van Dijk K, Fouts D E, Rehm A H, Hill A R, Collmer A, Alfano J R
Department of Biological Sciences, University of Nevada, Las Vegas, Nevada 89154-4004, USA.
J Bacteriol. 1999 Aug;181(16):4790-7. doi: 10.1128/JB.181.16.4790-4797.1999.
We present here data showing that the Avr proteins HrmA and AvrPto are secreted in culture via the native Hrp pathways from Pseudomonas syringae pathovars that produce these proteins. Moreover, their secretion is strongly affected by the temperature and pH of the culture medium. Both HrmA and AvrPto were secreted at their highest amounts when the temperature was between 18 and 22 degrees C and when the culture medium was pH 6.0. In contrast, temperature did not affect the secretion of HrpZ. pH did affect HrpZ secretion, but not as strongly as it affected the secretion of HrmA. This finding suggests that there are at least two classes of proteins that travel the P. syringae pathway: putative secretion system accessory proteins, such as HrpZ, which are readily secreted in culture; and effector proteins, such as HrmA and AvrPto, which apparently are delivered inside plant cells and are detected in lower amounts in culture supernatants under the appropriate conditions. Because HrmA was shown to be a Hrp-secreted protein, we have changed the name of hrmA to hopPsyA to reflect that it encodes a Hrp outer protein from P. syringae pv. syringae. The functional P. syringae Hrp cluster encoded by cosmid pHIR11 conferred upon P. fluorescens but not Escherichia coli the ability to secrete HopPsyA in culture. The use of these optimized conditions should facilitate the identification of additional proteins traveling the Hrp pathway and the signals that regulate this protein traffic.
我们在此展示的数据表明,Avr蛋白HrmA和AvrPto在培养过程中通过丁香假单胞菌致病型的天然Hrp途径分泌,这些致病型可产生这些蛋白。此外,它们的分泌受到培养基温度和pH的强烈影响。当温度在18至22摄氏度之间且培养基pH为6.0时,HrmA和AvrPto的分泌量最高。相比之下,温度不影响HrpZ的分泌。pH确实会影响HrpZ的分泌,但影响程度不如对HrmA分泌的影响大。这一发现表明,至少有两类蛋白通过丁香假单胞菌途径运输:推测的分泌系统辅助蛋白,如HrpZ,其在培养中易于分泌;以及效应蛋白,如HrmA和AvrPto,它们显然被递送到植物细胞内,并且在适当条件下在培养上清液中检测到的量较低。由于HrmA被证明是一种由Hrp分泌的蛋白,我们已将hrmA的名称更改为hopPsyA,以反映它编码来自丁香假单胞菌丁香致病变种的一种Hrp外蛋白。由粘粒pHIR11编码的功能性丁香假单胞菌Hrp簇赋予荧光假单胞菌而非大肠杆菌在培养中分泌HopPsyA的能力。使用这些优化条件应有助于鉴定通过Hrp途径运输的其他蛋白以及调节这种蛋白运输的信号。