Publications

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Listed below are the Publications supported by Technology platforms at C-CAMP / Bangalore Life Science Cluster.

Export 302 results:
Author Title Type [ Year(Asc)]
2017
Vijayasarathy M, Basheer SM, Franklin JBenjamin, Balaram P.  2017.  Contryphan Genes and Mature Peptides in the Venom of Nine Cone Snail Species by Transcriptomic and Mass Spectrometric Analysis [Next Gen Genomics Facility]. J Proteome Res. 16(2):763-772.
Nadiya F, Anjali N, Thomas J, Gangaprasad A, Sabu KK.  2017.  Data on identification of conserved and novel miRNAs in Elettaria cardamomum [Next Gen Genomics Facility]. Data Brief. 14:789-792.
Ghatak A, Bharatham N, Shanbhag AP, Datta S, Venkatraman J.  2017.  Delineating Substrate Diversity of Disparate Short-Chain Dehydrogenase Reductase from Debaryomyces hansenii [Bugworks Res. Pvt. Ltd., a C-CAMP Startup]. PLoS One. 12(1):e0170202.
Boya R, Yadavalli ADevi, Nikhat S, Kurukuti S, Palakodeti D, Pongubala JMR.  2017.  Developmentally regulated higher-order chromatin interactions orchestrate B cell fate commitment.. Nucleic Acids Res.
Narayanannair A, Nadiya F, Thomas J, Sabu K.  2017.  Discovery of MicroRNAs in Cardamom ( Elettaria cardamomum Maton) under Drought Stress. Dataset Papers in Science. 2017:1-4.
Mangrauthia SK, Bhogireddy S, Agarwal S, Prasanth VV, Voleti SR, Neelamraju S, Subrahmanyam D.  2017.  Genome-wide changes in microRNA expression during short and prolonged heat stress and recovery in contrasting rice cultivars [Next Gen Genomics Facility]. J Exp Bot. 68(9):2399-2412.
Velmurugan G, Ramprasath T, Swaminathan K, Mithieux G, Rajendhran J, Dhivakar M, Parthasarathy A, Babu DDVenkates, Thumburaj LJohn, Freddy AJ et al..  2017.  Gut microbial degradation of organophosphate insecticides-induces glucose intolerance via gluconeogenesis. [Next Generation Genomics facility]. Genome Biol. 18(1):8.
Ashwini S, Bobby Z, Sridhar MG, Cleetus CC.  2017.  Insulin Plant (Costus pictus) Extract Restores Thyroid Hormone Levels in Experimental Hypothyroidism [Mass Spectrometry - Metabolomics Facility].. Pharmacognosy Res. 9(1):51-59.
Hebbar S, Khandelwal A, Jayashree R, Hindle SJ, Chiang YNing, Yew JY, Sweeney ST, Schwudke D.  2017.  Lipid metabolic perturbation is an early-onset phenotype in adultmutants: amodel for lysosomal storage disorders. [Mass Spectrometry - Lipidomics]. Mol Biol Cell. 28(26):3728-3740.
Bharatham N, Finch KE, Min J, Mayasundari A, Dyer MA, R Guy K, Bashford D.  2017.  Performance of a docking/molecular dynamics protocol for virtual screening of nutlin-class inhibitors of Mdmx.. J Mol Graph Model. 74:54-60.
Patra A, Kalita B, Chanda A, Mukherjee AK.  2017.  Proteomics and antivenomics of Echis carinatus carinatus venom: Correlation with pharmacological properties and pathophysiology of envenomation.. Sci Rep. 7(1):17119.
Vikram A, Lewarchik CM, Yoon J-Y, Naqvi A, Kumar S, Morgan GM, Jacobs JS, Li Q, Kim Y-R, Kassan M et al..  2017.  Sirtuin 1 regulates cardiac electrical activity by deacetylating the cardiac sodium channel.. Nat Med.
Kumar S, Kim Y-R, Vikram A, Naqvi A, Li Q, Kassan M, Kumar V*, Bachschmid MM, Jacobs JS, Kumar A et al..  2017.  Sirtuin1-regulated lysine acetylation of p66Shc governs diabetes-induced vascular oxidative stress and endothelial dysfunction.. Proc Natl Acad Sci U S A.
Srikanth J, Agalyadevi R, Babu P.  2017.  Targeted, Site-specific quantitation of N- and O-glycopeptides using (18)O-labeling and product ion based mass spectrometry.. Glycoconj J. 34(1):95-105.
Deshpande AB, Anamika K, Jha V, Chidley HG, Oak PS, Kadoo NY, Pujari KH, Giri AP, Gupta VS.  2017.  Transcriptional transitions in Alphonso mango (Mangifera indica L.) during fruit development and ripening explain its distinct aroma and shelf life characteristics [Next Gen Genomics Facility]. Sci Rep. 7(1):8711.
Nadiya F, Anjali N, Thomas J, Gangaprasad A, Sabu KK.  2017.  Transcriptome profiling of Elettaria cardamomum (L.) Maton (small cardamom).. Genom Data. 11:102-103.
Sathyanarayana N, Pittala RKumar, Tripathi PKumar, Chopra R, Singh HRussiachan, Belamkar V, Bhardwaj PKumar, Doyle JJ, Egan AN.  2017.  Transcriptomic resources for the medicinal legume Mucuna pruriens: de novo transcriptome assembly, annotation, identification and validation of EST-SSR markers [Next Gen Genomics Facility]. BMC Genomics. 18(1):409.
2016
Ambardar S, Singh HRussiachan, Gowda M, Vakhlu J.  2016.  Comparative Metagenomics Reveal Phylum Level Temporal and Spatial Changes in Mycobiome of Belowground Parts of Crocus sativus [Next Gen Genomics Facility]. PLoS One. 11(9):e0163300.
Neerathilingam M, Bairy SG, Mysore S.  2016.  Deciphering Mode of Action of Functionally Important Regions in the Intrinsically Disordered Paxillin (Residues 1-313) Using Its Interaction with FAT (Focal Adhesion Targeting Domain of Focal Adhesion Kinase). [Protein Technology Core]. PLoS One. 11(2):e0150153.
Rai A, Pathak D, Thakur S, Singh S, Dubey AKumar, Mallik R.  2016.  Dynein Clusters into Lipid Microdomains on Phagosomes to Drive Rapid Transport toward Lysosomes.. Cell. 164(4):722-34.
Kumar N, Gupta DGopal, Kumar S, al. et..  2016.  Exploring Packaged Microvesicle Proteome Composition of Chinese Hamster Ovary Secretome [Mass Spectrometry - Proteomics]. Journal of Bioprocessing & Biotechniques. 6:1-11.
Bhatt HH, Pasricha R, Upasani VN.  2016.  Isolation and Characterization of a Halophilic Cyanobacterium Euhalothece SLVH01 from Sambhar Salt Lake, India. Int.J.Curr.Microbiol.App.Sci (2016) 5(2): 215-224 [Electron Microscopy Facility - TEM].
Thakur R, Kini S, Kurkalang S, Banerjee A, Chatterjee P, Chanda A, Chatterjee A, Panda D, Mukherjee AK.  2016.  Mechanism of apoptosis induction in human breast cancer MCF-7 cell by Ruviprase, a small peptide from Daboia russelii russelii venom.[Mass Spectrometry]. Chem Biol Interact. 258:297-304.
Ramakrishnan P, Nair S, Rangiah K.  2016.  A method for comparative metabolomics in urine using high resolution mass spectrometry.. J Chromatogr A. 1443:83-92.
Mukherjee AK, Kalita B, Mackessy SP.  2016.  A proteomic analysis of Pakistan Daboia russelii russelii venom and assessment of potency of Indian polyvalent and monovalent antivenom.[Mass Spectrometry]. J Proteomics. 144:73-86.

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