Koebnik Ralf, Krüger Antje, Thieme Frank, Urban Alexander, Bonas Ulla
Institut für Genetik, Martin-Luther-Universität, Weinbergweg 10, 06120 Halle, Saale, Germany.
J Bacteriol. 2006 Nov;188(21):7652-60. doi: 10.1128/JB.00795-06. Epub 2006 Aug 25.
The pathogenicity of the plant-pathogenic bacterium Xanthomonas campestris pv. vesicatoria depends on a type III secretion system which is encoded by the 23-kb hrp (hypersensitive response and pathogenicity) gene cluster. Expression of the hrp operons is strongly induced in planta and in a special minimal medium and depends on two regulatory proteins, HrpG and HrpX. In this study, DNA affinity enrichment was used to demonstrate that the AraC-type transcriptional activator HrpX binds to a conserved cis-regulatory element, the plant-inducible promoter (PIP) box (TTCGC-N(15)-TTCGC), present in the promoter regions of four hrp operons. No binding of HrpX was observed when DNA fragments lacking a PIP box were used. HrpX also bound to a DNA fragment containing an imperfect PIP box (TTCGC-N(8)-TTCGT). Dinucleotide replacements in each half-site of the PIP box strongly decreased binding of HrpX, while simultaneous dinucleotide replacements in both half-sites completely abolished binding. Based on the complete genome sequence of Xanthomonas campestris pv. vesicatoria, putative plant-inducible promoters consisting of a PIP box and a -10 promoter motif were identified in the promoter regions of almost all HrpX-activated genes. Bioinformatic analyses and reverse transcription-PCR experiments revealed novel HrpX-dependent genes, among them a NUDIX hydrolase gene and several genes with a predicted role in the degradation of the plant cell wall. We conclude that HrpX is the most downstream component of the hrp regulatory cascade, which is proposed to directly activate most genes of the hrpX regulon via binding to corresponding PIP boxes.
植物病原菌野油菜黄单胞菌疮痂致病变种(Xanthomonas campestris pv. vesicatoria)的致病性取决于一个Ⅲ型分泌系统,该系统由23 kb的hrp(过敏反应和致病性)基因簇编码。hrp操纵子在植物体内和一种特殊的基本培养基中强烈诱导表达,并且依赖于两种调节蛋白HrpG和HrpX。在本研究中,利用DNA亲和富集证明了AraC型转录激活因子HrpX与一个保守的顺式调节元件,即植物诱导型启动子(PIP)框(TTCGC-N(15)-TTCGC)结合,该元件存在于4个hrp操纵子的启动子区域。当使用缺乏PIP框的DNA片段时,未观察到HrpX的结合。HrpX也与一个包含不完全PIP框(TTCGC-N(8)-TTCGT)的DNA片段结合。PIP框每个半位点的二核苷酸替换强烈降低HrpX的结合,而两个半位点同时进行二核苷酸替换则完全消除结合。基于野油菜黄单胞菌疮痂致病变种的全基因组序列,在几乎所有HrpX激活基因的启动子区域鉴定出由PIP框和-10启动子基序组成的假定植物诱导型启动子。生物信息学分析和逆转录-PCR实验揭示了新的HrpX依赖性基因,其中包括一个NUDIX水解酶基因和几个预测在植物细胞壁降解中起作用的基因。我们得出结论,HrpX是hrp调节级联中最下游的组分,该调节级联被认为通过与相应的PIP框结合直接激活hrpX调节子的大多数基因。