Manju Bansal
Manju Bansal
Indian Institute of Science
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Cited by
Cited by
A standard reference frame for the description of nucleic acid base-pair geometry
WK Olson, M Bansal, SK Burley, RE Dickerson, M Gerstein, SC Harvey, ...
Journal of molecular biology 313 (1), 229-237, 2001
Hairpin and parallel quartet structures for telomeric sequences
P Balagurumoorthy, SK Brahmachari, D Mohanty, M Bansal, ...
Nucleic acids research 20 (15), 4061-4067, 1992
Definitions and nomenclature of nucleic acid structure parameters
RE Dickerson
Journal of Biomolecular Structure and Dynamics 6 (4), 627-634, 1989
A glossary of DNA structures from A to Z
A Ghosh, M Bansal
Acta Crystallographica Section D: Biological Crystallography 59 (4), 620-626, 2003
A hypothesis on the role of hydroxyproline in stabilizing collagen structure
GN Ramachandran, M Bansal, RS Bhatnagar
Biochimica et Biophysica Acta (BBA)-Protein Structure 322 (1), 166-171, 1973
Collagen structure: the Madras triple helix and the current scenario
A Bhattacharjee, M Bansal
IUBMB life 57 (3), 161-172, 2005
HELANAL: a program to characterize helix geometry in proteins
M Bansal, S Kumart, R Velavan
Journal of Biomolecular Structure and Dynamics 17 (5), 811-819, 2000
Numerical data and functional relationships in science and technology. New series
H Landolt, R Börnstein
Springer, 1961
NUPARM and NUCGEN: software for analysis and generation of sequence dependent nucleic acid structures
M Bansal, D Bhattacharyya, B Ravi
Bioinformatics 11 (3), 281-287, 1995
Dissecting α‐helices: Position‐specific analysis of α‐helices in globular proteins
S Kumar, M Bansal
Proteins: Structure, Function, and Bioinformatics 31 (4), 460-476, 1998
Conformational flexibility of DNA: polymorphism and handedness
G Gupta, M Bansal, V Sasisekharan
Proceedings of the National Academy of Sciences 77 (11), 6486-6490, 1980
Structural properties of promoters: similarities and differences between prokaryotes and eukaryotes
A Kanhere, M Bansal
Nucleic acids research 33 (10), 3165-3175, 2005
Geometrical and sequence characteristics of α-helices in globular proteins
S Kumar, M Bansal
Biophysical Journal 75 (4), 1935-1944, 1998
A novel method for prokaryotic promoter prediction based on DNA stability
A Kanhere, M Bansal
BMC bioinformatics 6 (1), 1-10, 2005
Double helix conformation, groove dimensions and ligand binding potential of a G/C stretch in B‐DNA.
U Heinemann, C Alings, M Bansal
The EMBO journal 11 (5), 1931-1939, 1992
A new insight into the structure and stability of Hoogsteen hydrogen-bonded G-tetrad: an ab initio SCF study
J Gu, J Leszczynski, M Bansal
Chemical physics letters 311 (3-4), 209-214, 1999
CH.. O hydrogen bonds in minor groove of A-tracts in DNA double helices
A Ghosh, M Bansal
Journal of molecular biology 294 (5), 1149-1158, 1999
CA/TG sequence at the 5'end of oligo (A)-tracts strongly modulates DNA curvature.
AK Nagaich, D Bhattacharyya, SK Brahmachari, M Bansal
Journal of Biological Chemistry 269 (10), 7824-7833, 1994
Maximum-entropy calculation of the electron density at 4 A resolution of Pf1 filamentous bacteriophage
RK Bryan, M Bansal, W Folkhard, C Nave, DA Marvin
Proceedings of the National Academy of Sciences 80 (15), 4728-4731, 1983
Local variability and base sequence effects in DNA crystal structures
D Bhattacharyya, M Bansal
Journal of Biomolecular Structure and Dynamics 8 (3), 539-572, 1990
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