Transcriptional control: Tat cofactors and transcriptional elongation (original) (raw)

Transcription elongation regulator 1 (TCERG1) regulates competent RNA polymerase II-mediated elongation of HIV-1 transcription and facilitates efficient viral replication

Mayte Coiras

Retrovirology, 2013

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HIV-1 Tat-associated RNA polymerase C-terminal domain kinase, CDK2, phosphorylates CDK7 and stimulates Tat-mediated transcription

Sergei Nekhai

Biochemical Journal, 2002

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Tat Modifies the Activity of CDK9 To Phosphorylate Serine 5 of the RNA Polymerase II Carboxyl-Terminal Domain during Human Immunodeficiency Virus Type 1 Transcription

David Price

Molecular and Cellular Biology, 2000

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HIV-1 Tat Interaction with RNA Polymerase II C-terminal Domain (CTD) and a Dynamic Association with CDK2 Induce CTD Phosphorylation and Transcription from HIV-1 Promoter

Sergei Nekhai

Journal of Biological Chemistry, 2002

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DSIF and NELF Interact with RNA Polymerase II Elongation Complex and HIV-1 Tat Stimulates P-TEFb-mediated Phosphorylation of RNA Polymerase II and DSIF during Transcription Elongation

Yueh-Hsin Ping

Journal of Biological Chemistry, 2000

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A human primary T-lymphocyte-derived human immunodeficiency virus type 1 Tat-associated kinase phosphorylates the C-terminal domain of RNA polymerase II and …

Ram Shukla

Journal of virology, 1997

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Tat and Trans-activation-responsive (TAR) RNA-independent Induction of HIV-1 Long Terminal Repeat by Human and Murine Cyclin T1 Requires Sp1

Monsef Benkirane

Journal of Biological Chemistry, 2003

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Regulation of HIV-1 transcription

Kenneth Roebuck

PubMed, 1999

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HIV-1 Tat and Host AFF4 Recruit Two Transcription Elongation Factors into a Bifunctional Complex for Coordinated Activation of HIV-1 Transcription

Seemay Chou

Molecular Cell, 2010

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Tat-associated Kinase (P-TEFb): a Component of Transcription Preinitiation and Elongation Complexes

Yueh-Hsin Ping

Journal of Biological Chemistry, 1999

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Transcriptional elongation by purified RNA polymerase II is blocked at the trans-activation-responsive region of human immunodeficiency virus type 1 in vitro

Eyal Bengal

Journal of Virology, 1991

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DNA-dependent protein kinase interacts functionally with the RNA polymerase II complex recruited at the human immunodeficiency virus (HIV) long terminal repeat and plays an important role in HIV gene expression

A. Ochem

Journal of General Virology, 2011

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Cyclin T1 stabilizes expression levels of HIV-1 Tat in cells

Takashi Okamoto

FEBS Journal, 2009

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Transcription elongation factor P-TEFb is required for HIV-1 Tat transactivation in vitro

J Peng

Genes & Development, 1997

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Phosphorylation of HIV-1 Tat by CDK2 in HIV-1 transcription

Sergei Nekhai

Retrovirology, 2006

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The transcriptional cycle of HIV-1 in real-time and live cells

Paolo Maiuri

Journal of Experimental Medicine, 2007

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A human primary T-lymphocyte-derived human immunodeficiency virus type 1 Tat-associated kinase phosphorylates the C-terminal domain of RNA polymerase II and induces CAK activity

Sergei Nekhai

Journal of virology, 1997

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Dominant negative mutant cyclin T1 proteins that inhibit HIV transcription by forming a kinase inactive complex with Tat

Takashi Okamoto

Journal of General Virology, 2008

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Human immunodeficiency virus type 1 and 2 Tat proteins specifically interact with RNA polymerase II

Sai-Hong Ou

Proceedings of the National Academy of Sciences, 1996

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Coordination of Transcription Factor Phosphorylation and Histone Methylation by the P-TEFb Kinase during Human Immunodeficiency Virus Type 1 Transcription

Hyeon Ung Park

Journal of Virology, 2004

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The HIV-1 Tat Protein Has a Versatile Role in Activating Viral Transcription

Ben Berkhout

Journal of Virology, 2011

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Dominant negative mutant Cyclin T1 proteins inhibit HIV transcription by specifically degrading Tat

Takashi Okamoto

Retrovirology, 2008

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Tat Transactivation: A Model for the Regulation of Eukaryotic Transcriptional Elongation

Matjaz Barboric

Virology, 1999

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Relief of Two Built-In Autoinhibitory Mechanisms in P-TEFb Is Required for Assembly of a Multicomponent Transcription Elongation Complex at the Human Immunodeficiency Virus Type 1 Promoter

qiang zhou

Molecular and Cellular Biology, 2000

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Poly(ADP-ribose) polymerase-1 is a negative regulator of HIV-1 transcription through competitive binding to TAR RNA with Tat.positive transcription elongation factor b (p-TEFb) complex

Tetsu Yung

The Journal of biological chemistry, 2005

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Promoter Influences Transcription Elongation: TATA-BOX ELEMENT MEDIATES THE ASSEMBLY OF PROCESSIVE TRANSCRIPTION COMPLEXES RESPONSIVE TO CYCLIN-DEPENDENT KINASE 9

C. Sune

Journal of Biological Chemistry, 2008

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Suppression of HIV-1 transcriptional elongation by a DING phosphatase

Samantha Garcia

Journal of Cellular Biochemistry, 2011

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HIV-1 Tat transcriptional activity is regulated by acetylation

Monsef Benkirane

The EMBO Journal, 1999

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Regulation of transcription elongation by phosphorylation

Michael Kobor

Biochimica et Biophysica Acta (BBA) - Gene Structure and Expression, 2002

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A single point mutation in cyclin T1 eliminates binding to Hexim1, Cdk9 and RNA but not to AFF4 and enforces repression of HIV transcription

Nina Verstraete

Retrovirology, 2014

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

Kylene Kehn-hall

Virology, 2010

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Cooperative Interaction between HIV-1 Regulatory Proteins Tat and Vpr Modulates Transcription of the Viral Genome

B. Sawaya

Journal of Biological Chemistry, 2000

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Two Dimerization Domains in the Trans-activation Response RNA-binding Protein (TRBP) Individually Reverse the Protein Kinase R Inhibition of HIV-1 Long Terminal Repeat Expression

Catherine Vaquero

Journal of Biological Chemistry, 2001

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Review Dynamic Post-Transcriptional Regulation of HIV-1 Gene Expression

Anna Kula

2012

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Transcriptional competence of the integrated HIV-1 provirus at the nuclear periphery

Anna Kula

The EMBO Journal, 2009

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