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PMID: 18076326 Published · ppublish English Journal Article Review

Specificity in two-component signal transduction pathways.

Annual review of genetics ·Vol. 41 ·2007-00-00 ·Pages 121-45

Laub MT, Goulian M

Abstract

Two-component signal transduction systems enable bacteria to sense, respond, and adapt to a wide range of environments, stressors, and growth conditions. In the prototypical two-component system, a sensor histidine kinase catalyzes its autophosphorylation and then subsequently transfers the phosphoryl group to a response regulator, which can then effect changes in cellular physiology, often by regulating gene expression. The utility of these signaling systems is underscored by their prevalence throughout the bacterial kingdom and by the fact that many bacteria contain dozens, or sometimes hundreds, of these signaling proteins. The presence of so many highly related signaling proteins in individual cells creates both an opportunity and a challenge. Do cells take advantage of the similarity between signaling proteins to integrate signals or diversify responses, and thereby enhance their ability to process information? Conversely, how do cells prevent unwanted cross-talk and maintain the insulation of distinct pathways? Here we address both questions by reviewing the cellular and molecular mechanisms that dictate the specificity of two-component signaling pathways.

MeSH Terms
Amino Acid Sequence Catalysis Kinetics Molecular Sequence Data Phosphorylation Phosphotransferases/chemistry,metabolism Sequence Homology, Amino Acid Signal Transduction
Chemicals
Phosphotransferases Spo0B response regulator phosphotransferase
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Laub Michael T
Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA. laub@mit.edu
Goulian Mark
Article Info
Journal
Annual review of genetics
Abbr.
Annu Rev Genet
ISSN
0066-4197
Published
2007-00-00
Pages
121-45
Language
English
Region
United States
NLM ID
0117605
Subset
IM
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