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PMID: 12368508 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Signal-mediated depolymerization of actin in pollen during the self-incompatibility response.

The Plant cell ·Vol. 14 ·No. 10 ·2002-10-00 ·Pages 2613-26

Snowman BN, Kovar DR, Shevchenko G, Franklin-Tong VE, Staiger CJ

Abstract

Signal perception and the integration of signals into networks that effect cellular changes is essential for all cells. The self-incompatibility (SI) response in field poppy pollen triggers a Ca(2+)-dependent signaling cascade that results in the inhibition of incompatible pollen. SI also stimulates dramatic alterations in the actin cytoskeleton. By measuring the amount of filamentous (F-) actin in pollen before and during the SI response, we demonstrate that SI stimulates a rapid and large reduction in F-actin level that is sustained for at least 1 h. This represents quantitative evidence for stimulus-mediated depolymerization of F-actin in plant cells by a defined biological stimulus. Surprisingly, there are remarkably few examples of sustained reductions in F-actin levels stimulated by a biologically relevant ligand. Actin depolymerization also was achieved in pollen by treatments that increase cytosolic free Ca(2+) artificially, providing evidence that actin is a target for the Ca(2+) signals triggered by the SI response. By determining the cellular concentrations and binding constants for native profilin from poppy pollen, we show that profilin has Ca(2+)-dependent monomeric actin-sequestering activity. Although profilin is likely to contribute to stimulus-mediated actin depolymerization, our data suggest a role for additional actin binding proteins. We propose that Ca(2+)-mediated depolymerization of F-actin may be a mechanism whereby SI-induced tip growth inhibition is achieved.

MeSH Terms
Actins/metabolism Calcium/metabolism Contractile Proteins Cytoskeleton/metabolism Cytosol/metabolism Fertility Flowers/chemistry,growth & development,metabolism Microfilament Proteins/metabolism Papaver/chemistry,growth & development,metabolism Plant Proteins/metabolism Pollen/chemistry,growth & development,metabolism Polymers/metabolism Profilins Signal Transduction/physiology
Chemicals
Actins Contractile Proteins Microfilament Proteins Plant Proteins Polymers Profilins Calcium
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Snowman Benjamin N
School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
Kovar David R
Shevchenko Galina
Franklin-Tong Vernonica E
Staiger Christopher J
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Article Info
Journal
The Plant cell
Abbr.
Plant Cell
ISSN
1040-4651
Published
2002-10-00
Pages
2613-26
Language
English
Region
England
NLM ID
9208688
PMCID
PMC151239
Subset
IM
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