关注
Sindrila Dutta Banik
Sindrila Dutta Banik
Sr. Scientist
在 calpion.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
A Correlation between the Activity of Candida antarctica Lipase B and Differences in Binding Free Energies of Organic Solvent and Substrate
S Dutta Banik, M Nordblad, J Woodley, G Peters
ACS Catalysis 6, 6350−6361, 2016
492016
Chirality and protein biosynthesis
SD Banik, N Nandi
Biochirality: Origins, Evolution and Molecular Recognition, 255-305, 2013
332013
Mechanism of the activation step of the aminoacylation reaction: a significant difference between class I and class II synthetases
SD Banik, N Nandi
Journal of Biomolecular Structure and Dynamics 30 (6), 701-715, 2012
332012
Nanoaggregate shapes at the air/water interface
D Vollhardt, N Nandi, SD Banik
Physical Chemistry Chemical Physics 13 (11), 4812-4829, 2011
332011
A hybrid QM/MM simulation study of intramolecular proton transfer in the pyridoxal 5′-phosphate in the active site of transaminase: influence of active site interaction on …
S Dutta Banik, A Chandra
The Journal of Physical Chemistry B 118 (38), 11077-11089, 2014
292014
Aminoacylation reaction in the histidyl-tRNA synthetase: fidelity mechanism of the activation step
SD Banik, N Nandi
The Journal of Physical Chemistry B 114 (6), 2301-2311, 2010
242010
Effect of Water Clustering on the Activity of Candida antarctica Lipase B in Organic Medium
IDGHP Sindrila Dutta Banik 1, Mathias Nordblad 2, John M. Woodley 2
Catalysts 7, 2017
232017
Active site nanospace of aminoacyl tRNA synthetase: difference between the class I and class II synthetases
S Dutta, K Choudhury, SD Banik, N Nandi
Journal of Nanoscience and Nanotechnology 14 (3), 2280-2298, 2014
152014
Orientation and distance dependent chiral discrimination in the first step of the aminoacylation reaction: Integrated molecular orbital and semi-empirical method (ONIOM) based …
SD Banik, N Nandi
Colloids and Surfaces B: Biointerfaces 74 (2), 468-476, 2009
152009
Cross-sectional area increase at phase transition on compression: an unexpected phenomenon observed in an amide monolayer
G Brezesinski, C Stefaniu, D Nandy, S Dutta Banik, N Nandi, D Vollhardt
The Journal of Physical Chemistry C 114 (37), 15695-15702, 2010
142010
Influence of the conserved active site residues of histidyl tRNA synthetase on the mechanism of aminoacylation reaction
SD Banik, N Nandi
Biophysical Chemistry 158 (1), 61-72, 2011
122011
A QM/MM simulation study of transamination reaction at the active site of aspartate aminotransferase: Free energy landscape and proton transfer pathways
S Dutta Banik, A Bankura, A Chandra
Journal of Computational Chemistry 41 (32), 2684-2694, 2020
62020
Architectonics of active sites: life processes at nanodimension
S Dutta Banik, N Nandi
Materials nanoarchitectonics. Royal Society Publication Cambridge, UK, 2012
62012
A significant difference in the reaction mechanism of the first step of the aminoacylation reaction in class I and class II synthetases
S Dutta Banik, S Debnath, N Nandi
Journal of the Indian Chemical Society 89 (8), 2012
12012
In silico approach to better understand the role of active site residue
S Dutta Banik, S Venkataraju, N Kulkarni, S Jana
2019
In Silico engineered SmSDR enzyme for the preparation of enantiopure R-phenylephrine
S Dutta Banik, R Vinekar, N Kulkarni
2019
Architectonics of Active Sites: Life Processes at Nanodimensions
SD Banik
2012
Computational analysis of the structure and stability of the tetrahedral intermediate in the peptide bond formation reaction in peptidyl transferase center
SD Banik, N Nandi
JOURNAL OF THE INDIAN CHEMICAL SOCIETY 88 (11), 1687-1695, 2011
2011
Molecular Understanding of the Influence of Chirality and Interaction in Soft Systems: From Biomimetics to Biosystems A Retrospection
SDB N. Nandi
J. Surface Sci. Technol 25, 29-46, 2009
2009
Computational study of amino acylation reaction in aminoacyl synthetase and peptide synthesis in ribosome
SD Banik
Kalyani, 0
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