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Structural studies and biological evaluation of T30695 variants modified with single chiral glycerol-T reveal the importance of LEDGF/p75 for the aptamer anti-HIV-integrase activities
Authors:Elisa Rivieccio,Luciana Tartaglione,Veronica Esposito,Carmela Dell&#x  Aversano,P.C. Koneru,Maria Scuotto,Antonella Virgilio,Luciano Mayol,Mamuka Kvaratskhelia,Michela Varra
Affiliation:1. Department of Pharmacy, Università degli Studi di Napoli Federico II, Via Domenico Montesano 49, 80131 Naples, Italy;2. Center for Retrovirus Research and Comprehensive Cancer Center, College of Pharmacy, The Ohio State University, 500 West 12th Ave., Columbus, OH 43210, USA;3. Division of Infectious Diseases, University of Colorado School of Medicine, 12700 E. 19th Avenue, Aurora, CO 80045, USA
Abstract:Some G-quadruplex (GQ) forming aptamers, such as T30695, exhibit particularly promising properties among the potential anti-HIV drugs. T30695?G-quadruplex binds to HIV-1 integrase (IN) and inhibits its activity during 3′-end processing at nanomolar concentrations. Herein we report a study concerning six T30695-GQ variants, in which the R or S chiral glycerol T, singly replaced the thymine residues at the T30695?G-quadruplex loops. CD melting, EMSA and HMRS experiments provided information about the thermal stability and the stoichiometry of T30695-GQ variants, whereas CD and 1H NMR studies were performed to evaluate the effects of the modifications on T30695-GQ topology. Furthermore, LEDGF/p75 dependent and independent integration assays were carried out to evaluate how T loop modifications impact T30695-GQ biological activities. The obtained results showed that LEDGF/p75 adversely affects the potencies of T30695 and its variants. The IN inhibitory activities of the modified aptamers also depended on the position and on the chirality (R or S) of glycerol T loop in the GQ, mostly regardless of the G-quadruplex stabilities. In view of our and literature data, we suggest that the allosteric modulation of IN tetramer conformations by LEDGF/p75 alters the interactions between the aptamers and the enzyme. Therefore, the new T30695 variants could be suitable tools in studies aimed to clarify the HIV-1 IN tetramers allostery and its role in the integration activity.
Keywords:T30695 aptamer, G-quadruplex aptamer  Glycerol nucleoside  HRMS G-quadruplex  HIV integrase  LEDGF-p75  Brij-35  Polyoxyethylene(23)lauryl ether  BSA  Bovine Serum Albumin  CD4  Cluster of Differentiation 4  DSS  sodium 2,2-dimethyl-2-silapentane-5-sulfonate  DTT  Dithiothreitol  EDTA  Ethylene Diamine Tetra Acetic acid  EMSA  Electrophoretic Mobility Shift Assay  Eu-SA DPFGSE  europium-W1024-chelate-labeled streptavidin Double-pulsed Field Gradient Spin-echo  gp120  viral envelop GlycoProtein 120  HAART  Highly Active Anti-Retroviral Therapy  Hepes  4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid  HIV-1 IN  Human Immunodeficiency Virus type 1 integrase  HRMS  High Resolution Mass Spectrometry  HTRF  Homogenous Time-Resolved Fluorescence  HFIP  hexafluoroisopropanol  IPA  isopropanol  LEDGF/p75  Lens Epithelium-Derived Growth Factor/p75  NNRTI  Non-Nucleoside Reverse Transcriptase Inhibitor  NRTI  Nucleoside Reverse Transcriptase Inhibitor  OD  Optical Density  ON  Oligonucleotide  PBS  Phosphate Buffer Solution  TMAA  trimethylammonium acetate  TEA  triethylamine.
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