| Literature DB >> 31058375 |
Soyoung Park1, Jihee Yoon2, Chang-Ro Lee3, Ju Yeon Lee4, Yeon-Ran Kim1, Kyoung-Soon Jang4, Kyu-Ho Lee5, Yeong-Jae Seok1,2.
Abstract
How motile bacteria recognize their environment and decide whether to stay or navigate toward more favorable location is a fundamental issue in survival. The flagellum is an elaborate molecular device responsible for bacterial locomotion, and the flagellum-driven motility allows bacteria to move themselves to the appropriate location at the right time. Here, we identify the polar landmark protein HubP as a modulator of polar flagellation that recruits the flagellar assembly protein FapA to the old cell pole, thereby controlling its activity for the early events of flagellar assembly in Vibrio vulnificus. We show that dephosphorylated EIIAGlc of the PEP-dependent sugar transporting phosphotransferase system sequesters FapA from HubP in response to glucose and hence inhibits FapA-mediated flagellation. Thus, flagellar assembly and motility is governed by spatiotemporal control of FapA, which is orchestrated by the competition between dephosphorylated EIIAGlc and HubP, in the human pathogen V. vulnificus.Entities:
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Year: 2019 PMID: 31058375 DOI: 10.1111/mmi.14268
Source DB: PubMed Journal: Mol Microbiol ISSN: 0950-382X Impact factor: 3.501