Hausner Jens, Hartmann Nadine, Jordan Michael, Büttner Daniela
Institute of Biology, Genetics Department, Martin Luther University Halle-Wittenberg, Halle (Saale), Germany.
Institute of Biology, Genetics Department, Martin Luther University Halle-Wittenberg, Halle (Saale), Germany
Infect Immun. 2017 Jan 26;85(2). doi: 10.1128/IAI.00788-16. Print 2017 Feb.
The pathogenicity of the Gram-negative plant-pathogenic bacterium Xanthomonas campestris pv. vesicatoria depends on a type III secretion (T3S) system, which spans both bacterial membranes and translocates effector proteins into plant cells. The assembly of the T3S system presumably involves the predicted lytic transglycosylase (LT) HpaH, which is encoded adjacent to the T3S gene cluster. Bacterial LTs degrade peptidoglycan and often promote the formation of membrane-spanning macromolecular protein complexes. In the present study, we show that HpaH localizes to the bacterial periplasm and binds to peptidoglycan as well as to components of the T3S system, including the predicted periplasmic inner rod proteins HrpB1 and HrpB2 as well as the pilus protein HrpE. In vivo translocation assays revealed that HpaH promotes the translocation of various effector proteins and of early substrates of the T3S system, suggesting a general contribution of HpaH to type III-dependent protein export. Mutant studies and the analysis of reporter fusions showed that the N-terminal region of HpaH contributes to protein function and is proteolytically cleaved. The N-terminally truncated HpaH cleavage product is secreted into the extracellular milieu by a yet-unknown transport pathway, which is independent of the T3S system.
革兰氏阴性植物病原菌野油菜黄单胞菌疮痂致病变种(Xanthomonas campestris pv. vesicatoria)的致病性依赖于III型分泌(T3S)系统,该系统跨越细菌的两层膜并将效应蛋白转运到植物细胞中。T3S系统的组装可能涉及预测的溶菌转糖基酶(LT)HpaH,它在T3S基因簇附近编码。细菌LT可降解肽聚糖并常常促进跨膜大分子蛋白复合物的形成。在本研究中,我们发现HpaH定位于细菌周质,与肽聚糖以及T3S系统的组分结合,包括预测的周质内杆蛋白HrpB1和HrpB2以及菌毛蛋白HrpE。体内转运试验表明,HpaH促进各种效应蛋白以及T3S系统早期底物的转运,这表明HpaH对III型依赖性蛋白输出有普遍作用。突变体研究和报告基因融合分析表明,HpaH的N端区域对蛋白功能有贡献且会被蛋白水解切割。N端截短的HpaH切割产物通过一种未知的转运途径分泌到细胞外环境中,该途径独立于T3S系统。