RRC ID 35353
著者 Eguchi Y, Ishii E, Hata K, Utsumi R.
タイトル Regulation of acid resistance by connectors of two-component signal transduction systems in Escherichia coli.
ジャーナル J Bacteriol
Abstract Two-component signal transduction systems (TCSs), utilized extensively by bacteria and archaea, are involved in the rapid adaptation of the organisms to fluctuating environments. A typical TCS transduces the signal by a phosphorelay between the sensor histidine kinase and its cognate response regulator. Recently, small-sized proteins that link TCSs have been reported and are called "connectors." Their physiological roles, however, have remained elusive. SafA (sensor associating factor A) (formerly B1500), a small (65-amino-acid [65-aa]) membrane protein, is among such connectors and links Escherichia coli TCSs EvgS/EvgA and PhoQ/PhoP. Since the activation of the EvgS/EvgA system induces acid resistance, we examined whether the SafA-activated PhoQ/PhoP system is also involved in the acid resistance induced by EvgS/EvgA. Using a constitutively active evgS1 mutant for the activation of EvgS/EvgA, we found that SafA, PhoQ, and PhoP all contributed to the acid resistance phenotype. Moreover, EvgS/EvgA activation resulted in the accumulation of cellular RpoS in the exponential-phase cells in a SafA-, PhoQ-, and PhoP-dependent manner. This RpoS accumulation was caused by another connector, IraM, expression of which was induced by the activation of the PhoQ/PhoP system, thus preventing RpoS degradation by trapping response regulator RssB. Acid resistance assays demonstrated that IraM also participated in the EvgS/EvgA-induced acid resistance. Therefore, we propose a model of a signal transduction cascade proceeding from EvgS/EvgA to PhoQ/PhoP and then to RssB (connected by SafA and IraM) and discuss its contribution to the acid resistance phenotype.
巻・号 193(5)
ページ 1222-8
公開日 2011-3-1
DOI 10.1128/JB.01124-10
PII JB.01124-10
PMID 21193607
PMC PMC3067605
MeSH Acids / pharmacology* Drug Resistance, Bacterial / genetics Drug Resistance, Bacterial / physiology Escherichia coli / drug effects* Escherichia coli / genetics Escherichia coli / metabolism* Escherichia coli Proteins / genetics Escherichia coli Proteins / metabolism Gene Deletion Gene Expression Regulation, Bacterial / physiology* Hydrogen-Ion Concentration Signal Transduction / physiology*
IF 3.006
引用数 33
WOS 分野 MICROBIOLOGY
リソース情報
原核生物(大腸菌) JW1115-KC JW1116-KC JW1147-KC