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Structural elucidation of HIV-1 G-quadruplexes in cellular environment and their ligand binding using responsive 19F-labeled nucleoside probes

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dc.contributor.author ROY, SARUPA en_US
dc.contributor.author Majee, Priyasha en_US
dc.contributor.author Sudhakar, Sruthi en_US
dc.contributor.author Mishra, Satyajit en_US
dc.contributor.author Kalia, Jeet en_US
dc.contributor.author Pradeepkumar, P. I. en_US
dc.contributor.author SRIVATSAN, SEERGAZHI G. en_US
dc.date.accessioned 2024-05-29T07:21:31Z
dc.date.available 2024-05-29T07:21:31Z
dc.date.issued 2024-04 en_US
dc.identifier.citation Chemical Science, 15(21), 7982-7991. en_US
dc.identifier.issn 2041-6539 en_US
dc.identifier.uri https://doi.org/10.1039/D4SC01755B en_US
dc.identifier.uri http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/8949
dc.description.abstract Understanding structure and recognition of highly conserved regulatory segments of the integrated viral DNA genome that forms unique topologies can greatly aid devise novel therapeutic strategies to counter chronic nfections. In this study, we configured a probe system using highly environment-sensitive nucleoside analogs, 5-fluoro-2'-deoxyuridine (FdU) and 5-fluorobenzofuran-2'-deoxyuridine (FBFdU), to investigate the structural olymorphism of HIV-1 long terminal repeat (LTR) G-quadruplexes (GQs) by fluorescence and 19F NMR. FdU and FBFdU, serving as hairpin and GQ sensors, produced distinct spectral signatures for different GQ topologies adopted by LTR G-rich oligonucleotides. Importantly, systematic 19F NMR analysis in Xenopus laevis oocytes gave unprecedented information on the structure adopted by the LTR G-rich region in the cellular environment. The results indicate that it forms a unique GQ-hairpin hybrid architecture, a potent hotspot for selective targeting. Further, structural models generated using MD simulations provided insights on how the probe system senses different GQs. Using the responsiveness of the probes and Taq DNA polymerase stop assay, we monitored GQ- and hairpin-specific ligand interactions and their synergistic inhibitory effect on the replication process. Our findings suggest that targeting GQ and hairpin motifs simultaneously using bimodal ligands could be a new strategy to selectively block the viral replication. en_US
dc.language.iso en en_US
dc.publisher Royal Society of Chemistry en_US
dc.subject Chemistry en_US
dc.subject 2024-MAY-WEEK1 en_US
dc.subject TOC-MAY-2024 en_US
dc.title Structural elucidation of HIV-1 G-quadruplexes in cellular environment and their ligand binding using responsive 19F-labeled nucleoside probes en_US
dc.type Article en_US
dc.contributor.department Dept. of Chemistry en_US
dc.identifier.sourcetitle Chemical Science en_US
dc.publication.originofpublisher Foreign en_US


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