丁香假单胞菌的III型分泌伴侣蛋白保护效应蛋白免受Lon相关的降解。
Type III secretion chaperones of Pseudomonas syringae protect effectors from Lon-associated degradation.
作者信息
Losada Liliana C, Hutcheson Steven W
机构信息
Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, MD 20742, USA.
出版信息
Mol Microbiol. 2005 Feb;55(3):941-53. doi: 10.1111/j.1365-2958.2004.04438.x.
The hrp type III secretion system (TTSS) of Pseudomonas syringae translocates effector proteins into the cytoplasm of host cells. Proteolysis of HrpR by Lon has been shown to negatively regulate the hrp TTSS. The inability to bypass Lon-associated effects on the regulatory system by ectopic expression of the known regulators suggested a second site of action for Lon in TTSS-dependent effector secretion. In this study we report that TTSS-dependent effectors are subject to the proteolytic degradation that appears to be rate-limiting to secretion. The half-lives of the effectors AvrPto, AvrRpt2, HopPsyA, HopPsyB1, HopPtoB2, HopPsyV1, HopPtoG and HopPtoM were substantially higher in bacteria lacking Lon. TTSS-dependent secretion of several effectors was enhanced from Lon mutants. A primary role for chaperones appears to be protection of effectors from Lon-associated degradation prior to secretion. When coexpressed with their cognate chaperone, HopPsyB1, HopPsyV1 and HopPtoM were at least 10 times more stable in strains expressing Lon. Distinct Lon-targeting and chaperone-binding domains were identified in HopPtoM. The results imply that Lon is involved at two distinct levels in the regulation of the P. syringae TTSS: regulation of assembly of the secreton and modulation of effector secretion.
丁香假单胞菌的hrp III型分泌系统(TTSS)将效应蛋白转运到宿主细胞的细胞质中。已证明Lon对HrpR的蛋白水解作用会负向调节hrp TTSS。通过异位表达已知调节因子无法绕过Lon对调节系统的相关影响,这表明Lon在TTSS依赖性效应蛋白分泌中存在第二个作用位点。在本研究中,我们报告TTSS依赖性效应蛋白会受到蛋白水解降解,这似乎是分泌的限速步骤。在缺乏Lon的细菌中,效应蛋白AvrPto、AvrRpt2、HopPsyA、HopPsyB1、HopPtoB2、HopPsyV1、HopPtoG和HopPtoM的半衰期显著更长。Lon突变体增强了几种效应蛋白的TTSS依赖性分泌。伴侣蛋白的主要作用似乎是在分泌之前保护效应蛋白免受Lon相关的降解。当与它们的同源伴侣蛋白共表达时,HopPsyB1、HopPsyV1和HopPtoM在表达Lon的菌株中的稳定性至少提高了10倍。在HopPtoM中鉴定出了不同的Lon靶向结构域和伴侣蛋白结合结构域。结果表明,Lon在丁香假单胞菌TTSS的调节中涉及两个不同层面:分泌装置组装的调节和效应蛋白分泌的调节。