Ravi Kumar Gundampati
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Researcher
Also affiliated: Institute of Medical Sciences (2013–2016); Indian Institute of Technology BHU (2015–2016); Banaras Hindu University (2010–2016)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Ravi Kumar Gundampati's research focuses on the structural and functional properties of human acidic fibroblast growth factor (FGF1). His work investigates the molecular forces that govern the thermal unfolding and reversibility of this protein, contributing to a deeper understanding of protein stability and dynamics. Gundampati has also explored methods for site-specific labeling of FGF1 with fluorescent dyes, examining how modifications in different regions of the protein, such as the N-terminal and β-turn regions, affect its functional efficiencies. His research utilizes molecular modeling and experimental characterization techniques to elucidate protein behavior at a fundamental level. Gundampati has published 39 papers, accumulating over 1,000 citations and maintaining an h-index of 16. He has collaborated with several faculty members at the University of Arkansas at Fayetteville, including Thallapuranam Krishnaswamy Suresh Kumar, Colin D. Heyes, Mamello Mohale, and Mahmoud Moradi.
Metrics
- h-index: 16
- Publications: 39
- Citations: 1,053
Selected Publications
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Site-specific labeling and functional efficiencies of human fibroblast growth Factor-1 with a range of fluorescent Dyes in the flexible N-Terminal region and a rigid β-turn region (2021)
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Characterization of the structural forces governing the reversibility of the thermal unfolding of the human acidic fibroblast growth factor (2021)
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Heparin-Binding Affinity Tag: A Novel Affinity Tag for Simple and Efficient Purification of Recombinant Proteins (2020)
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Stability Comparisons between Natural Archaeal and Engineered Archaeal‐Bacterial Heat‐Shock Protein Subunits (α, β, and β‐cohesin) and their Oligomeric Complexes (2020)
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Silver Ions Caused Faster Diffusion of H-NS Proteins in Live E. coli by Weakening the Binding Between H-NS Proteins and DNA (2020)
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Silver Ions Caused Faster Diffusive Dynamics of Histone-Like Nucleoid-Structuring Proteins in Live Bacteria (2020)
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Molecular insights on cytochrome c and nucleotide regulation of apoptosome function and its implication in cancer (2019)
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Faster diffusive dynamics of histone-like nucleoid structuring proteins in live bacteria caused by silver ions (2019)
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Design of a thrombin resistant human acidic fibroblast growth factor (hFGF1) variant that exhibits enhanced cell proliferation activity (2019)
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Biocompatible, Injectable Anionic Hydrogels Based on Poly(Oligo Ethylene Glycol Monoacrylate‐<i>co</i>‐Acrylic Acid) for Protein Delivery (2019)
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NMR Methods to Characterize Protein-Ligand Interactions (2019)
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Molecular mechanisms of heparin-induced modulation of human interleukin 12 bioactivity (2019)
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Probing the role of proline −135 on the structure, stability, and cell proliferation activity of human acidic fibroblast growth factor (2018)
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Enhanced electron transfer mediated detection of hydrogen peroxide using a silver nanoparticle–reduced graphene oxide–polyaniline fabricated electrochemical sensor (2018)
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Effect of extension of the heparin binding pocket on the structure, stability, and cell proliferation activity of the human acidic fibroblast growth factor (2017)
Collaboration Network
Top Collaborators
- Characterization of the structural forces governing the reversibility of the thermal unfolding of the human acidic fibroblast growth factor
- Site-specific labeling and functional efficiencies of human fibroblast growth Factor-1 with a range of fluorescent Dyes in the flexible N-Terminal region and a rigid β-turn region
- Characterization of the structural forces governing the reversibility of the thermal unfolding of the human acidic fibroblast growth factor
- Characterization of the structural forces governing the reversibility of the thermal unfolding of the human acidic fibroblast growth factor
- Characterization of the structural forces governing the reversibility of the thermal unfolding of the human acidic fibroblast growth factor
- Site-specific labeling and functional efficiencies of human fibroblast growth Factor-1 with a range of fluorescent Dyes in the flexible N-Terminal region and a rigid β-turn region
- Site-specific labeling and functional efficiencies of human fibroblast growth Factor-1 with a range of fluorescent Dyes in the flexible N-Terminal region and a rigid β-turn region
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