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Structural analysis of protein tyrosine phosphatase 1B reveals potentially druggable allosteric binding sites
Authors:Ammu Prasanna Kumar  Minh N Nguyen  Chandra Verma  Suryani Lukman
Institution:1. Department of Chemistry, College of Arts and Sciences, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates;2. Bioinformatics Institute, Agency for Science, Technology and Research, Singapore;3. Department of Biological Sciences, National University of Singapore, Singapore;4. School of Biological Sciences, Nanyang Technological University, Singapore
Abstract:Catalytic proteins such as human protein tyrosine phosphatase 1B (PTP1B), with conserved and highly polar active sites, warrant the discovery of druggable nonactive sites, such as allosteric sites, and potentially, therapeutic small molecules that can bind to these sites. Catalyzing the dephosphorylation of numerous substrates, PTP1B is physiologically important in intracellular signal transduction pathways in diverse cell types and tissues. Aberrant PTP1B is associated with obesity, diabetes, cancers, and neurodegenerative disorders. Utilizing clustering methods (based on root mean square deviation, principal component analysis, nonnegative matrix factorization, and independent component analysis), we have examined multiple PTP1B structures. Using the resulting representative structures in different conformational states, we determined consensus clustroids and used them to identify both known and novel binding sites, some of which are potentially allosteric. We report several lead compounds that could potentially bind to the novel PTP1B binding sites and can be further optimized. Considering the possibility for drug repurposing, we discovered homologous binding sites in other proteins, with ligands that could potentially bind to the novel PTP1B binding sites.
Keywords:allosteric site  binding site  drug design  molecular recognition  phosphatase  protein flexibility  structural bioinformatics  structural clustering
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