| Literature DB >> 29717915 |
Jingru Wang1, Xiaolong Shao1, Yingchao Zhang1, Yanan Zhu2, Pan Yang1, Jian Yuan1, Tingting Wang3, Chunyan Yin1, Wei Wang1, Sheng Chen4, Haihua Liang5, Xin Deng3.
Abstract
The type III secretion system (T3SS) is the main machinery for Pseudomonas savastanoi and other gram-negative bacteria to invade plant cells. HrpR and HrpS form a hetero-hexamer, which activates the expression of HrpL, which induces all T3SS genes by binding to a 'hrp box' in promoters. However, the individual molecular mechanism of HrpR or HrpS has not been fully understood. Through chromatin immunoprecipitation coupled to high-throughput DNA sequencing, we found that HrpR, HrpS, and HrpL had four, 47, and 31 targets on the genome, respectively. HrpS directly bound to the promoter regions of a group of T3SS genes and non-T3SS genes. HrpS independently regulated these genes in a hrpL deletion strain. Additionally, a HrpS-binding motif (GTGCCAAA) was identified, which was verified by electrophoretic mobility shift assay and lux-reporter assay. HrpS also regulated motility and biofilm formation in P. savastanoi. The present study strongly suggests that HrpS alone can work as a global regulator on both T3SS and non-T3SS genes in P. savastanoi. [Formula: see text]Entities:
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Year: 2018 PMID: 29717915 DOI: 10.1094/MPMI-02-18-0035-R
Source DB: PubMed Journal: Mol Plant Microbe Interact ISSN: 0894-0282 Impact factor: 4.171