Kinshuk Raj Srivastava
Central Drug Research Institute, Regional Centre for Biotechnology
About
Dr. Kinshuk Raj Srivastava has > 15 years of experience in chemical biology and biophysics and co-authored ~30 publications mostly as the corresponding and first author. During his Ph.D. from IIT Bombay he has worked on the design and development of peptide-based therapeutics and enzyme mimetics. After Ph.D. he has done three post-doctorate in well-renowned universities across USA and gained a deeper understanding of protein: protein interactions, and enzyme-mediated biosynthesis of natural product-based drugs. After the postdoctoral experience, he established his independent career as an Assistant professor in UNESCO-RCB, Faridabad. His research team was involved in the development of synthetic biology/biocatalytic platform for the synthesis of pharmaceuticals and pharmaceutical intermediates. He recently moved to CDRI, Lucknow, and continued his drug discovery and development work by exploiting his gained expertise in batteries of computational biology and experimental biochemical and biophysical expertise.
Employment
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Central Drug Research Institute Senior Scientist & Assistant Professor2021 - Present
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Regional Centre for Biotechnology Assistant Professor2019 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (32)
- Development of a Whole-Cell Biocatalytic System for Lycopene Production in Escherichia coli Save
- Phytochemicals Targeting Wnt/β‐Catenin in Osteoblasts: Mechanisms, Scaffolds, and Computational Insights for Bone Therapeutics Save
- Time series analysis of SARS-CoV-2 genomes and correlations among highly prevalent mutations Save
- Computational exploration of bio-remediation solution for mixed plastic waste Save
- Dynamic play between human N-α-acetyltransferase D and H4-mutant histones: Molecular dynamics study Save
- Revolutionizing enzyme engineering through artificial intelligence and machine learning Save
- Molecular Basis of Iterative C–H Oxidation by TamI, a Multifunctional P450 Monooxygenase from the Tirandamycin Biosynthetic Pathway Save
- Molecular Basis of Iterative C–H Oxidation by TamI, a Multifunctional P450 Monooxygenase from the Tirandamycin Biosynthetic Pathway Save
- Carbonyl Cytotoxicity Affects Plant Cellular Processes and Detoxifying Enzymes Scavenge These Compounds to Improve Stress Tolerance Save
- Genetic diversity of NDUFV1-dependent mitochondrial complex I deficiency Save