He Fanglian, Nair Gauri R, Soto Cinque S, Chang Yehchung, Hsu Lillian, Ronzone Erik, DeGrado William F, Binns Andrew N
Plant Science Institute, Department of Biology, University of Pennsylvania, Philadelphia, PA 19104-6018, USA.
J Bacteriol. 2009 Sep;191(18):5802-13. doi: 10.1128/JB.00451-09. Epub 2009 Jul 24.
ChvE is a chromosomally encoded protein in Agrobacterium tumefaciens that mediates a sugar-induced increase in virulence (vir) gene expression through the activities of the VirA/VirG two-component system and has also been suggested to be involved in sugar utilization. The ChvE protein has homology to several bacterial periplasmic sugar-binding proteins, such as the ribose-binding protein and the galactose/glucose-binding protein of Escherichia coli. In this study, we provide direct evidence that ChvE specifically binds the vir gene-inducing sugar d-glucose with high affinity. Furthermore, ChvE mutations resulting in altered vir gene expression phenotypes have been isolated and characterized. Three distinct categories of mutants have been identified. Strains expressing the first class are defective in both virulence and d-glucose utilization as a result of mutations to residues lining the sugar-binding cleft. Strains expressing a second class of mutants are not adversely affected in sugar binding but are defective in virulence, presumably due to impaired interactions with the sensor kinase VirA. A subset of this second class of mutants includes variants of ChvE that also result in defective sugar utilization. We propose that these mutations affect not only interactions with VirA but also interactions with a sugar transport system. Examination of a homology model of ChvE shows that the mutated residues associated with the latter two phenotypes lie in two overlapping solvent-exposed sites adjacent to the sugar-binding cleft where conformational changes associated with the binding of sugar might have a maximal effect on ChvE's interactions with its distinct protein partners.
ChvE是根癌土壤杆菌中一种由染色体编码的蛋白质,它通过VirA/VirG双组分系统的活性介导糖诱导的毒力(vir)基因表达增加,并且也被认为参与糖的利用。ChvE蛋白与几种细菌周质糖结合蛋白具有同源性,如大肠杆菌的核糖结合蛋白和半乳糖/葡萄糖结合蛋白。在本研究中,我们提供了直接证据,表明ChvE以高亲和力特异性结合诱导vir基因的糖——d-葡萄糖。此外,已分离并鉴定了导致vir基因表达表型改变的ChvE突变体。已鉴定出三类不同的突变体。表达第一类突变体的菌株在毒力和d-葡萄糖利用方面均有缺陷,这是由于糖结合裂隙内衬氨基酸发生突变所致。表达第二类突变体的菌株在糖结合方面未受到不利影响,但在毒力方面有缺陷,推测是由于与传感激酶VirA的相互作用受损。这第二类突变体的一个子集包括ChvE变体,这些变体也导致糖利用缺陷。我们提出,这些突变不仅影响与VirA的相互作用,还影响与糖转运系统的相互作用。对ChvE同源模型的研究表明,与后两种表型相关的突变残基位于糖结合裂隙附近两个重叠的溶剂暴露位点,糖结合相关的构象变化可能对ChvE与其不同蛋白质伙伴的相互作用产生最大影响。