Xu Hui, Minagawa Kazuyuki, Bai Linquan, Deng Zixin, Mahmud Taifo
Department of Pharmaceutical Sciences, Oregon State University, Corvallis, Oregon 97331-3507, USA.
J Nat Prod. 2008 Jul;71(7):1233-6. doi: 10.1021/np800185k. Epub 2008 Jun 19.
ValG is a glycosyltransferase (GT) that is responsible for the glucosylation of validoxylamine A to validamycin A. To explore the potential utilization of ValG as a tool for the production of validamycin analogues, a number of nucleotidyldiphosphate-sugars were evaluated as alternative substrates for ValG. The results indicated that in addition to its natural substrate, UDP-glucose, ValG also efficiently utilized UDP-galactose as sugar donor and resulted in the production of an unnatural compound, 4''-epi-validamycin A. The new compound demonstrated a moderate growth inhibitory activity against the plant fungal pathogen Rhizoctonia solani (= Pellicularia sasakii). A comparative analysis of ValG with its homologous proteins revealed that ValG contains an unusual DTG motif, in place of the DXD motif proposed for metal ion binding and/or NDP-sugar binding and commonly found in other glycosyltransferases. Site-directed mutagenesis of the DTG motif of ValG to DCD altered its preferences for metal ion binding, but did not seem to affect its substrate specificity.
ValG是一种糖基转移酶(GT),负责将井冈霉胺A糖基化为井冈霉素A。为了探索ValG作为生产井冈霉素类似物工具的潜在用途,评估了多种核苷二磷酸糖作为ValG的替代底物。结果表明,除了其天然底物尿苷二磷酸葡萄糖(UDP-葡萄糖)外,ValG还能有效利用尿苷二磷酸半乳糖(UDP-半乳糖)作为糖供体,并产生一种非天然化合物4''-表井冈霉素A。这种新化合物对植物真菌病原菌立枯丝核菌(= 齐整小核菌)表现出中等程度的生长抑制活性。对ValG与其同源蛋白的比较分析表明,ValG含有一个不寻常的DTG基序,取代了其他糖基转移酶中常见的、用于金属离子结合和/或核苷二磷酸糖结合的DXD基序。将ValG的DTG基序定点突变为DCD改变了其对金属离子结合的偏好,但似乎不影响其底物特异性。