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Updated: Feb 11, 2026

Amplifying and Quantifying HIV-1 RNA in HIV Infected Individuals with Viral Loads Below the Limit of Detection by Standard Clinical Assays
Published on: September 26, 2011
Dimerization Mechanism of HIV-1 RNA Hairpins to Extended Duplex Structures
Dibyendu Mondal1, Sk Habibullah1, Govardhan Reddy1
1Solid State and Structural Chemistry Unit, Indian Institute of Science, Bengaluru 560012, Karnataka, India.
Abstract:
Genomic RNA (gRNA) dimerization is essential for retroviral replication. In the gRNA of human immunodeficiency virus (HIV-1), the hairpin-like dimerization initiation sequence (DIS) forms a kissing-complex (KC) with the DIS sequence in another gRNA, which later converts into a stable extended-duplex (ED). Using coarse-grained simulations, we mapped the transition of HIV-1 DIS RNA hairpins (HPs) to ED and identified multiple intermediates beyond the KC. The KC has an anionic pocket stabilized through the condensation of Mg2+ ions. Hence, when only K+ ions are present at physiological levels, the HPs to ED transitions occur through a different dominant pathway devoid of the KC. We also observed purine base flipping near KC hydrogen bonds, revealing the population of a subensemble of intermediates. The proposed dimerization mechanism of HPs to ED, along with the subensemble of KC conformations and its anionic pocket, provides a strategic framework for designing specific retroviral drugs targeting this pathway.
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