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PMID: 18381072 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Dynamics of Cdc42 network embodies a Turing-type mechanism of yeast cell polarity.

FEBS letters ·Vol. 582 ·No. 10 ·2008-04-30 ·Pages 1437-43

Goryachev AB, Pokhilko AV

Abstract

Complex biochemical networks can be understood by identifying their principal regulatory motifs and mode of action. We model the early phase of budding yeast cellular polarization and show that the biochemical processes in the presumptive bud site comprise a Turing-type mechanism. The roles of the prototypical activator and substrate are played by GTPase Cdc42 in its active and inactive states, respectively. We demonstrate that the nucleotide cycling of Cdc42 converts cellular energy into a stable cluster of activated Cdc42. This energy drives a continuous membrane-cytoplasmic exchange of the cluster components to counteract diffusive spread of the cluster. This exchange explains why only one bud forms per cell cycle, because the winner-takes-all competition of candidate sites inevitably selects a single site.

MeSH Terms
Cell Polarity Fungal Proteins/metabolism Saccharomycetales/physiology cdc42 GTP-Binding Protein/metabolism
Chemicals
Fungal Proteins cdc42 GTP-Binding Protein
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Goryachev Andrew B
Centre for Systems Biology at Edinburgh, School of Biological Sciences, University of Edinburgh, Edinburgh EH9 3JR, United Kingdom. [email protected]
Pokhilko Alexandra V
Article Info
Journal
FEBS letters
Abbr.
FEBS Lett
ISSN
0014-5793
Published
2008-04-30
Epub
2008-00-31
Pages
1437-43
Language
English
Region
England
NLM ID
0155157
Subset
IM
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