Sandbox Reserved 1735

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{{Sandbox_Reserved_Kim_Lane}}<!-- PLEASE ADD YOUR CONTENT BELOW HERE -->
{{Sandbox_Reserved_Kim_Lane}}<!-- PLEASE ADD YOUR CONTENT BELOW HERE -->
==HIV Protease==
==HIV Protease==
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<StructureSection load='3hvp' size='340' side='right' caption='HIV-1 Protease PDB 3hvp' scene=''>
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<StructureSection load='3qaa' size='340' side='right' caption='HIV-1 Protease PDB 3hvp' scene=''>
==Introduction==
==Introduction==
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== Structural Highlights of HIV-1 protease==
== Structural Highlights of HIV-1 protease==
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There are hundreds of forms of HIV-1 protease. The basic HIV-1 protease contains two subunits that are dimers. These subunits contain an alpha helix, beta sheets running antiparallel to each other, and random coils. The beta sheets are in a jelly roll fold conformation. In the middle of the dimer is the active site. The full image of the PDB 3hvp represents the dimer of HIV-1 protease. Mutants have different molecules bound to the active site, making different mutants of HIV-1 protease. Some mutants are more easily controlled by drugs, such as protease inhibitors, while other mutations are more drug-resistant. It is difficult to determine which form of HIV-1 protease a person has, and each case of HIV-1 has to be treated on a case basis because there are so many mutants. This particular mutant, PBD 3hvp, is drug resistant.
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There are hundreds of forms of HIV-1 protease. The basic HIV-1 protease contains two subunits that are dimers. These subunits contain an alpha helix, beta sheets running antiparallel to each other, and random coils. The beta sheets are in a jelly roll fold conformation. In the middle of the dimer is the active site. Mutants have different molecules bound to the active site, making different mutants of HIV-1 protease. Some mutants are more easily controlled by drugs, such as protease inhibitors, while other mutations are more drug-resistant. It is difficult to determine which form of HIV-1 protease a person has, and each case of HIV-1 has to be treated on a case basis because there are so many mutants. The HIV-1 protease shown is a wild-type protease. [[Immunodeficiency virus protease]]
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==Structural Highlights of HIV-2 protease==
==Structural Highlights of HIV-2 protease==

Revision as of 04:56, 28 November 2022

This Sandbox is Reserved from August 30, 2022 through May 31, 2023 for use in the course Biochemistry I taught by Kimberly Lane at the Radford University, Radford, VA, USA. This reservation includes Sandbox Reserved 1730 through Sandbox Reserved 1749.
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HIV Protease

HIV-1 Protease PDB 3hvp

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