Sandbox 45673: Difference between revisions

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[[Image: Capture.JPG]]
[[Image: Capture.JPG]]
Fig. 2: The interaction between 5β-reductase (green) and Finasteride (gray) and NADP (blue).  Two Tyrosine (58 and 132 in yellow), two Tryptophan (89 and 230 in red) and Glutamic acid (120 in orange) residues in 5β-reductase are interacting with Finasteride. While Glutamine (193 in light blue) and aspartic acid (53 in purple) residues in 5β-reductase are interacting with NADP.
Fig. 2: The interaction between 5β-reductase (green) and Finasteride (gray) and NADP (blue).  Two Tyrosine (58 and 132 in yellow), two Tryptophan (89 and 230 in red) and Glutamic acid (120 in orange) residues in 5β-reductase are interacting with Finasteride. While Glutamine (193 in light blue) and aspartic acid (53 in purple) residues in 5β-reductase are interacting with NADP.
There is no known three-dimensional structure of 5α-redcutase to show how it binds with Finasteride. However, there is a known structure for the enzyme 5β-reductase bound to Finasteride and NADP by a mechanism that is similar to the binding of 5α-reductase to Finasteride. The interactions between 5β-reductase and Finasteride and NADP were determined by using the homology modeling software Yasara and Uniprot that provided an accessible resource of protein sequence and functional information (figure 3).





Revision as of 11:20, 6 December 2016

N-(1,1-dimethylethyl)-3-oxo-(5α,17β)-4-azaandrost-1-ene-17-carboxamide (Finasteride)

N-(1,1-dimethylethyl)-3-oxo- (5α,17β)-4-azaandrost-1-ene-17-carboxamide bound to 5β-reductase (PDB code 3g1r)

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References