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Biochemistry|December 19, 2013
Targeted reengineering of protein geranylgeranyltransferase type I selectivity functionally implicates active-site residues in protein-substrate recognitionSoumyashree A Gangopadhyay, Erica L Losito, James L HouglandThe Journal of Biological Chemistry|September 21, 2012
Expansion of protein farnesyltransferase specificity using "tunable" active site interactions: development of bioengineered prenylation pathwaysJames L Hougland, Soumyashree A Gangopadhyay, Carol A FierkeBiochemistry|January 15, 2019
Precision Control of CRISPR-Cas9 Using Small Molecules and LightSoumyashree A Gangopadhyay, Kurt J Cox, Debasish Manna, et al.Bioconjugate Chemistry|November 13, 2015
Simultaneous Site-Specific Dual Protein Labeling Using Protein PrenyltransferasesYi Zhang, Melanie J Blanden, Ch Sudheer, et al.Angewandte Chemie (International Ed. in English)|March 6, 2019
A Singular System with Precise Dosing and Spatiotemporal Control of CRISPR-Cas9Debasish Manna, Basudeb Maji, Soumyashree A Gangopadhyay, et al.Analytical Chemistry|November 17, 2017
Simultaneous Analysis of a Non-Lipidated Protein and Its Lipidated Counterpart: Enabling Quantitative Investigation of Protein Lipidation's Impact on Cellular RegulationAgnesa Shala-Lawrence, Melanie J Blanden, Svetlana M Krylova, et al.Cell|May 4, 2019
A High-Throughput Platform to Identify Small-Molecule Inhibitors of CRISPR-Cas9Basudeb Maji, Soumyashree A Gangopadhyay, Miseon Lee, et al.Nature Cell Biology|November 18, 2022
A general approach to identify cell-permeable and synthetic anti-CRISPR small moleculesDonghyun Lim, Qingxuan Zhou, Kurt J Cox, et al.Nature|May 20, 2021
In vivo CRISPR base editing of PCSK9 durably lowers cholesterol in primatesKiran Musunuru, Alexandra C Chadwick, Taiji Mizoguchi, et al.Pageof 1