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PMID: 10899981 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

SUT2, a putative sucrose sensor in sieve elements.

The Plant cell ·Vol. 12 ·No. 7 ·2000-07-00 ·Pages 1153-64

Barker L, Kühn C, Weise A, Schulz A, Gebhardt C, Hirner B, Hellmann H, Schulze W, Ward JM, Frommer WB

Abstract

In leaves, sucrose uptake kinetics involve high- and low-affinity components. A family of low- and high-affinity sucrose transporters (SUT) was identified. SUT1 serves as a high-affinity transporter essential for phloem loading and long-distance transport in solanaceous species. SUT4 is a low-affinity transporter with an expression pattern overlapping that of SUT1. Both SUT1 and SUT4 localize to enucleate sieve elements of tomato. New sucrose transporter-like proteins, named SUT2, from tomato and Arabidopsis contain extended cytoplasmic domains, thus structurally resembling the yeast sugar sensors SNF3 and RGT2. Features common to these sensors are low codon bias, environment of the start codon, low expression, and lack of detectable transport activity. In contrast to LeSUT1, which is induced during the sink-to-source transition of leaves, SUT2 is more highly expressed in sink than in source leaves and is inducible by sucrose. LeSUT2 protein colocalizes with the low- and high-affinity sucrose transporters in sieve elements of tomato petioles, indicating that multiple SUT mRNAs or proteins travel from companion cells to enucleate sieve elements. The SUT2 gene maps on chromosome V of potato and is linked to a major quantitative trait locus for tuber starch content and yield. Thus, the putative sugar sensor identified colocalizes with two other sucrose transporters, differs from them in kinetic properties, and potentially regulates the relative activity of low- and high-affinity sucrose transport into sieve elements.

MeSH Terms
Amino Acid Sequence DNA, Complementary Fungal Proteins Kinetics Lycopersicon esculentum/genetics Molecular Sequence Data Monosaccharide Transport Proteins/chemistry,genetics,metabolism Plants, Genetically Modified Saccharomyces cerevisiae/genetics Sucrose/metabolism
Chemicals
DNA, Complementary Fungal Proteins Monosaccharide Transport Proteins SUT2 protein, Pichia stipitis Sucrose
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Barker L
Plant Physiology, Zentrum für Molekularbiologie der Pflanzen (ZMBP), Universität Tübingen, Germany.
Kühn C
Weise A
Schulz A
Gebhardt C
Hirner B
Hellmann H
Schulze W
Ward J M
Frommer W B
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Article Info
Journal
The Plant cell
Abbr.
Plant Cell
ISSN
1040-4651
Published
2000-07-00
Pages
1153-64
Language
English
Region
England
NLM ID
9208688
PMCID
PMC149056
Subset
IM
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