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Ginto George
Ginto George
Research Associate, University of Cambridge
Verified email at cam.ac.uk
Title
Cited by
Cited by
Year
Mechanisms of productive folding and endoplasmic reticulum-associated degradation of glycoproteins and non-glycoproteins
S Ninagawa, G George, K Mori
Biochimica et biophysica acta (BBA)-General subjects 1865 (3), 129812, 2021
562021
EDEM2 stably disulfide-bonded to TXNDC11 catalyzes the first mannose trimming step in mammalian glycoprotein ERAD
G George, S Ninagawa, H Yagi, T Saito, T Ishikawa, T Sakuma, ...
Elife 9, e53455, 2020
402020
Purified EDEM3 or EDEM1 alone produces determinant oligosaccharide structures from M8B in mammalian glycoprotein ERAD
G George, S Ninagawa, H Yagi, J Furukawa, N Hashii, A Ishii-Watabe, ...
Elife 10, e70357, 2021
142021
Arginase of Helicobacter gastric pathogens uses a unique set of non-catalytic residues for catalysis
G George, M Kombrabail, N Raninga, AK Sau
Biophysical Journal 112 (6), 1120-1134, 2017
122017
Antioxidant and Antibacterial Activity of Parmotrema stuppeum (Taylor) Hale
G George, RP Chandran, S Manju, M Kannan
Journal of Biologically Active Products from Nature 4 (5-6), 365-370, 2014
12014
Substrate recruitment via eIF2γ enhances catalytic efficiency of a holophosphatase that terminates the Integrated Stress Response
Y Yan, M Shetty, HP Harding, G George, A Zyryanova, K Labbé, A Mafi, ...
Proceedings of the National Academy of Sciences 121 (14), e2320013121, 2024
2024
A genome wide CRISPR/Cas9 screen identifies calreticulin as a selective repressor of ATF6⍺
J Tung, L Huang, G George, HP Harding, D Ron, A Ordonez
bioRxiv, 2024.02. 10.579381, 2024
2024
Arginase Of Helicobacter Gastric Pathogens Utilizes A Unique Non-Catalytic Triad For Catalysis; A Possible Strategy To Develop Specific Inhibitors
A Sau, G George, N Raninga, M Kombrabail
PROTEIN SCIENCE 26, 82-83, 2017
2017
Arginase of Helicobacter Gastric Pathogens Uses a Unique Set of Non-catalytic Residues for Catalysis
AK Sau, N Raninga, G George, M Kombrabail
Biophysical Society, 2017
2017
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Articles 1–9