100 research outputs found
Analyses of HIV-1 integrase sequences prior to South African national HIV-treatment program and available of integrase inhibitors in Cape Town, South Africa
HIV-Integrase (IN) has proven to be a viable target for highly specific HIV-1 therapy. We aimed to
characterize the HIV-1 IN gene in a South African context and identify resistance-associated mutations
(RAMs) against available first and second generation Integrase strand-transfer inhibitors (InSTIs). We
performed genetic analyses on 91 treatment-naĂŻve HIV-1 infected patients, as well as 314 treatmentnaive
South African HIV-1 IN-sequences, downloaded from Los Alamos HIV Sequence Database.
Genotypic analyses revealed the absence of major RAMs in the cohort collected before the broad
availability of combination antiretroviral therapy (cART) and INSTI in South Africa, however, occurred
at a rate of 2.85% (9/314) in database derived sequences. RAMs were present at IN-positions 66, 92,
143, 147 and 148, all of which may confer resistance to Raltegravir (RAL) and Elvitegravir (EVG), but
are unlikely to affect second-generation Dolutegravir (DTG), except mutations in the Q148 pathway.
Furthermore, protein modeling showed, naturally occurring polymorphisms impact the stability of the
intasome-complex and therefore may contribute to an overall potency against InSTIs. Our data suggest
the prevalence of InSTI RAMs, against InSTIs, is low in South Africa, but natural polymorphisms and
subtype-specific differences may influence the effect of individual treatment regimens
Monte Carlo Simulations of HIV Capsid Protein Homodimer
Capsid protein (CA) is the building block of virus coats. To help understand how the HIV CA proteins self-organize into large assemblies of various shapes, we aim to computationally evaluate the binding affinity and interfaces in a CA homodimer. We model the N- and C-terminal domains (NTD and CTD) of the CA as rigid bodies and treat the five-residue loop between the two domains as a flexible linker. We adopt a transferrable residue-level coarse-grained energy function to describe the interactions between the protein domains. In seven extensive Monte Carlo simulations with different volumes, a large number of binding/unbinding transitions between the two CA proteins are observed, thus allowing a reliable estimation of the equilibrium probabilities for the dimeric vs monomeric forms. The obtained dissociation constant for the CA homodimer from our simulations, 20–25 μM, is in reasonable agreement with experimental measurement. A wide range of binding interfaces, primarily between the NTDs, are identified in the simulations. Although some observed bound structures here closely resemble the major binding interfaces in the capsid assembly, they are statistically insignificant in our simulation trajectories. Our results suggest that although the general purpose energy functions adopted here could reasonably reproduce the overall binding affinity for the CA homodimer, further adjustment would be needed to accurately represent the relative strength of individual binding interfaces
HIV-1 IN/Pol recruits LEDGF/p75 into viral particles
Background: The dynamic interaction between HIV and its host governs the replication of the virus and the study of the virus-host interplay is key to understand the viral lifecycle. The host factor lens epithelium-derived growth factor (LEDGF/p75) tethers the HIV preintegration complex to the chromatin through a direct interaction with integrase (IN). Small molecules that bind the LEDGF/p75 binding pocket of the HIV IN dimer (LEDGINs) block HIV replication through a multimodal mechanism impacting early and late stage replication including HIV maturation. Furthermore, LEDGF/p75 has been identified as a Pol interaction partner. This raised the question whether LEDGF/p75 besides acting as a molecular tether in the target cell, also affects late steps of HIV replication. Results: LEDGF/p75 is recruited into HIV-1 particles through direct interaction with the viral IN (or Pol polyprotein) and is a substrate for HIV-1 protease. Incubation in the presence of HIV-1 protease inhibitors resulted in detection of full-length LEDGF/p75 in purified viral particles. We also demonstrate that inhibition of LEDGF/p75-IN interaction by specific mutants or LEDGINs precludes incorporation of LEDGF/p75 in virions, underscoring the specificity of the uptake. LEDGF/p75 depletion did however not result in altered LEDGIN potency. Conclusion: Together, these results provide evidence for an IN/Pol mediated uptake of LEDGF/p75 in viral particles and a specific cleavage by HIV protease. Understanding of the possible role of LEDGF/p75 or its cleavage fragments in the viral particle awaits further experimentation
Experimental study of convergent improvement and backcrossing in corn
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