Mohammad Firoz Khan

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2015 Jawaharlal Nehru University, New Delhi, Delhi, India 
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"Mohammad Khan"
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Publications

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Banerjee A, Moreno A, Khan MF, et al. (2019) Cdr1p highlights the role of the non-hydrolytic ATP-binding site in driving drug translocation in asymmetric ABC pumps. Biochimica Et Biophysica Acta. Biomembranes. 183131
Pratyusha VA, Victoria GS, Khan MF, et al. (2019) Author Correction: Ras hyperactivation versus overexpression: Lessons from Ras dynamics in Candida albicans. Scientific Reports. 9: 15012
Pratyusha VA, Victoria GS, Khan MF, et al. (2018) Ras hyperactivation versus overexpression: Lessons from Ras dynamics in Candida albicans. Scientific Reports. 8: 5248
Singh MK, Khan MF, Shweta H, et al. (2017) Probe-location dependent resonance energy transfer at lipid/water interfaces: comparison between the gel- and fluid-phase of lipid bilayer. Physical Chemistry Chemical Physics : Pccp
Baghel P, Rawal MK, Khan MF, et al. (2017) Multidrug ABC transporter Cdr1 of Candida albicans harbors specific and overlapping binding sites for human steroid hormones transport. Biochimica Et Biophysica Acta
Khan MF, Rashid RB, Hossain A, et al. (2017) Computational Study of Solvation Free Energy, Dipole Moment, Polarizability, Hyperpolarizability and Molecular Properties of Betulin, a Constituent of Corypha taliera (Roxb.) Dhaka University Journal of Pharmaceutical Sciences. 16: 1-9
Khan MF, Rashid RB, Rahman MM, et al. (2017) Effects Of Solvent Polarity On Solvation Free Energy, Dipole Moment, Polarizability, Hyperpolarizability And Molecular Reactivity Of Aspirin International Journal of Pharmacy and Pharmaceutical Sciences. 9: 217-221
Rawal MK, Banerjee A, Shah AH, et al. (2016) Erratum: Newly identified motifs in Candida albicans Cdr1 protein nucleotide binding domains are pleiotropic drug resistance subfamily-specific and functionally asymmetric. Scientific Reports. 6: 30221
Rawal MK, Banerjee A, Shah AH, et al. (2016) Newly identified motifs in Candida albicans Cdr1 protein nucleotide binding domains are pleiotropic drug resistance subfamily-specific and functionally asymmetric. Scientific Reports. 6: 27132
Singh MK, Shweta H, Khan MF, et al. (2016) New insight into probe-location dependent polarity and hydration at lipid/water interfaces: comparison between gel- and fluid-phases of lipid bilayers. Physical Chemistry Chemical Physics : Pccp
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