Literature DB >> 22689944

Cell wall constrains lateral diffusion of plant plasma-membrane proteins.

Alexandre Martinière1, Irene Lavagi, Gayathri Nageswaran, Daniel J Rolfe, Lilly Maneta-Peyret, Doan-Trung Luu, Stanley W Botchway, Stephen E D Webb, Sebastien Mongrand, Christophe Maurel, Marisa L Martin-Fernandez, Jürgen Kleine-Vehn, Jirí Friml, Patrick Moreau, John Runions.   

Abstract

A cell membrane can be considered a liquid-phase plane in which lipids and proteins theoretically are free to diffuse. Numerous reports, however, describe retarded diffusion of membrane proteins in animal cells. This anomalous diffusion results from a combination of structuring factors including protein-protein interactions, cytoskeleton corralling, and lipid organization into microdomains. In plant cells, plasma-membrane (PM) proteins have been described as relatively immobile, but the control mechanisms that structure the PM have not been studied. Here, we use fluorescence recovery after photobleaching to estimate mobility of a set of minimal PM proteins. These proteins consist only of a PM-anchoring domain fused to a fluorescent protein, but their mobilities remained limited, as is the case for many full-length proteins. Neither the cytoskeleton nor membrane microdomain structure was involved in constraining the diffusion of these proteins. The cell wall, however, was shown to have a crucial role in immobilizing PM proteins. In addition, by single-molecule fluorescence imaging we confirmed that the pattern of cellulose deposition in the cell wall affects the trajectory and speed of PM protein diffusion. Regulation of PM protein dynamics by the plant cell wall can be interpreted as a mechanism for regulating protein interactions in processes such as trafficking and signal transduction.

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Year:  2012        PMID: 22689944      PMCID: PMC3411962          DOI: 10.1073/pnas.1202040109

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  48 in total

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8.  Polar Localization of the Borate Exporter BOR1 Requires AP2-Dependent Endocytosis.

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10.  Plasma Membrane Microdomains Are Essential for Rac1-RbohB/H-Mediated Immunity in Rice.

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