Modulation of the intrinsic chromatin binding property of HIV-1 integrase by LEDGF/p75

Author:

Lapaillerie Delphine1,Lelandais Benoît2,Mauro Eric1,Lagadec Floriane1,Tumiotto Camille1,Miskey Csaba3,Ferran Guillaume4,Kuschner Natacha4,Calmels Christina1,Métifiot Mathieu1,Rooryck Caroline4,Ivics Zoltan3,Ruff Marc5,Zimmer Christophe2,Lesbats Paul1,Toutain Jérôme4,Parissi Vincent1ORCID

Affiliation:

1. Fundamental Microbiology and Pathogenicity Lab (MFP), UMR 5234 CNRS-University of Bordeaux, SFR TransBioMed. Bordeaux, France

2. Imaging and modeling unit, Computational Biology Department, Institut Pasteur, Paris, France

3. Paul-Ehrlich-Institute, division of medical biotechnology, Langen, Germany

4. CHU de Bordeaux, Service de Génétique Médicale, Bordeaux France

5. IGBMC (Institut de Génétique et de Biologie Moléculaire et Cellulaire), Département de Biologie Structurale intégrative, UDS, U596 INSERM, UMR7104, CNRS, Strasbourg, France

Abstract

Abstract The stable insertion of the retroviral genome into the host chromosomes requires the association between integration complexes and cellular chromatin via the interaction between retroviral integrase and the nucleosomal target DNA. This final association may involve the chromatin-binding properties of both the retroviral integrase and its cellular cofactor LEDGF/p75. To investigate this and better understand the LEDGF/p75-mediated chromatin tethering of HIV-1 integrase, we used a combination of biochemical and chromosome-binding assays. Our study revealed that retroviral integrase has an intrinsic ability to bind and recognize specific chromatin regions in metaphase even in the absence of its cofactor. Furthermore, this integrase chromatin-binding property was modulated by the interaction with its cofactor LEDGF/p75, which redirected the enzyme to alternative chromosome regions. We also better determined the chromatin features recognized by each partner alone or within the functional intasome, as well as the chronology of efficient LEDGF/p75-mediated targeting of HIV-1 integrase to chromatin. Our data support a new chromatin-binding function of integrase acting in concert with LEDGF/p75 for the optimal association with the nucleosomal substrate. This work also provides additional information about the behavior of retroviral integration complexes in metaphase chromatin and the mechanism of action of LEDGF/p75 in this specific context.

Funder

ANRS

CNRS

Publisher

Oxford University Press (OUP)

Subject

Genetics

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