Mechanism of activation of PhoQ/PhoP two-component signal transduction by SafA, an auxiliary protein of PhoQ histidine kinase in Escherichia coli.

Eiji Ishii, Yoko Eguchi, Ryutaro Utsumi
Author Information
  1. Eiji Ishii: Department of Bioscience, Graduate School of Agriculture, Kinki University, Nara, Japan.

Abstract

The PhoQ/PhoP two-component signal transduction system in Escherichia coli is activated by SafA, a small membrane protein that modifies the PhoQ histidine kinase. The SafA C-terminal domain (41-65 aa) interacts directly with the sensory domain of PhoQ at the periplasm. We used in vitro and in vivo strategies to elucidate the way SafA modifies the PhoQ/PhoP phosphorelay system. First, the enzymatic activities of membranes from cells overexpressing PhoQ and cells expressing both PhoQ and SafA were compared in vitro. Increased autophosphorylation of PhoQ was observed in the presence of SafA, but it did not increase the dephosphorylation of phospho-PhoP by PhoQ. In addition, SafA increased the phospho-PhoP level on the phosphotransfer assay. We confirmed that induction of SafA results in an accumulation of phospho-PhoP in vivo by the Phos-tag system. Our results suggest that the accumulation of phospho-PhoP is linked to activation of PhoQ autophosphorylation by SafA.

MeSH Term

Cell Membrane
Escherichia coli
Escherichia coli Proteins
Intracellular Space
Membrane Proteins
Phosphorylation
Signal Transduction

Chemicals

Escherichia coli Proteins
Membrane Proteins
PhoP protein, E coli
PhoQ protein, E coli
SafA protein, E coli

Word Cloud

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