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PMID: 16507590 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Single-molecule analysis of chemoattractant-stimulated membrane recruitment of a PH-domain-containing protein.

Journal of cell science ·Vol. 119 ·No. Pt 6 ·2006-03-15 ·Pages 1071-9

Matsuoka S, Iijima M, Watanabe TM, Kuwayama H, Yanagida T, Devreotes PN, Ueda M

Abstract

Molecular mechanisms of chemotactic response are highly conserved among many eukaryotic cells including human leukocytes and Dictyostelium discoideum cells. The cells can sense the differences in chemoattractant concentration across the cell body and respond by extending pseudopods from the cell side facing to a higher concentration. Pseudopod formation is regulated by binding of pleckstrin homology (PH)-domain-containing proteins to phosphatidylinositol 3,4,5-trisphosphates [PtdIns(3,4,5)P3] localized at the leading edge of chemotaxing cells. However, molecular mechanisms underlying dynamic features of a pseudopod have not been fully explained by the known properties of PH-domain-containing proteins. To investigate the mechanisms, we visualized single molecules of green fluorescent protein tagged to Crac (Crac-GFP), a PH-domain-containing protein in D. discoideum cells. Whereas populations of Crac molecules exhibited a stable steady-state localization at pseudopods, individual molecules bound transiently to PtdIns(3,4,5)P3 for approximately 120 milliseconds, indicating dynamic properties of the PH-domain-containing protein. Receptor stimulation did not alter the binding stability but regulated the number of bound PH-domain molecules by metabolism of PtdIns(3,4,5)P3. These results demonstrate that the steady-state localization of PH-domain-containing proteins at the leading edge of chemotaxing cells is dynamically maintained by rapid recycling of individual PH-domain-containing proteins. The short interaction between PH domains and PtdIns(3,4,5)P3 contributes to accurate and sensitive chemotactic movements through the dynamic redistributions. These dynamic properties might be a common feature of signaling components involved in chemotaxis.

MeSH Terms
Animals Binding Sites Chemotaxis/drug effects Cyclic AMP/pharmacology Dictyostelium/metabolism Fluorescence Humans PTEN Phosphohydrolase/metabolism Phosphatidylinositol Phosphates/metabolism Protein Binding Protozoan Proteins/metabolism
Chemicals
Phosphatidylinositol Phosphates Protozoan Proteins dagA protein, Dictyostelium phosphatidylinositol 3,4,5-triphosphate Cyclic AMP PTEN Phosphohydrolase
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Matsuoka Satomi
Laboratories for Nanobiology, Graduate School of Frontier Biosciences, Osaka University, 1-3 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Iijima Miho
Watanabe Tomonobu M
Kuwayama Hidekazu
Yanagida Toshio
Devreotes Peter N
Ueda Masahiro
Article Info
Journal
Journal of cell science
Abbr.
J Cell Sci
ISSN
0021-9533
Published
2006-03-15
Epub
2006-00-28
Pages
1071-9
Language
English
Region
England
NLM ID
0052457
Subset
IM
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