Structure-Function Analysis of the Presumptive Arabidopsis Auxin Permease AUX1[W]
Open Access
- 1 November 2004
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 16 (11) , 3069-3083
- https://doi.org/10.1105/tpc.104.024737
Abstract
We have investigated the subcellular localization, the domain topology, and the amino acid residues that are critical for the function of the presumptive Arabidopsis thaliana auxin influx carrier AUX1. Biochemical fractionation experiments and confocal studies using an N-terminal yellow fluorescent protein (YFP) fusion observed that AUX1 colocalized with plasma membrane (PM) markers. Because of its PM localization, we were able to take advantage of the steep pH gradient that exists across the plant cell PM to investigate AUX1 topology using YFP as a pH-sensitive probe. The YFP-coding sequence was inserted in selected AUX1 hydrophilic loops to orient surface domains on either apoplastic or cytoplasmic faces of the PM based on the absence or presence of YFP fluorescence, respectively. We were able to demonstrate in conjunction with helix prediction programs that AUX1 represents a polytopic membrane protein composed of 11 transmembrane spanning domains. In parallel, a large aux1 allelic series containing null, partial-loss-of-function, and conditional mutations was characterized to identify the functionally important domains and amino acid residues within the AUX1 polypeptide. Whereas almost all partial-loss-of-function and null alleles cluster in the core permease region, the sole conditional allele aux1-7 modifies the function of the external C-terminal domain.Keywords
This publication has 60 references indexed in Scilit:
- Local, Efflux-Dependent Auxin Gradients as a Common Module for Plant Organ FormationCell, 2003
- Importance of plant sterols in pattern formation and hormone signallingTrends in Plant Science, 2003
- Cell Polarity and PIN Protein Positioning in Arabidopsis Require STEROL METHYLTRANSFERASE1 FunctionPlant Cell, 2003
- The amino acid/auxin:proton symport permease family1The accompanying review paper ‘Phylogenetic characterization of novel transport protein families revealed by genome analysis’ by M.H. Saier Jr. et al. will be published in Biochim. Biophys. Acta, Vol. 1422/1, February 1999 issue.1Biochimica et Biophysica Acta (BBA) - Biomembranes, 1999
- Inhibition of Auxin Movement from the Shoot into the Root Inhibits Lateral Root Development in ArabidopsisPlant Physiology, 1998
- Molecular Cloning, Immunochemical Localization to the Vacuole, and Expression in Transgenic Yeast and Tobacco of a Putative Sugar Transporter from Sugar BeetPlant Physiology, 1996
- Functional reconstitution of the solubilized Arabidopsis thaliana STP1 monosaccharide‐H+ symporter in lipid vesicles and purification of the histidine tagged protein from transgenic Saccharomyces cerevisiaeThe Plant Journal, 1994
- Common Identity of Substrate Binding Subunit of Vacuolar H+-Translocating Inorganic Pyrophosphatase of Higher Plant CellsPlant Physiology, 1992
- Preparation and polypeptide composition of chlorophyll‐free plasma membranes from leaves of light‐grown spinach and barleyPhysiologia Plantarum, 1984
- Amino Acid Difference Formula to Help Explain Protein EvolutionScience, 1974