| Literature DB >> 18203920 |
Nadine Anders1, Michael Nielsen, Jutta Keicher, York-Dieter Stierhof, Masahiko Furutani, Masao Tasaka, Karen Skriver, Gerd Jürgens.
Abstract
The GNOM protein plays a fundamental role in Arabidopsis thaliana development by regulating endosome-to-plasma membrane trafficking required for polar localization of the auxin efflux carrier PIN1. GNOM is a family member of large ARF guanine nucleotide exchange factors (ARF-GEFs), which regulate vesicle formation by activating ARF GTPases on specific membranes in animals, plants, and fungi. However, apart from the catalytic exchange activity of the SEC7 domain, the functional significance of other conserved domains is virtually unknown. Here, we show that a distinct N-terminal domain of GNOM mediates dimerization and in addition interacts heterotypically with two other conserved domains in vivo. In contrast with N-terminal dimerization, the heterotypic interaction is essential for GNOM function, as mutations abolishing this interaction inactivate the GNOM protein and compromise its membrane association. Our results suggest a general model of large ARF-GEF function in which regulated changes in protein conformation control membrane association of the exchange factor and, thus, activation of ARFs.Entities:
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Year: 2008 PMID: 18203920 PMCID: PMC2254928 DOI: 10.1105/tpc.107.056515
Source DB: PubMed Journal: Plant Cell ISSN: 1040-4651 Impact factor: 11.277