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DNA- ligand binding pose in major groove of mixed sequence (PDB ID: 423D) (A), in minor groove of DNA crystal structures GC rich (PDB ID: 1QC1) (B), and AT rich (PDB ID: 226D) (C); The hydrogen bonding interaction between DNA and 4-OHPh-tpy, mixed sequenc
(A) (A)tThe docked trans-[Cu(Pir)2(THF)2] complex in the binding pocket of BSA using MVD. The complex is depicted in a stick model, with BSA represented in a wireframe model; (B) two-dimensional interactions generated by LIGPLOT+.
(A) The docked trans-[Co(Mel)2(EtOH)2] complex in the binding pocket of BSA using MVD. The complex is depicted in a stick model, with BSA represented in a wireframe model; (B) two-dimensional interactions generated by LIGPLOT+.
(A) (A)tA molecular docking perspective of trans-[Cu(Pir)2(THF)2] with the major groove of DNA using UCSF Chimera. The complex is depicted in a stick model, and DNA is represented in a wireframe model; (B) two-dimensional interactions generated byLIGPLOT+
The optimized structures of free CO2 and Int6 in the gas phase. The bond lengths are in angstroms
ORTEP view of the co-crystal [Ni(phen)2(phen-dione)][Ni(phen)3](PF6)4.CH3CN; acetonitrile solvent molecule and hydrogen atoms are omitted for clarity
Relative energy level diagram for the electronic transition (absorption) of the [Cu(tptz)(dppz)]2+ complex upon binding with CT-DNA
(a) Molecular docking of the Rh(III) complex with DNA. (b) The bases of DNA with dominant interactions with the complex in the active site
Recent Conference Papers
Recent Crystal Structures
Dr. M. Daryanavard(2013-2014)
Rice waste /polymer composites
Single Chamber Microbial Fuel Cell
Modeling and Simulation of Microbial Fuel Cells
Improved Saccharification and Fermentation of Rice Straw Using Various Solvents for Pretreatment Step
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