User:Kerry Frattarola/Sandbox 1
From Proteopedia
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==Structure== | ==Structure== | ||
| - | [[Crixivan]] is an antiviral compound that acts as a protease inhibitor. The drug has a molecular weight of 711.875 g/mol and is very soluble in water and ethanol <ref>Physicians Desk Reference 66th ed. PDR Network, LLC, Montvale, NJ. p. 2086 (2012)</ref>. Crixivan works by specifically binding to the HIV-1 protease active site by mimicking a target substrate protein and essentially becoming “stuck” in the enzyme active site, disabling the enzyme. The pyridine group on | + | [[Crixivan]] is an antiviral compound that acts as a protease inhibitor. The drug has a molecular weight of 711.875 g/mol and is very soluble in water and ethanol <ref>Physicians Desk Reference 66th ed. PDR Network, LLC, Montvale, NJ. p. 2086 (2012)</ref>. Crixivan works by specifically binding to the HIV-1 protease active site by mimicking a target substrate protein and essentially becoming “stuck” in the enzyme active site, disabling the enzyme. The pyridine group on Crixivan interacts with Arg8 in the protease to conform Crixivan to the active site. The ketone is attacked by with the Asp25 of the protease, forming a bond between the ketone and amide that doesn't lyse due to the nature of the inhibitor. |
== Function == | == Function == | ||
Revision as of 00:58, 6 December 2016
Human Immunodeficiency Virus protease inhibitor
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References
- ↑ Physicians Desk Reference 66th ed. PDR Network, LLC, Montvale, NJ. p. 2086 (2012)
- ↑ 2.0 2.1 Scholar, E. M., & Pratt, W.B. (2000). The Antimicrobial Drugs (2nd ed.). New York, NY: Oxford University Press.
- ↑ Mager PP. The active site of HIV-1 protease. Med Res Rev. 2001 Jul;21(4):348-53. PMID:11410934
- ↑ De Clercq E. The history of antiretrovirals: key discoveries over the past 25 years. Rev Med Virol. 2009 Sep;19(5):287-99. doi: 10.1002/rmv.624. PMID:19714702 doi:http://dx.doi.org/10.1002/rmv.624
- ↑ Mahalingam B, Wang YF, Boross PI, Tozser J, Louis JM, Harrison RW, Weber IT. Crystal structures of HIV protease V82A and L90M mutants reveal changes in the indinavir-binding site. Eur J Biochem. 2004 Apr;271(8):1516-24. PMID:15066177 doi:10.1111/j.1432-1033.2004.04060.x
