Quesada-Vincens D, Fellay R, Nasim T, Viprey V, Burger U, Prome J C, Broughton W J, Jabbouri S
LBMPS, Université de Genève, Chambésy/Genèva, Switzerland.
J Bacteriol. 1997 Aug;179(16):5087-93. doi: 10.1128/jb.179.16.5087-5093.1997.
Rhizobium sp. strain NGR234 produces a large family of lipochitooligosaccharide Nod factors carrying specific substituents. Among them are 3-O- (or 4-O-) and 6-O-carbamoyl groups, an N-methyl group, and a 2-O-methylfucose residue which may bear either 3-O-sulfate or 4-O-acetyl substitutions. Investigations on the genetic control of host specificity revealed a number of loci which directly affect Nod factor structure. Here we show that insertion and frameshift mutations in the nodZ gene abolish fucosylation of Nod factors. In vitro assays using GDP-L-fucose as the fucose donor show that fucosyltransferase activity is associated with the nodZ gene product (NodZ). NodZ is located in the soluble protein fraction of NGR234 cells. Together with extra copies of the nodD1 gene, the nodZ gene and its associated nod box were introduced into ANU265, which is NGR234 cured of the symbiotic plasmid. Crude extracts of this transconjugant possess fucosyltransferase activity. Fusion of a His6 tag to the NodZ protein expressed in Escherichia coli yielded a protein able to fucosylate both nonfucosylated NodNGR factors and oligomers of chitin. NodZ is inactive on monomeric N-acetyl-D-glucosamine and on desulfated Rhizobium meliloti Nod factors. Kinetic analyses showed that the NodZ protein is more active on oligomers of chitin than on nonfucosylated NodNGR factors. Pentameric chitin is the preferred substrate. These data suggest that fucosylation occurs before acylation of the Nod factors.
根瘤菌属菌株NGR234产生一大类携带特定取代基的脂壳寡糖结瘤因子。其中包括3 - O -(或4 - O -)和6 - O -氨基甲酰基、一个N -甲基以及一个可能带有3 - O -硫酸酯或4 - O -乙酰基取代的2 - O -甲基岩藻糖残基。对宿主特异性遗传控制的研究揭示了一些直接影响结瘤因子结构的基因座。在此我们表明,nodZ基因中的插入和移码突变消除了结瘤因子的岩藻糖基化。使用GDP - L -岩藻糖作为岩藻糖供体的体外分析表明,岩藻糖基转移酶活性与nodZ基因产物(NodZ)相关。NodZ位于NGR234细胞的可溶性蛋白组分中。将nodZ基因及其相关的nod框与nodD1基因的额外拷贝一起导入已去除共生质粒的NGR234菌株ANU265中。该转接合子的粗提物具有岩藻糖基转移酶活性。将His6标签与在大肠杆菌中表达的NodZ蛋白融合,产生了一种能够使非岩藻糖基化的NodNGR因子和几丁质寡聚物岩藻糖基化的蛋白。NodZ对单体N -乙酰 - D -葡萄糖胺和去硫酸化的苜蓿根瘤菌结瘤因子无活性。动力学分析表明,NodZ蛋白对几丁质寡聚物的活性比对非岩藻糖基化的NodNGR因子的活性更高。五聚体几丁质是优选的底物。这些数据表明岩藻糖基化发生在结瘤因子酰化之前。