Biotechnology - Computational and Structural Biology; Bioinformatics; Biofuels

  • S. Narayanan and K. V. Ramesh (2017). Epigallocatechin gallate, a green tea polyphenol inhibits Mycobacterium smegmatis: In silico and In vitro studies. Indian J of Pharmaceutical Sciences 79 (4): 625 – 632. (IF: 0.66).
  • Narayanan S, Ramchandran B, Rajendiran S, Chandra S, Tiwari A, Rajarethinam R. and Ramesh KV. (2016). Potent antitumor activity of (-) epigallocatechin gallate: Indications from in vitro, in vivo and in silico studies, Current Science 110: 187-195. (IF: 0.843).
  • Mutangana D and KV Ramesh (2015). Modeling the interactions between MC2R and ACTH models from humans. Journal of Biomolecular Structure and Dynamics, 33 (4): 770-788. (IF: 3.107)
  • Ramesh KV, Solanki M, Sharma S and Deshmukh S. (2015). MD simulation of homology modelled 2 nitropropane dioxygenase from Mycobacterium tuberculosis. Journal of Scientific & Industrial Research 11 (4): 277-280. (IF: 0.557).
  • Chougala BM, Shastri SL, Holiyachi M, Shastri LA, More SS and KV Ramesh (2015). Synthesis, anti-microbial and anti-cancer evaluation study of 3-(3-benzofuranyl)-coumarin derivatives. Medicinal Chemistry Research,  24 (12): 4128-4138. (IF: 1.277).
  • Mutangana D, KV Ramesh and Maithri SK (2014). Computational studies on the truncation of N-terminal fragment of OspA antigen of Borrelia burgdorferi: towards designing a second-generation vaccine against Lyme disease. Current Proteomics 11 (4): 264-280. IF: 0.59
  • KV Ramesh, Chandy S, Pai D and Deshmukh S (2012). In silico docking of herbal based ‘epigallocatechin’ onto homology modeled keto-acyl–ACP reductase domain of FAS protein from Mycobacterium tuberculosis H37Rv, Indian J Biotechnology 11: 257-266. (IF:0.510).
  • KV Ramesh, BN Akhila and Deshmukh S. (2011) Molecular modelling of 2-nitropripane dioxygenase domain of Mycobacterium H37Rv and docking of herbal ligands. Indian Journal of Biochemistry and Biophysics 48: 164-169. IF:0.958
  • Ramesh K V, Mitali P, Mekhala K, Mrinalini K, Kaushiki Wagle and Sudha Deshmukh, (2008). Modeling the interactions of herbal drugs to β-ketoacyl ACP synthase of Mycobacterium tuberculosis H37Rv. Journal of Biomolecular and Structural Dynamics. 25: 481-494. (IF: 3.107).
  • Ramesh KV, Wagle K and Deshmukh S. (2007). Domain analysis of fatty acid synthase protein (NP_217040) from Mycobacterium tuberculosis H37Rv – A bioinformatics study. Journal of Biomolecular and Structural Dynamics, 24: 393-412. (IF: 3.107)
  • Mutangana D and K V Ramesh. (2014) Modeling the interactions between MC2R and ACTH models from humans. Journal of Biomolecular Structure and Dynamics April, DOI: 10.1080 / 07391102.2014.910475.
  • Mutangana D, K V Ramesh and Maithri S K. (2014) Computational studies on the truncation of an N-terminal fragment of OspA antigen of Borrelia burgdorferi: towards designing a second-generation vaccine against Lyme disease. Current Proteomics Vol. 11:264-280.
  • Joy das, Ramesh KV, Maithri U, Mutangana D and Suresh CK. Indian J of Experimental Biology, (Accepted) (2014). Response of aerobic rice to Piriformosporaindica.
  • KV Ramesh, Shiny Chandy, Deepika Pai and Sudha Deshmukh. Indian J Biotechnology Vol 11: 257-266, (2012). Insilico docking of herbal based ‘epigallocatechin’ onto homology modeled keto-acyl –ACP reductase domain of FAS protein from Mycobacterium tuberculosis H37Rv.
  • K V Ramesh, B N Akhila and Sudha Deshmukh. Indian J Biochemistry and Biophysics, Vol 48: 164-169, 2011. Molecular modelling of 2-nitropripane domain of Mycobacterium H37Rv and docking of herbal ligands.
  • Ramesh K V, Kaushiki Wagle and Sudha Deshmukh. Biomol. Str. & Dynamics (USA), 24 (4), 393-412, 2007. Domain analysis of fatty acid synthase protein (NP_217040) from Mycobacterium tuberculosis H37Rv – A bioinformatics study.
  • Ramesh K V, Kaushiki Wagle and Sudha Deshmukh. J. Biomol.. Str. & Dynamics (USA), 25(5), 481-493, 2008. Modeling the interaction of herbal drugs to b-ketoacyl ACP synthase of Mycobacterium tuberculosis H37Rv

Industrial Biotechnology

  • Srividya S and Majumdar M. (2011). Influence of process parameters on the production of detergent compatible alkaline protease by a newly isolated Bacillus sp. Y. Turkish Journal Biology 35: 177-182 (IF: 1.183).
  • Majumdar M. and Srividya S (2010). Partial purification and properties of a laundry detergent compatible alkaline protease from a newly isolated Bacillus sp. Indian Journal of Microbiology 50(3), 309-317. (IF: 0.988).
  • Varalakshmi KN, Kumudini BS, Nandini BN, Solomon J, Suhas R, Mahesh B. and Kavitha AP. (2009). Production and characterization of alpha-amylase from Aspergillus niger JGI24 isolated in Bangalore. Polish Journal of Microbiology 58(1):29-36 (IF: 0.746).
  • Varalakshmi KN, Kumudini BS, Nandini BN, Solomon JD, Mahesh B, Suhas, R and Kavitha AP. (2008). Characterization of alpha amylase from Bacillus sp.1 isolated from paddy seeds. Journal of Applied Biosciences 1(2): 46 – 53.
  • Alva S, Anupama J, Savla J, Chiu YY, Vyshali P, Shruti M, Yogeetha BS, Bhavya D, Purvi J, Ruchi K, Kumudini BS and Varalakshmi KN. (2007). Production and characterization of fungal amylase enzyme isolated from Aspergillus sp. JGI 12 in solid state cultivation. African Journal of Biotechnology 6 (5) 576-581.