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Matthew Grisewood
Matthew Grisewood
在 schrodinger.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
Recent advances in computational protein design
RJ Pantazes, MJ Grisewood, CD Maranas
Current opinion in structural biology 21 (4), 467-472, 2011
1102011
Computational redesign of acyl-ACP thioesterase with improved selectivity toward medium-chain-length fatty acids
MJ Grisewood, NJ Hernández-Lozada, JB Thoden, NP Gifford, ...
ACS catalysis 7 (6), 3837-3849, 2017
952017
The iterative protein redesign and optimization (IPRO) suite of programs
RJ Pantazes, MJ Grisewood, T Li, NP Gifford, CD Maranas
Journal of computational chemistry 36 (4), 251-263, 2015
582015
PoreDesigner for tuning solute selectivity in a robust and highly permeable outer membrane pore
R Chowdhury, T Ren, M Shankla, K Decker, M Grisewood, J Prabhakar, ...
Nature communications 9 (1), 3661, 2018
572018
Methane oxidation by anaerobic archaea for conversion to liquid fuels
TJ Mueller, MJ Grisewood, H Nazem-Bokaee, S Gopalakrishnan, JG Ferry, ...
Journal of Industrial Microbiology and Biotechnology 42 (3), 391-401, 2015
392015
OptZyme: computational enzyme redesign using transition state analogues
MJ Grisewood, NP Gifford, RJ Pantazes, Y Li, PC Cirino, MJ Janik, ...
PLoS One 8 (10), e75358, 2013
302013
IPRO+/−: Computational protein design tool allowing for insertions and deletions
R Chowdhury, MJ Grisewood, VS Boorla, Q Yan, BF Pfleger, CD Maranas
Structure 28 (12), 1344-1357. e4, 2020
92020
PoreDesigner for tuning solute selectivity in a robust and highly permeable outer membrane pore. Nat Commun 9: 3661
R Chowdhury, T Ren, M Shankla, K Decker, M Grisewood, J Prabhakar, ...
62018
Computational redesign of acyl-ACP thioesterase with improved selectivity toward medium-chain-length fatty acids. ACS Catal. 7, 3837–3849
MJ Grisewood, NJ Hernández-Lozada, JB Thoden, NP Gifford, ...
62017
Gene construct encoding mutant thioesterase, mutant thioesterase encoded thereby, transformed host cell containing the gene construct, and method of using them to produce …
BF Pfleger, NJ Hernandez-Lozada, C Maranas, M Grisewood
US Patent 10,421,951, 2019
32019
Gene construct encoding mutant thioesterase, mutant thioesterase encoded thereby, transformed host cell containing the gene construct, and method of using them to produce …
BF Pfleger, NJ Hernandez-Lozada, C Maranas, M Grisewood
US Patent 10,689,631, 2020
22020
Gene construct encoding mutant thioesterase, mutant thioesterase encoded thereby, transformed host cell containing the gene construct, and method of using them to produce …
BF Pfleger, NJ Hernandez-Lozada, C Maranas, M Grisewood
US Patent 11,053,480, 2021
12021
Computationally exploring and alleviating the kinetic bottlenecks of anaerobic methane oxidation
MJ Grisewood, JG Ferry, CD Maranas
Frontiers in Environmental Science 6, 84, 2018
12018
OptZyme: a computational tool for altering enzymatic specificity
MJ Grisewood
12013
Gene construct encoding mutant Thioesterase, mutant Thioesterase encoded thereby, transformed host cell containing the gene construct, and method of using them to produce …
BF Pfleger, NJ Hernandez-Lozada, C Maranas, M Grisewood
US Patent 11,866,744, 2024
2024
IPRO+/-COMPUTATIONAL PROTEIN DESIGN TOOL ALLOWING FOR INSERTIONS AND DELETIONS
M Grisewood, V Sheersh
COMPUTATIONAL REDESIGN OF CHANNEL PROTEINS, ENZYMES, AND ANTIBODIES, 85, 2020
2020
Ipro+/-: A Computational Protein Design Tool Allowing NOT ONLY for Amino Acid Changes but Also Insertions and Deletions
R Chowdhury, CD Maranas
2019 AIChE Annual Meeting, 2019
2019
Development and Applications of Computational Enzyme Engineering Tools
MJ Grisewood
The Pennsylvania State University, 2018
2018
Metabolic engineering of bacteria for production of oleochemicals
N Hernandez, M Grisewood, C Maranas, B Pfleger
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 253, 2017
2017
Computational redesign of acyl-ACP thioesterase with improved selectivity towards medium chain fatty acids at high production levels
CD Maranas, MJ Grisewood, NJ Hernandez Lozada, BF Pfleger
2017
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