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Saraswathi Vishveshwara

Researcher at Indian Institute of Science

Publications -  80
Citations -  2346

Saraswathi Vishveshwara is an academic researcher from Indian Institute of Science. The author has contributed to research in topics: Protein structure & Ab initio. The author has an hindex of 22, co-authored 77 publications receiving 2129 citations.

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The role of lysine-41 in RNase A catalysis: A quantum chemical study on the active site–ligand complex

TL;DR: In this article, the molecular dynamics averaged coordinates of RNase A, bound to the ligand UpA, were obtained based on empirical potential functions, and the 49 atom system and other model systems were optimized at the 3-21G level and the energies of the optimized systems were obtained at the 6-31G* level.
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Stability of dimeric interface in banana lectin: Insight from molecular dynamics simulations

TL;DR: The overall study demonstrates that the Banlec dimer is a highly stable structure, and the stability is mostly contributed by interfacial interactions.
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Characterization of the backbone geometry of protein native state structures.

TL;DR: A simple method is presented for analyzing the geometry of noncovalent residue–residue interactions stabilizing the protein structure, which takes into account the constraints on the local backbone geometry and finds that the principal geometrical constraints are amino acid aspecific and are associated with hydrogen bond formation in helices and sheets.
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Structure of valinomycin by molecular dynamics studies.

TL;DR: MD studies at 100K have been carried out on the minimized crystal structure of the molecule to scan the possible conformations in the neighbourhood of the well known 'bracelet' like structure of uncomplexed Valinomycin to analyze the characteristics of the unique conformation adopted by this molecule at this temperature.
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Impact of theoretical chemistry on chemical and biological sciences

TL;DR: In this paper, the authors introduce the theoretical methods developed for the study of complex chemical and biological systems and connect the works of the awardees to this vast area of research, and highlight the impact of theoretical chemistry on the advancement of our understanding of complex biological and chemical systems.