Johansson Patrik, Brumer Harry, Baumann Martin J, Kallas Asa M, Henriksson Hongbin, Denman Stuart E, Teeri Tuula T, Jones T Alwyn
Department of Cell and Molecular Biology, Uppsala University, BMC, S-75124 Uppsala, Sweden.
Plant Cell. 2004 Apr;16(4):874-86. doi: 10.1105/tpc.020065. Epub 2004 Mar 12.
Xyloglucan endotransglycosylases (XETs) cleave and religate xyloglucan polymers in plant cell walls via a transglycosylation mechanism. Thus, XET is a key enzyme in all plant processes that require cell wall remodeling. To provide a basis for detailed structure-function studies, the crystal structure of Populus tremula x tremuloides XET16A (PttXET16A), heterologously expressed in Pichia pastoris, has been determined at 1.8-A resolution. Even though the overall structure of PttXET16A is a curved beta-sandwich similar to other enzymes in the glycoside hydrolase family GH16, parts of its substrate binding cleft are more reminiscent of the distantly related family GH7. In addition, XET has a C-terminal extension that packs against the conserved core, providing an additional beta-strand and a short alpha-helix. The structure of XET in complex with a xyloglucan nonasaccharide, XLLG, reveals a very favorable acceptor binding site, which is a necessary but not sufficient prerequisite for transglycosylation. Biochemical data imply that the enzyme requires sugar residues in both acceptor and donor sites to properly orient the glycosidic bond relative to the catalytic residues.
木葡聚糖内转糖基酶(XETs)通过转糖基化机制切割并重新连接植物细胞壁中的木葡聚糖聚合物。因此,XET是所有需要细胞壁重塑的植物过程中的关键酶。为了给详细的结构-功能研究提供基础,已在毕赤酵母中异源表达的毛果杨×美洲黑杨XET16A(PttXET16A)的晶体结构已在1.8埃分辨率下确定。尽管PttXET16A的整体结构是类似于糖苷水解酶家族GH16中其他酶的弯曲β-折叠,但它的部分底物结合裂隙更让人联想到远亲家族GH7。此外,XET有一个C端延伸结构,它靠在保守核心上,提供了一条额外的β-链和一个短α-螺旋。XET与木葡聚糖九糖XLLG的复合物结构揭示了一个非常有利的受体结合位点,这是转糖基化的必要但不充分前提条件。生化数据表明,该酶在受体和供体位点都需要糖残基,以便相对于催化残基正确定位糖苷键。