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

From Proteopedia
Jump to navigationJump to search
No edit summary
No edit summary
 
(2 intermediate revisions by the same user not shown)
Line 3: Line 3:
<scene name='HIV-1_Reverse_Transcriptase_in_Complex_with_Nevirapine/Overall_structure/1'>Reverse transcriptase</scene> 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 retroviruses. HIV-1 reverse transcriptase is encoded by the human immunodeficiency virus, well known as the etiological agent of acquired immune deficiency syndrome (AIDS).  
<scene name='HIV-1_Reverse_Transcriptase_in_Complex_with_Nevirapine/Overall_structure/1'>Reverse transcriptase</scene> 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 retroviruses. HIV-1 reverse transcriptase is encoded by the human immunodeficiency virus, well known as the etiological agent of acquired immune deficiency 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.   
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. See also [[Reverse transcriptase]].   




Line 23: Line 23:
[[image:Effect of NNRTI binding on DNA polymerization by RT.jpg|thumb|left|400px|'''Effect of NNRTI binding on DNA polymerization by RT. Reprinted by permission from Macmillan Publishers Ltd: Nature Structural & Molecular Biology, copyright 2012''']]
[[image:Effect of NNRTI binding on DNA polymerization by RT.jpg|thumb|left|400px|'''Effect of NNRTI binding on DNA polymerization by RT. Reprinted by permission from Macmillan Publishers Ltd: Nature Structural & Molecular Biology, copyright 2012''']]
{{Clear}}
{{Clear}}
[[Image:Effects of nevirapine on pol active site conformation and dNTP binding.jpg|thumb|left|450px|'''Effects of nevirapine on pol active site conformation and dNTP binding. Reprinted by permission from Macmillan Publishers Ltd: Nature Structural & Molecular Biology, copyright 2012''']]
[[Image:Effects of nevirapine on pol active site conformation and dNTP binding.jpg|thumb|left|400px|'''Effects of nevirapine on pol active site conformation and dNTP binding. Reprinted by permission from Macmillan Publishers Ltd: Nature Structural & Molecular Biology, copyright 2012''']]
{{Clear}}
{{Clear}}
== The NNRTI Binding Pocket ==
== The NNRTI Binding Pocket ==
Line 42: Line 42:
== Conclusion ==
== Conclusion ==
Analysis of the crystal structures of RT-DNA complexes in the presence and absence of nevirapine allows us to determine the effects of nonnucleosides on RT structure and function. Binding of nevirapine reveals several changes to the RT-DNA complex. It directly displaces the primer grip located in the palm subdomain, which causes the primer terminus to relocate, the thumb to lock in hyper-extension, decreased interaction between DNA and the polymerase domain, and distortion the dNTP binding site. As a result of the conformational changes nevirapine causes, the process of DNA synthesis by RT is essentially inhibited. Unfortunately, the high mutation rate caused by HIV-1 polymerase's low fidelity readily produces mutant strains that are resistant to NNRTIs. Understanding the precise mechanism of these compounds' inhibition is a key step in developing more effective drugs against HIV.  
Analysis of the crystal structures of RT-DNA complexes in the presence and absence of nevirapine allows us to determine the effects of nonnucleosides on RT structure and function. Binding of nevirapine reveals several changes to the RT-DNA complex. It directly displaces the primer grip located in the palm subdomain, which causes the primer terminus to relocate, the thumb to lock in hyper-extension, decreased interaction between DNA and the polymerase domain, and distortion the dNTP binding site. As a result of the conformational changes nevirapine causes, the process of DNA synthesis by RT is essentially inhibited. Unfortunately, the high mutation rate caused by HIV-1 polymerase's low fidelity readily produces mutant strains that are resistant to NNRTIs. Understanding the precise mechanism of these compounds' inhibition is a key step in developing more effective drugs against HIV.  
 
</StructureSection>
==References==
==References==
<references />
<references />

Latest revision as of 12:06, 22 December 2019

Crystal Structure of HIV-1 Reverse Transcriptase with DNA and the nonnucleoside inhibitor nevirapine (PDB entry 3v81)

Drag the structure with the mouse to rotate

References

Proteopedia Page Contributors and Editors (what is this?)

Madeline Evancie, Alexander Berchansky, Michal Harel