National Institute of Technology Rourkela

राष्ट्रीय प्रौद्योगिकी संस्थान राउरकेला

ଜାତୀୟ ପ୍ରଯୁକ୍ତି ପ୍ରତିଷ୍ଠାନ ରାଉରକେଲା

An Institute of National Importance

All Publications

Rabindra Kumar Behera

Associate Professor
beherarabi@nitrkl.ac.in

A. Parida, G. Bhattacharyya, S. Mallik, and R. K. Behera,"Rational pore engineering reveals the relative contribution of enzymatic sites and self-assembly towards rapid ferroxidase activity and mineralization: impact of electrostatic guiding and cage-confinement in bacterioferritin", Chemical Science, RSC 2025, 10.1039/D4SC07021F       Article
N. Behera, G. Bhattacharyya, S. Behera, and R. K. Behera,"Iron Mobilization from Intact Ferritin: Effect of Differential Redox Activity of Quinone Derivatives with NADH/O2 and In Situ Generated ROS.", Journal of Biological Inorganic Chemistry, Springer Nature 2024, https://doi.org/10.1007/s00775-024-02058-w       Article
R. K. Raut, G. Bhattacharyya, and R. K. Behera,"Gastric stability of bare and chitosan-fabricated ferritin and its bio-mineral: implication for potential dietary iron supplements", Dalton Transactions, vol.53, no.33, pp.13815-13830, RSC, July 2024, 10.1039/D4DT01839G       Article
A. Parida, A. Mohanty, R. K. Raut, I. Padhy, and R. K. Behera,"Modification of 4-fold and B-pores in bacterioferritin from Mycobacterium tuberculosis reveals their role in Fe2+ entry and oxidoreductase activity.", Inorganic Chemistry, vol.62, no.1, pp.178-191, ACS, January 2023, https://doi.org/10.1021/acs.inorgchem.2c03156       Article
A. Parida and R. K. Behera,"Iron Accumulation in Ferritin.", Protein Cages, ch.7, vol.2671, pp.121-134, Springer Nature, methods in molecular biology, June 2023, https://doi.org/10.1007/978-1-0716-3222-2_7       Inbook
A. Mohanty, A. Parida, R. K. Raut, and R. K. Behera,"Ferritin: A Promising Nanoreactor & Nanocarrier for Bio-nanotechnology.", ACS Bio & Med Chem Au, vol.2, no.3, pp.258-281, ACS 2022, https://doi.org/10.1021/acsbiomedchemau.2c00003       Article
A. Parida, A. Mohanty, R. K. Raut, I. Padhy, and R. K. Behera,"Modification of 4-Fold and B-Pores in Bacterioferritin from Mycobacterium tuberculosis Reveals Their Role in Fe2+ Entry and Oxidoreductase Activity", Inorganic Chemistry, ACS, December 2022, https://doi.org/10.1021/acs.inorgchem.2c03156       Article
P. K. Koochana, A. Mohanty, A. Parida, N. Behera, P. M. Behera, A. Dixit, and R. K. Behera,"Flavin-mediated reductive iron mobilization from frog M and Mycobacterial ferritins: impact of their size, charge and reactivities with NADH/O2", Journal of Biological Inorganic Chemistry, vol.26, no.2-3, pp.265-281, Springer 2021, 10.1007/s00775-021-01850-2.       Article
A. Mohanty, M. K, S. Jena, and R. K. Behera,"Kinetics of Ferritin Self-Assembly by Laser Light Scattering: Impact of Subunit Concentration, pH, and Ionic Strength", Biomacromolecules, vol.22, no.4, pp.1389–1398, ACS 2021, 10.1021/acs.biomac.0c01562.       Article
A. Mohanty, A. Parida, B. Subhadarshanee, N. Behera, T. Subudhi, P. K. Koochana, and R. K. Behera,"Alteration of Coaxial Heme Ligands Reveals the Role of Heme in Bacterioferritin from Mycobacterium tuberculosis", Inorganic Chemistry, ACS 2021, 10.1021/acs.inorgchem.1c01554       Article