Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, São Paulo, São Paulo, Brazil.
PLoS One. 2011 Mar 9;6(3):e17614. doi: 10.1371/journal.pone.0017614.
Bacterial type III secretion systems deliver protein virulence factors to host cells. Here we characterize the interaction between HrpB2, a small protein secreted by the Xanthomonas citri subsp. citri type III secretion system, and the cytosolic domain of the inner membrane protein HrcU, a paralog of the flagellar protein FlhB. We show that a recombinant fragment corresponding to the C-terminal cytosolic domain of HrcU produced in E. coli suffers cleavage within a conserved Asn264-Pro265-Thr266-His267 (NPTH) sequence. A recombinant HrcU cytosolic domain with N264A, P265A, T266A mutations at the cleavage site (HrcU(AAAH)) was not cleaved and interacted with HrpB2. Furthermore, a polypeptide corresponding to the sequence following the NPTH cleavage site also interacted with HrpB2 indicating that the site for interaction is located after the NPTH site. Non-polar deletion mutants of the hrcU and hrpB2 genes resulted in a total loss of pathogenicity in susceptible citrus plants and disease symptoms could be recovered by expression of HrpB2 and HrcU from extrachromossomal plasmids. Complementation of the ΔhrcU mutant with HrcU(AAAH) produced canker lesions similar to those observed when complemented with wild-type HrcU. HrpB2 secretion however, was significantly reduced in the ΔhrcU mutant complemented with HrcU(AAAH,) suggesting that an intact and cleavable NPTH site in HrcU is necessary for total functionally of T3SS in X. citri subsp. citri. Complementation of the ΔhrpB2 X. citri subsp. citri strain with a series of hrpB2 gene mutants revealed that the highly conserved HrpB2 C-terminus is essential for T3SS-dependent development of citrus canker symptoms in planta.
细菌 III 型分泌系统将蛋白毒性因子输送到宿主细胞。在这里,我们描述了由柑橘黄单胞菌亚种。柑橘三型分泌系统分泌的小蛋白 HrpB2 与内膜蛋白 HrcU 的胞质结构域之间的相互作用,HrcU 是鞭毛蛋白 FlhB 的同源物。我们表明,在大肠杆菌中产生的对应于 HrcU 胞质结构域的 C 末端的重组片段在保守的 Asn264-Pro265-Thr266-His267(NPTH)序列内发生切割。在切割位点(HrcU(AAAH))处具有 N264A、P265A、T266A 突变的重组 HrcU 胞质结构域未被切割并与 HrpB2 相互作用。此外,与 NPTH 切割位点之后的序列相对应的多肽也与 HrpB2 相互作用,表明相互作用的位点位于 NPTH 位点之后。hrcU 和 hrpB2 基因的非极性缺失突变导致在易感柑橘植物中完全丧失致病性,并且可以通过从额外染色体质粒表达 HrpB2 和 HrcU 来恢复疾病症状。与野生型 HrcU 互补时,HrcU(AAAH)产生的 ΔhrcU 突变体的补体可产生溃疡病变,与观察到的相似。然而,在与 HrcU(AAAH)互补的 ΔhrcU 突变体中,HrpB2 分泌显著减少,这表明 HrcU 中完整且可切割的 NPTH 位点对于 X 的三型分泌系统的完全功能是必要的。柑橘亚种。用一系列 hrpB2 基因突变体对柑橘黄单胞菌亚种的 ΔhrpB2 菌株进行互补表明,高度保守的 HrpB2 C 末端对于 T3SS 依赖的柑橘溃疡症状在植物体内的发育是必需的。