Publications

receptor proteins, fret, psychiatry Dana Matthews receptor proteins, fret, psychiatry Dana Matthews

An increased copy number of glycine decarboxylase (GLDC) associated with psychosis reduces extracellular glycine and impairs NMDA receptor function

Maltesh Kambali, Yan Li, Petr Unichenko, Jessica A Feria Pliego, Rachita Yadav, Jing Liu, Patrick McGuinness, Johanna G Cobb, Muxiao Wang, Rajasekar Nagarajan, Jinrui Lyu, Vanessa Vongsouthi, Colin J Jackson, Elif Engin, Joseph T Coyle, Jaeweon Shin, Nathaniel W Hodgson, Takao K Hensch, Michael E Talkowski, Gregg E Homanics, Vadim Y Bolshakov, Christian Henneberger, Uwe Rudolph

An increased copy number of glycine decarboxylase (GLDC) associated with psychosis reduces extracellular glycine and impairs NMDA receptor function

Molecular Psychiatry, 2025

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Leveraging ancestral sequence reconstruction for protein representation learning

Dana S. Matthews, Matthew A. Spence, Adam C. Mater, James Nichols, Sacha B. Pulsford, Mahakaran Sandhu, Joe A. Kaczmarski, Charlotte M. Miton, Nobuhiko Tokuriki, Colin J. Jackson

Leveraging ancestral sequence reconstruction for protein representation learning

Nature Machine Intelligence, 2024

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receptor proteins, gmo, receptor regulation Dana Matthews receptor proteins, gmo, receptor regulation Dana Matthews

An increased copy number of glycine decarboxylase (GLDC) associated with psychosis reduces extracellular glycine and impairs NMDA receptor function

Maltesh Kambali, Yan Li, Petr Unichenko, Jessica A. Feria Pliego, Rachita Yadav, Jing Liu, Patrick McGuinness, Johanna G. Cobb, Muxiao Wang, Rajasekar Nagarajan, Jinrui Lyu, Vanessa Vongsouthi, Colin J. Jackson, Elif Engin, Joseph T. Coyle, Jaeweon Shin, Nathaniel W. Hodgson, Takao K. Hensch, Michael E. Talkowski, Gregg E. Homanics, Vadim Y. Bolshakov, Christian Henneberger and Uwe Rudolph*

An increased copy number of glycine decarboxylase (GLDC) associated with psychosis reduces extracellular glycine and impairs NMDA receptor function

Molecular Psychiatry, 2024

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Increasing the Soluble Expression and Whole-Cell Activity of the Plastic-Degrading Enzyme MHETase through Consensus Design

Jake W Saunders, Adam M Damry, Vanessa Vongsouthi, Matthew A Spence, Rebecca L Frkic, Chloe Gomez, Patrick A Yates, Dana S Matthews, Nobuhiko Tokuriki, Malcolm D McLeod and Colin J Jackson*

Increasing the Soluble Expression and Whole-Cell Activity of the Plastic-Degrading Enzyme MHETase through Consensus Design

Biochemistry, 2024

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Exploiting Hydrophobic Amino Acid Scanning to Develop Cyclic Peptide Inhibitors of the SARS-CoV-2 Main Protease with Antiviral Activity

Katriona Harrison, Patrick W. Carlos, Sven Ullrich, Anupriya Aggarwal, Jason Johansen‐Leete, Vishnu Mini Sasi, Isabel Barter, Joshua WC. Maxwell, Max J. Bedding, Mark Larance, Stuart Turville, Alexander Norman, Colin J. Jackson, Christoph Nitsche, and Richard J. Payne*

Exploiting Hydrophobic Amino Acid Scanning to Develop Cyclic Peptide Inhibitors of the SARS-CoV-2 Main Protease with Antiviral Activity

Chemistry – A European Journal, 2024

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A full list of publications can be found on Google Scholar: