Manish Paul
University of California, San Francisco, Maharaja Sriram Chandra Bhanja Deo University
About
I have completed my Ph.D. from the Department of Biotechnology, Maharaja Sriram Chandra Bhanja Deo University, Odisha, India. My thesis title was "Lignocellulolytic microorganisms from Simlipal Biosphere Reserve and their efficacy in bioethanol production: Experimental and in-silico analysis". I joined Mukherjee lab at University of California San Francisco, USA in October 2023 as a Postdoctoral research scholar, where my research focus is to investigate the molecular mechanisms by which the bacterium Legionella pneumophila modify host cell biology.
Employment
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University of California, San Francisco Postdoctoral Research Scholar2023 - Present
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Maharaja Sriram Chandra Bhanja Deo University Ph.D. Research Scholar2017 - 2022
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (26)
- Loss of PI3Kα Mediates Protection From Myocardial Ischemia–Reperfusion Injury Linked to Preserved Mitochondrial Function Save
- An insight into omics analysis and metabolic pathway engineering of lignin-degrading enzymes for enhanced lignin valorization Save
- Zymography assisted quick purification, characterization and inhibition analysis of K. pneumoniae alkaline phosphatase by mercury and thiohydroxyal compounds. Save
- In silico homology modeling, docking and sequence analysis of some bacterial laccases to unravel enzymatic specificity towards lignin biodegradation. Save
- Current status of COVID-19 vaccination: safety and liability concern for children, pregnant and lactating women. Save
- Response surface methodology mediated optimization of Lignin peroxidase from Bacillus mycoides isolated from Simlipal Biosphere Reserve, Odisha, India. Save
- Improvement of saccharification of native grass, Pennisetum sp. using cellulase from isolated Aspergillus fumigatus for bioethanol production: an insight into in silico molecular modelling, docking and dynamics studies Save
- Microbial xylanases, their structural characteristics, and industrial applications: A biotechnological advancement Save
- Molecular modeling, docking and dynamic studies of fungal DyPs to determine substrate specificity for an efficient lignin biodegradation towards bioethanol production Save
- Promising Anti-cancer Therapeutics From Mushrooms: Current Findings and Future Perceptions. Save