G-quadruplexes are four-stranded conformations of nucleic acids that act as cellular epigenetic regulators. A dynamic G-quadruplex forming region in the HIV-1 LTR promoter represses HIV-1 transcription when in the folded conformation. This activity is enhanced by nucleolin, which induces and stabilizes the HIV-1 LTR G-quadruplexes. In this work by a combined pull-down/mass spectrometry approach, we consistently found hnRNP A2/B1 as an additional LTR-G-quadruplex interacting protein. Surface plasmon resonance confirmed G-quadruplex specificity over linear sequences and fluorescence resonance energy transfer analysis indicated that hnRNP A2/B1 is able to efficiently unfold the LTR G-quadruplexes. Evaluation of the thermal stability of the LTR G-quadruplexes in different-length oligonucleotides showed that the protein is fit to be most active in the LTR full-length environment. When hnRNP A2/B1 was silenced in cells, LTR activity decreased, indicating that the protein acts as a HIV-1 transcription activator. Our data highlight a tightly regulated control of transcription based on G-quadruplex folding/unfolding, which depends on interacting cellular proteins. These findings provide a deeper understanding of the viral transcription mechanism and may pave the way to the development of drugs effective against the integrated HIV-1, present both in actively and latently infected cells.

The cellular protein hnRNP A2/B1 enhances HIV-1 transcription by unfolding LTR promoter G-quadruplexes

SCALABRIN, MATTEO;FRASSON, ILARIA;RUGGIERO, EMANUELA;PERRONE, ROSALBA;TOSONI, ELENA;LAGO, SARA;TASSINARI, MARTINA;PALU', GIORGIO;RICHTER, SARA
2017

Abstract

G-quadruplexes are four-stranded conformations of nucleic acids that act as cellular epigenetic regulators. A dynamic G-quadruplex forming region in the HIV-1 LTR promoter represses HIV-1 transcription when in the folded conformation. This activity is enhanced by nucleolin, which induces and stabilizes the HIV-1 LTR G-quadruplexes. In this work by a combined pull-down/mass spectrometry approach, we consistently found hnRNP A2/B1 as an additional LTR-G-quadruplex interacting protein. Surface plasmon resonance confirmed G-quadruplex specificity over linear sequences and fluorescence resonance energy transfer analysis indicated that hnRNP A2/B1 is able to efficiently unfold the LTR G-quadruplexes. Evaluation of the thermal stability of the LTR G-quadruplexes in different-length oligonucleotides showed that the protein is fit to be most active in the LTR full-length environment. When hnRNP A2/B1 was silenced in cells, LTR activity decreased, indicating that the protein acts as a HIV-1 transcription activator. Our data highlight a tightly regulated control of transcription based on G-quadruplex folding/unfolding, which depends on interacting cellular proteins. These findings provide a deeper understanding of the viral transcription mechanism and may pave the way to the development of drugs effective against the integrated HIV-1, present both in actively and latently infected cells.
2017
Electronic
Inglese
7
45244
45256
13
Springer Nature
Internazionale
anonymous
21-feb-2017
G-quadruplex, HIV, regulation of transcription, hnRNP A2/B1, virus
http://em.rdcu.be/wf/click?upn=KP7O1RED-2BlD0F9LDqGVeSF5buDRWbvoZvmgOAu5frLA-3D_Lx-2B7uT1lxi9zLTKew6FbjByIH86vrdVI7h9zJ-2FauBzHQZ86BwT2UMYvvD-2BkGw4lft4OZHaTXhHmmYxRxJ8onWWH4OkaEXq28nYge7TiVQwK277Ih0IgzlknTGmB-2BYhtJsfVfHrhDrQOmVQIGpDxbyd-2BZHWe7dUi9M6nZi-2FjyvAj1GubpvARYfCXdqoG0SKM4KPflMKTQ0exXnht3sXfbAzrqacPvOCIW-2Be-2B2F0VL6k8-3D
ITALIA
no
open
Scalabrin, Matteo; Frasson, Ilaria; Ruggiero, Emanuela; Perrone, Rosalba; Tosoni, Elena; Lago, Sara; Tassinari, Martina; Palu', Giorgio; Richter, Sara...espandi
01 CONTRIBUTO IN RIVISTA::01.01 - Articolo in rivista
info:eu-repo/semantics/article
9
262
   FP7
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3225315
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