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HrpA和HrpZ的免疫细胞化学定位支持Hrp菌毛在丁香假单胞菌番茄致病变种的效应蛋白穿过宿主植物细胞壁转移过程中发挥作用。

Immunocytochemical localization of HrpA and HrpZ supports a role for the Hrp pilus in the transfer of effector proteins from Pseudomonas syringae pv. tomato across the host plant cell wall.

作者信息

Brown I R, Mansfield J W, Taira S, Roine E, Romantschuk M

机构信息

Department of Biological Sciences, Imperial College at Wye, University of London, Ashford, Kent, UK.

出版信息

Mol Plant Microbe Interact. 2001 Mar;14(3):394-404. doi: 10.1094/MPMI.2001.14.3.394.

Abstract

The Hrp pilus, composed of HrpA subunits, is an essential component of the type III secretion system in Pseudomonas syringae. We used electron microscopy (EM) and immunocytochemistry to examine production of the pilus in vitro from P. syringae pv. tomato strain DC3000 grown under hrp-inducing conditions on EM grids. Pili, when labeled with antibodies to HrpA, developed rapidly in a nonpolar manner shortly after the detection of the hrpA transcript and extended up to 5 microm into surrounding media. Structures at the base of the pilus were clearly differentiated from the basal bodies of flagella. The HrpZ protein, also secreted via the type III system, was found by immunogold labeling to be associated with the pilus in vitro. Accumulation and secretion of HrpA and HrpZ were also examined quantitatively after the inoculation of wild-type DC3000 and hrpA and hrpZ mutants into leaves of Arabidopsis thaliana. The functional pilus crossed the plant cell wall to generate tracks of immunogold labeling for HrpA and HrpZ. Mutants that produced HrpA but did not assemble pili were nonpathogenic, did not secrete HrpA protein, and were compromised for the accumulation of HrpZ. A model is proposed in which the rapidly elongating Hrp pilus acts as a moving conveyor, facilitating transfer of effector proteins from bacteria to the plant cytoplasm across the formidable barrier of the plant cell wall.

摘要

由HrpA亚基组成的Hrp菌毛是丁香假单胞菌III型分泌系统的重要组成部分。我们利用电子显微镜(EM)和免疫细胞化学技术,在EM网格上对hrp诱导条件下生长的丁香假单胞菌番茄致病变种DC3000体外菌毛的产生进行了检测。当用抗HrpA抗体标记时,菌毛在检测到hrpA转录本后不久以非极性方式迅速形成,并延伸到周围培养基中达5微米。菌毛基部的结构与鞭毛基体明显不同。通过免疫金标记发现,同样通过III型系统分泌的HrpZ蛋白在体外与菌毛相关。在将野生型DC3000以及hrpA和hrpZ突变体接种到拟南芥叶片后,还对HrpA和HrpZ的积累及分泌进行了定量检测。功能性菌毛穿过植物细胞壁,产生了HrpA和HrpZ的免疫金标记轨迹。产生HrpA但未组装菌毛的突变体无致病性,不分泌HrpA蛋白,且HrpZ的积累也受到影响。我们提出了一个模型,其中快速伸长的Hrp菌毛充当移动传送带,促进效应蛋白从细菌穿过植物细胞壁这一巨大屏障转移到植物细胞质中。

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