Matthew P. DeLisa
Affiliations: | Chemical and Biomedical Engineering | Cornell University, Ithaca, NY, United States |
Area:
General Biology, Microbiology Biology, Biomedical EngineeringGoogle:
"Matthew DeLisa"Children
Sign in to add traineeBunyarit Meksiriporn | grad student | Cornell (E-Tree) | |
Lydia M. Contreras | grad student | 2008 | Cornell |
Matthew J. Marrichi | grad student | 2008 | Cornell |
Jan S. Kostecki | grad student | 2009 | Cornell |
Dujduan Waraho | grad student | 2009 | Cornell |
Robert J. Conrado | grad student | 2010 | Cornell |
Ritsdeliz Perez-Rodriguez | grad student | 2010 | Cornell |
Mark A. Rocco | grad student | 2011 | Cornell |
Cassandra M. Guarino | grad student | 2013 | Cornell |
Richard Yuding Huang | grad student | 2021-2023 | Cornell (Chemistry Tree) |
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Publications
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Bidstrup EJ, Kwon YH, Kim K, et al. (2024) Cell-Free Systems for the Production of Glycoproteins. Methods in Molecular Biology (Clifton, N.J.). 2762: 309-328 |
Chung SS, Bidstrup EJ, Hershewe JM, et al. (2022) Ribosome Stalling of -Linked Glycoproteins in Cell-Free Extracts. Acs Synthetic Biology. 11: 3892-3899 |
Jaroentomeechai T, Kwon YH, Liu Y, et al. (2022) A universal glycoenzyme biosynthesis pipeline that enables efficient cell-free remodeling of glycans. Nature Communications. 13: 6325 |
Taw MN, Boock JT, Sotomayor B, et al. (2022) Twin-arginine translocase component TatB performs folding quality control via a chaperone-like activity. Scientific Reports. 12: 14862 |
Boock JT, Taw M, King BC, et al. (2022) Two-Tiered Selection and Screening Strategy to Increase Functional Enzyme Production in E. coli. Methods in Molecular Biology (Clifton, N.J.). 2406: 169-187 |
Aquino AK, Manzer ZA, Daniel S, et al. (2021) Glycosylation-on-a-Chip: A Flow-Based Microfluidic System for Cell-Free Glycoprotein Biosynthesis. Frontiers in Molecular Biosciences. 8: 782905 |
Taw MN, Li M, Kim D, et al. (2021) Engineering a Supersecreting Strain of by Directed Coevolution of the Multiprotein Tat Translocation Machinery. Acs Synthetic Biology |
Li M, Zheng X, Shanker S, et al. (2021) Shotgun scanning glycomutagenesis: A simple and efficient strategy for constructing and characterizing neoglycoproteins. Proceedings of the National Academy of Sciences of the United States of America. 118 |
Stephens EA, Ludwicki MB, Meksiriporn B, et al. (2021) Engineering Single Pan-Specific Ubiquibodies for Targeted Degradation of All Forms of Endogenous ERK Protein Kinase. Acs Synthetic Biology |
Jaroentomeechai T, Taw MN, Li M, et al. (2020) Cell-Free Synthetic Glycobiology: Designing and Engineering Glycomolecules Outside of Living Cells. Frontiers in Chemistry. 8: 645 |