首页> 外文OA文献 >A cloned Erwinia chrysanthemi Hrp (type III protein secretion) system functions in Escherichia coli to deliver Pseudomonas syringae Avr signals to plant cells and to secrete Avr proteins in culture
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A cloned Erwinia chrysanthemi Hrp (type III protein secretion) system functions in Escherichia coli to deliver Pseudomonas syringae Avr signals to plant cells and to secrete Avr proteins in culture

机译:克隆的欧文氏菊Hrp(III型蛋白分泌)系统在大肠杆菌中起作用,将丁香假单胞菌Avr信号传递至植物细胞并在培养物中分泌Avr蛋白

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摘要

The Hrp (type III protein secretion) system is essential for the plant parasitic ability of Pseudomonas syringae and most Gram-negative bacterial plant pathogens. AvrB and AvrPto are two P. syringae proteins that have biological activity when produced via heterologous gene expression inside plant cells or when produced by Hrp+ bacteria. Avr-like proteins, presumably injected by the Hrp system on bacterial contact with plant cells, appear to underlie pathogenic interactions, but none has been observed outside of the bacterial cytoplasm, and identifying novel genes encoding them is tedious and uncertain without a phenotype in culture. Here we describe a cloned Hrp secretion system that functions heterologously in Escherichia coli to secrete AvrB and AvrPto in culture and to promote AvrB and AvrPto biological activity in inoculated plants. The hrp gene cluster, carried on cosmid pCPP2156, was cloned from Erwinia chrysanthemi, a pathogen that differs from P. syringae in being host promiscuous. E. coli DH5α carrying pCPP2156, but not related Hrp-deficient cosmids, elicited a hypersensitive response in Nicotiana clevelandii only when also expressing avrB in trans. The use of pAVRB-FLAG2 and pAVRPTO-FLAG, which produce Avr proteins with a C-terminal FLAG-epitope fusion, enabled immunoblot detection of the secretion of these proteins to E. coli(pCPP2156) culture media. Secretion was Hrp dependent, occurred without leakage of a cytoplasmic marker, and did not occur with E. coli(pHIR11), which encodes a functional P. syringae Hrp system. E. coli(pCPP2156) will promote investigation of Avr protein secretion and systematic prospecting for the effector proteins underlying bacterial plant pathogenicity.
机译:Hrp(III型蛋白质分泌)系统对于丁香假单胞菌和大多数革兰氏阴性细菌植物病原体的植物寄生能力至关重要。 AvrB和AvrPto是两种丁香假单胞菌蛋白,当通过植物细胞内部的异源基因表达产生或通过Hrp +细菌产生时,它们具有生物学活性。推测是由Hrp系统在细菌与植物细胞接触后通过Avr样蛋白注入的,似乎是病原相互作用的基础,但在细菌细胞质之外尚未观察到任何蛋白,鉴定编码它们的新基因是繁琐且不确定的,无需培养物表型。在这里,我们描述了一个克隆的Hrp分泌系统,该系统在大肠杆菌中具有异源功能,可以在培养物中分泌AvrB和AvrPto,并在接种的植物中促进AvrB和AvrPto的生物学活性。粘粒pCPP2156上携带的hrp基因簇是从欧文氏菊(Erwinia chrysanthemi)克隆的,该病原不同于丁香假单胞菌,是宿主混杂的。携带pCPP2156的大肠杆菌DH5α,但没有相关的Hrp缺陷型粘粒,仅在反式表达avrB的情况下,才在烟草中引起超敏反应。 pAVRB-FLAG2和pAVRPTO-FLAG产生具有C末端FLAG-表位融合的Avr蛋白的用途,使得能够对这些蛋白向大肠杆菌(pCPP2156)培养基的分泌进行免疫印迹检测。分泌是依赖于Hrp的,不会发生细胞质标记的泄漏,并且不会与编码功能性丁香假单胞菌Hrp系统的大肠杆菌(pHIR11)一起发生。大肠杆菌(pCPP2156)将促进对Avr蛋白分泌的研究,并为细菌植物致病性潜在的效应蛋白的系统化探索提供依据。

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