RRC ID 6141
Author Yamada K, Osakabe Y, Mizoi J, Nakashima K, Fujita Y, Shinozaki K, Yamaguchi-Shinozaki K.
Title Functional analysis of an Arabidopsis thaliana abiotic stress-inducible facilitated diffusion transporter for monosaccharides.
Journal J Biol Chem
Abstract Sugars play indispensable roles in biological reactions and are distributed into various tissues or organelles via transporters in plants. Under abiotic stress conditions, plants accumulate sugars as a means to increase stress tolerance. Here, we report an abiotic stress-inducible transporter for monosaccharides from Arabidopsis thaliana that is termed ESL1 (ERD six-like 1). Expression of ESL1 was induced under drought and high salinity conditions and with exogenous application of abscisic acid. Promoter analyses using beta-glucuronidase and green fluorescent protein reporters revealed that ESL1 is mainly expressed in pericycle and xylem parenchyma cells. The fluorescence of ESL1-green fluorescent protein-fused protein was detected at tonoplast in transgenic Arabidopsis plants and tobacco BY-2 cells. Furthermore, alanine-scanning mutagenesis revealed that an N-terminal LXXXLL motif in ESL1 was essential for its localization at the tonoplast. Transgenic BY-2 cells expressing mutated ESL1, which was localized at the plasma membrane, showed an uptake ability for monosaccharides. Moreover, the value of K(m) for glucose uptake activity of mutated ESL1 in the transgenic BY-2 cells was extraordinarily high, and the transport activity was independent from a proton gradient. These results indicate that ESL1 is a low affinity facilitated diffusion transporter. Finally, we detected that vacuolar invertase activity was increased under abiotic stress conditions, and the expression patterns of vacuolar invertase genes were similar to that of ESL1. Under abiotic stress conditions, ESL1 might function coordinately with the vacuolar invertase to regulate osmotic pressure by affecting the accumulation of sugar in plant cells.
Volume 285(2)
Pages 1138-46
Published 2010-1-8
DOI 10.1074/jbc.M109.054288
PII S0021-9258(20)58870-4
PMID 19901034
PMC PMC2801242
MeSH Amino Acid Motifs / physiology Arabidopsis / genetics Arabidopsis / metabolism* Arabidopsis Proteins / biosynthesis* Arabidopsis Proteins / genetics Biological Transport / physiology Cell Membrane / genetics Cell Membrane / metabolism Gene Expression Regulation, Viral / physiology* Monosaccharide Transport Proteins / biosynthesis* Monosaccharide Transport Proteins / genetics Osmotic Pressure / physiology Stress, Physiological / physiology* Xylem / genetics Xylem / metabolism*
IF 4.238
Times Cited 93
WOS Category BIOCHEMISTRY & MOLECULAR BIOLOGY
Resource
Arabidopsis / Cultured plant cells, genes rpc00001