Differential remodeling of the HIV1 nucleosome upon transcription activators and SWI/SNF complex binding 1 1 Edited by M. Yaniv (original) (raw)

Differential remodeling of the HIV-1 nucleosome upon transcription activators and SWI/SNF complex binding

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Journal of Molecular Biology, 2000

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Exploring histone loading on HIV DNA reveals a dynamic nucleosome positioning between unintegrated and integrated viral genome

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Transcription through the HIV-1 nucleosomes: Effects of the PBAF complex in Tat activated transcription

Kylene Kehn-hall

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Real-Time Study of Interactions between a Composite DNA Regulatory Region (HIV-1 LTR NRE) and Several Transcription Factors of Nuclear Extracts

Sylvie Briquet, Laurent Galio, Catherine Vaquero

Biochemical and Biophysical Research Communications, 1999

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Requirement for SWI/SNF chromatin-remodeling complex in Tat-mediated activation of the HIV-1 promoter

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The EMBO Journal, 2006

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SNFing HIV transcription

Michael Bukrinsky

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Recruitment of SWI/SNF to the Human Immunodeficiency Virus Type 1 Promoter

Raymond Reeves

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DNA Physical Properties and Nucleosome Positions Are Major Determinants of HIV-1 Integrase Selectivity

Marc Ruff

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Intrinsic Nucleic Acid Dynamics Modulates HIV-1 Nucleocapsid Protein Binding to Its Targets

Brigitte René

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Histone Acetyltransferases Regulate HIV-1 Enhancer Activity In Vitro

Philip Sheridan

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Insights on the role of nucleic acid/protein interactions in chaperoned nucleic acid rearrangements of HIV-1 reverse transcription

My-nuong Vo

Proceedings of the National Academy of Sciences, 2007

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Probing interactions between HIV-1 reverse transcriptase and its DNA substrate with backbone-modified nucleotides

Giovanni Maga

Chemistry & Biology, 1999

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Interactions between HIV-1 nucleocapsid protein and viral DNA may have important functions in the viral life cycle

D. Van Gent

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Anti-viral opportunities during transcriptional activation of latent HIV in the host chromatin

Shiraz Mujtaba

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Probing dynamics of HIV-1 nucleocapsid protein/target hexanucleotide complexes by 2-aminopurine

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Nucleolar Protein Trafficking in Response to HIV-1 Tat: Rewiring the Nucleolus

Carlo Bidoia

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RNA and DNA Binding Properties of HIV-1 Vif Protein: A FLUORESCENCE STUDY

Roland Marquet, Jean-christophe Paillart

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Specific zinc-finger architecture required for HIV-1 nucleocapsid protein's nucleic acid chaperone function

Mark Williams

Proceedings of the National Academy of Sciences, 2002

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The Role of Chromatin in HIV-1 Transcriptional Regulation

Jovan Mirkovitch

Immunobiology, 1997

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Interactions of cellular proteins involved in the transcriptional regulation of the human immunodeficiency virus

asif manzoor

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Dynamics of linker residues modulate the nucleic acid binding properties of the HIV-1 nucleocapsid protein zinc fingers

Yves Mély, Carine Tisne, Nelly Morellet

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Epigenetic Silencing of Human Immunodeficiency Virus (HIV) Transcription by Formation of Restrictive Chromatin Structures at the Viral Long Terminal Repeat Drives the Progressive Entry of HIV into Latency

Mudit Tyagi, J. Friedman

Journal of Virology, 2008

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Dynamics and regulation of nuclear import and nuclear movements of HIV-1 complexes

Krista Delviks-frankenberry

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A protein ballet around the viral genome orchestrated by HIV-1 reverse transcriptase leads to an architectural switch: From nucleocapsid-condensed RNA to Vpr-bridged DNA

Serge Bouaziz

Virus Research, 2013

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Analysis of viral and cellular proteins in HIV-1 reverse transcription complexes by co-immunoprecipitation

Michael Bukrinsky

Methods in molecular biology (Clifton, N.J.), 2009

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HIV1 Protease and Reverse Transcriptase Control the Architecture of Their Nucleocapsid Partner

Sébastien Lyonnais

PLOS One, 2007

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Examining Interactions of HIV-1 Reverse Transcriptase with Single-stranded Template Nucleotides by Nucleoside Analog Interference

Stuart Le Grice

Journal of Biological Chemistry, 2006

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Kick-sTARting HIV-1 transcription elongation by 7SK snRNP deporTATion

Tina Lenasi, Matjaz Barboric

Nature Structural & Molecular Biology, 2010

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Distinct nucleic acid interaction properties of HIV-1 nucleocapsid protein precursor NCp15 explain reduced viral infectivity

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