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Kaan Koper
Kaan Koper
在 wisc.edu 的电子邮件经过验证
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Rice endosperm starch phosphorylase (Pho1) assembles with disproportionating enzyme (Dpe1) to form a protein complex that enhances synthesis of malto-oligosaccharides
SK Hwang, K Koper, H Satoh, TW Okita
Journal of Biological Chemistry 291 (38), 19994-20007, 2016
822016
Evolutionary origin and functional diversification of aminotransferases
K Koper, SW Han, DC Pastor, Y Yoshikuni, HA Maeda
Journal of Biological Chemistry 298 (8), 2022
432022
Genome-wide association of the metabolic shifts underpinning dark-induced senescence in Arabidopsis
F Zhu, S Alseekh, K Koper, H Tong, Z Nikoloski, T Naake, H Liu, J Yan, ...
The Plant Cell 34 (1), 557-578, 2022
342022
The plastid phosphorylase as a multiple-role player in plant metabolism
SK Hwang, K Koper, TW Okita
Plant Science 290, 110303, 2020
152020
Re‐programming of gene expression in the CS 8 rice line over‐expressing ADP glucose pyrophosphorylase induces a suppressor of starch biosynthesis
B Cakir, L Tian, N Crofts, HL Chou, K Koper, CY Ng, A Tuncel, M Gargouri, ...
The Plant Journal 97 (6), 1073-1088, 2019
132019
Enhanced heterotetrameric assembly of potato ADP-glucose pyrophosphorylase using reverse genetics
AB Seferoglu, K Koper, FB Can, G Cevahir, IH Kavakli
Plant and Cell Physiology 55 (8), 1473-1483, 2014
132014
An automated workflow that generates atom mappings for large‐scale metabolic models and its application to Arabidopsis thaliana
S Huß, RS Judd, K Koper, HA Maeda, Z Nikoloski
The Plant Journal 111 (5), 1486-1500, 2022
92022
Substrate binding properties of potato tuber ADP-glucose pyrophosphorylase as determined by isothermal titration calorimetry
B Cakir, A Tuncel, AR Green, K Koper, SK Hwang, TW Okita, CH Kang
FEBS letters 589 (13), 1444-1449, 2015
82015
Source-sink relationships and its effect on plant productivity: manipulation of primary carbon and starch metabolism
K Koper, SK Hwang, S Singh, TW Okita
Genome Engineering for Crop Improvement, 1-31, 2021
62021
Biochemical characterization of plant aromatic aminotransferases
K Koper, S Hataya, AG Hall, TE Takasuka, HA Maeda
Methods in Enzymology 680, 35-83, 2023
32023
The rice plastidial phosphorylase participates directly in both sink and source processes
K Koper, SK Hwang, M Wood, S Singh, A Cousins, H Kirchhoff, TW Okita
Plant and Cell Physiology 62 (1), 125-142, 2021
32021
Glu-370 in the large subunit influences the substrate binding, allosteric, and heat stability properties of potato ADP-glucose pyrophosphorylase
AB Seferoglu, S Gul, UM Dikbas, I Baris, K Koper, M Caliskan, G Cevahir
Plant Science 252, 125-132, 2016
22016
Mass spectrometry imaging–based assays for aminotransferase activity reveal a broad substrate spectrum for a previously uncharacterized enzyme
M de Raad, K Koper, K Deng, BP Bowen, HA Maeda, TR Northen
Journal of Biological Chemistry 299 (3), 2023
12023
Multisubstrate specificity shaped the complex evolution of the aminotransferase family across the tree of life
K Koper, SW Han, R Kothadia, H Salamon, Y Yoshikuni, HA Maeda
Proceedings of the National Academy of Sciences 121 (26), e2405524121, 2024
2024
LARGE-SCALE BIOLOGY
F Zhu, S Alseekh, K Koper, H Tong, Z Nikoloski, T Naake, H Liu, J Yan, ...
2021
The plastid phosphorylase as a multiple-role player in plant metabolism.
HSK Hwang SeonKap, K Koper, TW Okita
2020
THE PLASTIDIAL ΑLPHA-GLUCAN PHOSPHORYLASE HAS AN UNEXPECTED
K Koper
Washington State University, 2019
2019
Rice endosperm starch phosphorylase (Pho1) assembles with disproportionating enzyme (Dpe1) to form a protein complex that enhances synthesis of malto-oligosaccharides.
HSK Hwang SeonKap, K Koper, H Satoh, TW Okita
2016
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