Items where Author is "Singh, Vijay"

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Singh, Appu Kumar and Ekka, Mary Krishna and Kaushik, Abhishek and Pandya, Vaibhav and Singh, Ravi P. and Banerjee, Shrijita and Mittal, Monica and Singh, Vijay and Kumaran, S. (2017) Substrate-Induced Facilitated Dissociation of the Competitive Inhibitor from the Active Site of O-Acetyl Serine Sulfhydrylase Reveals a Competitive-Allostery Mechanism. Biochemistry, 56 (37). pp. 5011-5025. ISSN 0006-2960

Singh, Appu Kumar and Manjasetty, Babu and Balasubramani, G L and Koul, Sukirte and Kaushik, Abhishek and Ekka, Mary Krishna and Singh, Vijay and Kumaran, Sangaralingam (2015) Crystal Structure of Fad35R from Mycobacterium tuberculosis H37Rv in the Apo-State. PloS one, 10 (5). e0124333. ISSN 1932-6203

Singh, Appu Kumar and Singh, Mirage and Pandya, Vaibhav Kumar and G L, Balasubramani and Singh, Vijay and Ekka, Mary Krishna and Mittal, Monica and Kumaran, Sangaralingam (2014) Molecular basis of peptide recognition in metallopeptidase Dug1p from Saccharomyces cerevisiae. Biochemistry, 53 (50). pp. 7870-83. ISSN 1520-4995

Singh, Vijay (2014) Mechanistic Studies of Transcription Regulation by PhoP from Salmonella typhimurium. PhD thesis, CSIR-IMTECH Chandigarh/ Jawaharlal Nehru University, New Delhi.

Anand, Sushma and Singh, Vijay and Singh, Appu Kumar and Mittal, Monica and Datt, Manish and Subramani, Bala and Kumaran, Sangaralingam (2012) Equilibrium binding and kinetic characterization of putative tetracycline repressor family transcription regulator Fad35R from Mycobacterium tuberculosis. The FEBS journal, 279 (17). pp. 3214-28. ISSN 1742-4658

Anand, Sushma and Singh, Vijay and Singh, Appu Kumar and Mittal, Monica and Datt, Manish and Subramani, Bala and Kumaran, Sangaralingam (2012) Equilibrium binding and kinetic characterization of putative tetracycline repressor family transcription regulator Fad35R from Mycobacterium tuberculosis. The FEBS journal, 279 (17). pp. 3214-28. ISSN 1742-4658

Singh, Vijay and Ekka, Mary Krishna and Kumaran, Sangaralingam (2012) Second monomer binding is the rate-limiting step in the formation of the dimeric PhoP-DNA complex. Biochemistry, 51 (7). pp. 1346-56. ISSN 1520-4995

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