HIV-1 Reverse Transcriptase in Complex with Nevirapine: Difference between revisions

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== The NNRTI Binding Pocket ==
== The NNRTI Binding Pocket ==
Although nonnucleoside RT inhibitors are structurally diverse compounds, they all bind RT in the same location - the NNRTI hydrophobic binding pocket. The pocket is located in the palm domain of the p66 subunit between the β6-β10-β9 and β12-β13-β14 sheets approximately 10 angstroms from the three catalytic asp residues that make up the polymerase active site.<ref>PMID:1377403</ref> The NNRTI BP is mostly hydrophobic in nature with considerable aromatic residues (Y181, Y188, F227, W229, and Y232), but also contains several hydrophilic residues (K101, K103, S105, D192, and E224 of the p66 subunit and E138 of the β7-β8 loop of the p51 subunit). NNRTIs most likely access the binding pocket at the p66/p51 heterodimer interface surrounded by residues L100, K101, K103, V179, and Y181 of the p66 subunit and E138 of the p51 subunit.<ref>PMID:8805568</ref> Actually, in the absence of ligand, the side chains of Y181 and Y188 point into the core, so the binding pocket doesn't exist in the free enzyme. The binding of NNRTI to HIV RT causes these side chains to shift away and make room for the ligand to enter the binding pocket.<ref>PMID:8805568</ref>
Although nonnucleoside RT inhibitors are structurally diverse compounds, they all bind RT in the same location - <scene name='HIV-1_Reverse_Transcriptase_in_Complex_with_Nevirapine/Nnrti_binding_pocket/2'>the NNRTI hydrophobic binding pocket</scene>. The pocket is located in the palm domain of the p66 subunit between the β6-β10-β9 and β12-β13-β14 sheets approximately 10 angstroms from the three catalytic asp residues that make up the polymerase active site.<ref>PMID:1377403</ref> The NNRTI BP is mostly hydrophobic in nature with considerable aromatic residues (Y181, Y188, F227, W229, and Y232), but also contains several hydrophilic residues (K101, K103, S105, D192, and E224 of the p66 subunit and E138 of the β7-β8 loop of the p51 subunit). NNRTIs most likely access the binding pocket at the p66/p51 heterodimer interface surrounded by residues L100, K101, K103, V179, and Y181 of the p66 subunit and E138 of the p51 subunit. These residues are colored tan in the binding pocket scene. <ref>PMID:8805568</ref> Actually, in the absence of ligand, the side chains of Y181 and Y188 point into the core, so the binding pocket doesn't exist in the free enzyme. The binding of NNRTI to HIV RT causes these side chains to shift away and make room for the ligand to enter the binding pocket.<ref>PMID:8805568</ref>


== Effects of nevirapine binding on RT-DNA complex ==
== Effects of nevirapine binding on RT-DNA complex ==

Revision as of 06:11, 13 November 2012

Introduction

Reverse Transcriptase is a viral encoded enzyme that converts the viral single-stranded RNA genome into a double-stranded DNA provirus that is integrated into the host chromosome in the host cell's nucleus. The process of converting viral ssRNA into dsDNA that can incorporate into the host chromosome is called retrotranscription, and is characteristic of all retrovirus. HIV-1 reverse transcriptase is encoded by the human immunodeficiency virus, well known as the etiological agent of acquired immunodeficiency syndrome (AIDS).

RT performs three catalytic steps: 1) RNA-dependent DNA polymerization to create a negative sense DNA strand that complements the positive sense viral RNA genome, 2) ribonuclease H cleavage of RNA in the RNA:DNA heteroduplex, and 3) DNA-dependent DNA polymerization to make a dsDNA using the previously synthesized negative sense DNA strand as a template. The dsDNA is transported to the nucleus where it integrates into the host cell's chromosome. HIV-1 is chronic and requires lifelong treatment with a combination of at least three different antiviral drugs. In addition, the emergence of drug-resistant HIV-1 strains means drugs with new viral targets are constantly being developed.

Crystal Structure of HIV-1 Reverse Transcriptase with DNA and the nonnucleoside inhibitor nevirapine (PDB entry 3V81)

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Proteopedia Page Contributors and Editors (what is this?)

Madeline Evancie, Alexander Berchansky, Michal Harel