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Identification of a novel enzyme required for starch metabolism in Arabidopsis leaves. The phosphoglucan, water dikinasePhosphoglucan-bound structure of starch phosphatase Starch Excess4 reveals the mechanism for C6 specificityMechanistic Insights into Glucan Phosphatase Activity against Polyglucan SubstratesPhosphoglucan phosphatase function sheds light on starch degradation.Mutagenesis of cysteine 81 prevents dimerization of the APS1 subunit of ADP-glucose pyrophosphorylase and alters diurnal starch turnover in Arabidopsis thaliana leaves.STARCH-EXCESS4 is a laforin-like Phosphoglucan phosphatase required for starch degradation in Arabidopsis thaliana.Plastidial NAD-dependent malate dehydrogenase is critical for embryo development and heterotrophic metabolism in Arabidopsis.A putative phosphatase, LSF1, is required for normal starch turnover in Arabidopsis leaves.Starch breakdown: recent discoveries suggest distinct pathways and novel mechanismsComprehensive survey of redox sensitive starch metabolising enzymes in Arabidopsis thalianaAnalysis of Starch Metabolism in ChloroplastsPlastidial NAD-Dependent Malate Dehydrogenase: A Moonlighting Protein Involved in Early Chloroplast Development through Its Interaction with an FtsH12-FtsHi Protease ComplexLIKE SEX4 1 Acts as a β-Amylase-Binding Scaffold on Starch Granules during Starch Degradation
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P50
description
hulumtues
@sq
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Oliver Kötting
@ast
Oliver Kötting
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Oliver Kötting
@es
Oliver Kötting
@nl
Oliver Kötting
@sl
type
label
Oliver Kötting
@ast
Oliver Kötting
@en
Oliver Kötting
@es
Oliver Kötting
@nl
Oliver Kötting
@sl
prefLabel
Oliver Kötting
@ast
Oliver Kötting
@en
Oliver Kötting
@es
Oliver Kötting
@nl
Oliver Kötting
@sl
P106
P108
P21
P31
P496
0000-0002-8977-5907