Matthew P. DeLisa

Affiliations: 
Chemical and Biomedical Engineering Cornell University, Ithaca, NY, United States 
Area:
General Biology, Microbiology Biology, Biomedical Engineering
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"Matthew DeLisa"

Parents

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George Georgiou post-doc UT Austin (Chemistry Tree)

Children

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Bunyarit 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
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