National Natural Science Foundation of China (Nos. 31300620, 31370674), Key Natural Science Foundation of Beijing Municipality (No. 5111001), Foundation of Beijing Municipal Education Committee (Nos. KM201310020002, KM201310020015, KM201110020001, KM201210020009), Funding Project for Academic Human Resources Development in Institutions of Higher Learning Under the Jurisdiction of Beijing Municipality (No. PHR201108279).
Glycosyltransferases (GTs) catalyze the transfer of a sugar residue of an activated sugar donor to an acceptor molecule. Many families 1 GTs utilize an uridine diphosphate (UDP) activated sugar as donor in the glycosylation reaction, and most of these belong to a group of GTs referred to as the UGTs. The relationship between the degree of amino acid sequence identity and substrate specificity of the plant UGTs is highly complicated, and the prediction of substrate specificity based on phylogenetic analyses need to be improved by more biochemical characterization. This review summarizes the three dimensional structures of plant UGTs published in the Protein Data Bank (PDB), including the detailed substrate interactions with the sugar and receptor binding pockets and mutational analyses of some critical amino acids. It will be helpful for biochemical characterization the substrate specificity of the individual UGT, and lay the foundation for the enzymatic and genetic manipulation of plant UGTs in the future.
吕鹤书,薛飞燕,柳春梅,杨明峰,马兰青. 植物尿苷二磷酸糖基转移酶超家族晶体结构[J]. Chinese Journal of Biotechnology, 2014, 30(6): 838-847
Copy® 2024 All Rights Reserved