[HTML][HTML] Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors

SS Chavali, SM Mali, JL Jenkins, R Fasan… - Journal of Biological …, 2020 - ASBMB
RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral
trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to …

Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors.

SS Chavali, SM Mali, JL Jenkins, R Fasan… - The Journal of …, 2020 - europepmc.org
RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral
trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to …

Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors

SS Chavali, SM Mali, JL Jenkins, R Fasan… - Journal of Biological …, 2020 - hero.epa.gov
RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral
trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to …

[HTML][HTML] Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors

SS Chavali, SM Mali, JL Jenkins, R Fasan… - The Journal of …, 2020 - ncbi.nlm.nih.gov
RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral
trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to …

[HTML][HTML] Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors

SS Chavali, SM Mali, JL Jenkins, R Fasan… - Journal of Biological …, 2020 - Elsevier
RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral
trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to …

[PDF][PDF] Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors

SS Chavali, SM Mali, JL Jenkins, R Fasan… - J. Biol …, 2020 - sas.rochester.edu
RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral
trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to …

Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors

SS Chavali, SM Mali, JL Jenkins… - The Journal of …, 2020 - pubmed.ncbi.nlm.nih.gov
RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral
trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to …

[PDF][PDF] Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors

SS Chavali, SM Mali, JL Jenkins, R Fasan… - J. Biol …, 2020 - sas.rochester.edu
RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral
trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to …