenbach Denise, Rudiño-Pinera Enrique, Olvera Clarita, Boller Thomas, Wiemken Andres, Ritsema Tita

机构信息

Zürich-Basel Plant Science Center, Botanisches Institut der Universität Basel, Hebelstrasse 1, 4056 Basel, Switzerland.

出版信息

Plant Mol Biol. 2009 Jan;69(1-2):47-56. doi: 10.1007/s11103-008-9404-7. Epub 2008 Sep 28.

Abstract

Glycoside hydrolase family 32 (GH32) harbors hydrolyzing and transglycosylating enzymes that are highly homologous in their primary structure. Eight amino acids dispersed along the sequence correlated with either hydrolase or glycosyltransferase activity. These were mutated in onion vacuolar invertase (acINV) according to the residue in festuca sucrose:sucrose 1-fructosyltransferase (saSST) and vice versa. acINV(W440Y) doubles transferase capacity. Reciprocally, saSST(C223N) and saSST(F362Y) double hydrolysis. SaSST(N425S) shows a hydrolyzing activity three to four times its transferase activity. Interestingly, modeling acINV and saSST according to the 3D structure of crystallized GH32 enzymes indicates that mutations saSST(N425S), acINV(W440Y), and the previously reported acINV(W161Y) reside very close together at the surface in the entrance of the active-site pocket. Residues in- and outside the sucrose-binding box determine hydrolase and transferase capabilities of GH32 enzymes. Modeling suggests that residues dispersed along the sequence identify a location for acceptor-substrate binding in the 3D structure of fructosyltransferases.

摘要

糖苷水解酶家族32(GH32)包含水解酶和转糖基酶,它们在一级结构上高度同源。沿着序列分散的八个氨基酸与水解酶或糖基转移酶活性相关。根据羊茅蔗糖:蔗糖1-果糖基转移酶(saSST)中的残基对洋葱液泡转化酶(acINV)中的这些氨基酸进行突变,反之亦然。acINV(W440Y)使转移酶活性加倍。相应地,saSST(C223N)和saSST(F362Y)使水解活性加倍。saSST(N425S)的水解活性是其转移酶活性的三到四倍。有趣的是,根据结晶的GH32酶的三维结构对acINV和saSST进行建模表明,突变体saSST(N425S)、acINV(W440Y)以及先前报道的acINV(W161Y)在活性位点口袋入口处的表面非常靠近。蔗糖结合盒内外的残基决定了GH32酶的水解和转移能力。建模表明,沿着序列分散的残基确定了果糖基转移酶三维结构中受体底物结合的位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe15/2709226/7f406c7d9790/11103_2008_9404_Fig1_HTML.jpg

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