Insight into the redox regulation of the phosphoglucan phosphatase SEX4 involved in starch degradation
Published 2012 View Full Article
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Title
Insight into the redox regulation of the phosphoglucan phosphatase SEX4 involved in starch degradation
Authors
Keywords
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Journal
FEBS Journal
Volume 280, Issue 2, Pages 538-548
Publisher
Wiley
Online
2012-02-28
DOI
10.1111/j.1742-4658.2012.08546.x
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Note: Only part of the references are listed.- The Phosphoglucan Phosphatase Like Sex Four2 Dephosphorylates Starch at the C3-Position inArabidopsis
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- Starch: Its Metabolism, Evolution, and Biotechnological Modification in Plants
- (2010) Samuel C. Zeeman et al. Annual Review of Plant Biology
- Redox Regulation of Protein Tyrosine Phosphatases: Structural and Chemical Aspects
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- (2010) Oliver Kötting et al. CURRENT OPINION IN PLANT BIOLOGY
- Thioredoxin-regulated β-amylase (BAM1) triggers diurnal starch degradation in guard cells, and in mesophyll cells under osmotic stress
- (2010) Concetta Valerio et al. JOURNAL OF EXPERIMENTAL BOTANY
- Structural basis for the glucan phosphatase activity of Starch Excess4
- (2010) C. W. Vander Kooi et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
- Structural Insights into Glucan Phosphatase Dynamics Using Amide Hydrogen−Deuterium Exchange Mass Spectrometry
- (2009) Simon Hsu et al. BIOCHEMISTRY
- Conservation of the glucan phosphatase laforin is linked to rates of molecular evolution and the glucan metabolism of the organism
- (2009) Matthew S Gentry et al. BMC EVOLUTIONARY BIOLOGY
- PhosPhAt: the Arabidopsis thaliana phosphorylation site database. An update
- (2009) Pawel Durek et al. NUCLEIC ACIDS RESEARCH
- STARCH-EXCESS4 Is a Laforin-Like Phosphoglucan Phosphatase Required for Starch Degradation in Arabidopsis thaliana
- (2009) O. Kotting et al. PLANT CELL
- The Laforin-Like Dual-Specificity Phosphatase SEX4 from Arabidopsis Hydrolyzes Both C6- and C3-Phosphate Esters Introduced by Starch-Related Dikinases and Thereby Affects Phase Transition of -Glucans
- (2009) M. Hejazi et al. PLANT PHYSIOLOGY
- A Putative Phosphatase, LSF1, Is Required for Normal Starch Turnover in Arabidopsis Leaves
- (2009) S. Comparot-Moss et al. PLANT PHYSIOLOGY
- Starch phosphorylation-Maltosidic restrains upon 3′- and 6′-phosphorylation investigated by chemical synthesis, molecular dynamics and NMR spectroscopy
- (2008) Peter I. Hansen et al. BIOPOLYMERS
- Thioredoxin targets in plants: The first 30 years
- (2008) Françoise Montrichard et al. Journal of Proteomics
- -AMYLASE4, a Noncatalytic Protein Required for Starch Breakdown, Acts Upstream of Three Active -Amylases in Arabidopsis Chloroplasts
- (2008) D. C. Fulton et al. PLANT CELL
- Glucan, water dikinase phosphorylates crystalline maltodextrins and thereby initiates solubilization
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