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LEDGINs inhibit late stage HIV-1 replication by modulating integrase multimerization in the virions

BACKGROUND: LEDGINs are novel allosteric HIV integrase (IN) inhibitors that target the lens epithelium-derived growth factor (LEDGF)/p75 binding pocket of IN. They block HIV-1 integration by abrogating the interaction between LEDGF/p75 and IN as well as by allosterically inhibiting the catalytic act...

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Autores principales: Desimmie, Belete Ayele, Schrijvers, Rik, Demeulemeester, Jonas, Borrenberghs, Doortje, Weydert, Caroline, Thys, Wannes, Vets, Sofie, Van Remoortel, Barbara, Hofkens, Johan, De Rijck, Jan, Hendrix, Jelle, Bannert, Norbert, Gijsbers, Rik, Christ, Frauke, Debyser, Zeger
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3671127/
https://www.ncbi.nlm.nih.gov/pubmed/23721378
http://dx.doi.org/10.1186/1742-4690-10-57
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author Desimmie, Belete Ayele
Schrijvers, Rik
Demeulemeester, Jonas
Borrenberghs, Doortje
Weydert, Caroline
Thys, Wannes
Vets, Sofie
Van Remoortel, Barbara
Hofkens, Johan
De Rijck, Jan
Hendrix, Jelle
Bannert, Norbert
Gijsbers, Rik
Christ, Frauke
Debyser, Zeger
author_facet Desimmie, Belete Ayele
Schrijvers, Rik
Demeulemeester, Jonas
Borrenberghs, Doortje
Weydert, Caroline
Thys, Wannes
Vets, Sofie
Van Remoortel, Barbara
Hofkens, Johan
De Rijck, Jan
Hendrix, Jelle
Bannert, Norbert
Gijsbers, Rik
Christ, Frauke
Debyser, Zeger
author_sort Desimmie, Belete Ayele
collection PubMed
description BACKGROUND: LEDGINs are novel allosteric HIV integrase (IN) inhibitors that target the lens epithelium-derived growth factor (LEDGF)/p75 binding pocket of IN. They block HIV-1 integration by abrogating the interaction between LEDGF/p75 and IN as well as by allosterically inhibiting the catalytic activity of IN. RESULTS: Here we demonstrate that LEDGINs reduce the replication capacity of HIV particles produced in their presence. We systematically studied the molecular basis of this late effect of LEDGINs and demonstrate that HIV virions produced in their presence display a severe replication defect. Both the late effect and the previously described, early effect on integration contribute to LEDGIN antiviral activity as shown by time-of-addition, qPCR and infectivity assays. The late effect phenotype requires binding of LEDGINs to integrase without influencing proteolytic cleavage or production of viral particles. LEDGINs augment IN multimerization during virion assembly or in the released viral particles and severely hamper the infectivity of progeny virions. About 70% of the particles produced in LEDGIN-treated cells do not form a core or display aberrant empty cores with a mislocalized electron-dense ribonucleoprotein. The LEDGIN-treated virus displays defective reverse transcription and nuclear import steps in the target cells. The LEDGIN effect is possibly exerted at the level of the Pol precursor polyprotein. CONCLUSION: Our results suggest that LEDGINs modulate IN multimerization in progeny virions and impair the formation of regular cores during the maturation step, resulting in a decreased infectivity of the viral particles in the target cells. LEDGINs thus profile as unique antivirals with combined early (integration) and late (IN assembly) effects on the HIV replication cycle.
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spelling pubmed-36711272013-06-05 LEDGINs inhibit late stage HIV-1 replication by modulating integrase multimerization in the virions Desimmie, Belete Ayele Schrijvers, Rik Demeulemeester, Jonas Borrenberghs, Doortje Weydert, Caroline Thys, Wannes Vets, Sofie Van Remoortel, Barbara Hofkens, Johan De Rijck, Jan Hendrix, Jelle Bannert, Norbert Gijsbers, Rik Christ, Frauke Debyser, Zeger Retrovirology Research BACKGROUND: LEDGINs are novel allosteric HIV integrase (IN) inhibitors that target the lens epithelium-derived growth factor (LEDGF)/p75 binding pocket of IN. They block HIV-1 integration by abrogating the interaction between LEDGF/p75 and IN as well as by allosterically inhibiting the catalytic activity of IN. RESULTS: Here we demonstrate that LEDGINs reduce the replication capacity of HIV particles produced in their presence. We systematically studied the molecular basis of this late effect of LEDGINs and demonstrate that HIV virions produced in their presence display a severe replication defect. Both the late effect and the previously described, early effect on integration contribute to LEDGIN antiviral activity as shown by time-of-addition, qPCR and infectivity assays. The late effect phenotype requires binding of LEDGINs to integrase without influencing proteolytic cleavage or production of viral particles. LEDGINs augment IN multimerization during virion assembly or in the released viral particles and severely hamper the infectivity of progeny virions. About 70% of the particles produced in LEDGIN-treated cells do not form a core or display aberrant empty cores with a mislocalized electron-dense ribonucleoprotein. The LEDGIN-treated virus displays defective reverse transcription and nuclear import steps in the target cells. The LEDGIN effect is possibly exerted at the level of the Pol precursor polyprotein. CONCLUSION: Our results suggest that LEDGINs modulate IN multimerization in progeny virions and impair the formation of regular cores during the maturation step, resulting in a decreased infectivity of the viral particles in the target cells. LEDGINs thus profile as unique antivirals with combined early (integration) and late (IN assembly) effects on the HIV replication cycle. BioMed Central 2013-05-30 /pmc/articles/PMC3671127/ /pubmed/23721378 http://dx.doi.org/10.1186/1742-4690-10-57 Text en Copyright © 2013 Desimmie et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Desimmie, Belete Ayele
Schrijvers, Rik
Demeulemeester, Jonas
Borrenberghs, Doortje
Weydert, Caroline
Thys, Wannes
Vets, Sofie
Van Remoortel, Barbara
Hofkens, Johan
De Rijck, Jan
Hendrix, Jelle
Bannert, Norbert
Gijsbers, Rik
Christ, Frauke
Debyser, Zeger
LEDGINs inhibit late stage HIV-1 replication by modulating integrase multimerization in the virions
title LEDGINs inhibit late stage HIV-1 replication by modulating integrase multimerization in the virions
title_full LEDGINs inhibit late stage HIV-1 replication by modulating integrase multimerization in the virions
title_fullStr LEDGINs inhibit late stage HIV-1 replication by modulating integrase multimerization in the virions
title_full_unstemmed LEDGINs inhibit late stage HIV-1 replication by modulating integrase multimerization in the virions
title_short LEDGINs inhibit late stage HIV-1 replication by modulating integrase multimerization in the virions
title_sort ledgins inhibit late stage hiv-1 replication by modulating integrase multimerization in the virions
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3671127/
https://www.ncbi.nlm.nih.gov/pubmed/23721378
http://dx.doi.org/10.1186/1742-4690-10-57
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