Literature DB >> 15654739

Structural properties of the promiscuous VP16 activation domain.

Hendrik R A Jonker1, Rainer W Wechselberger, Rolf Boelens, Gert E Folkers, Rob Kaptein.   

Abstract

Herpes simplex virion protein 16 (VP16) contains two strong activation regions that can independently and cooperatively activate transcription in vivo. We have identified the regions and residues involved in the interaction with the human transcriptional coactivator positive cofactor 4 (PC4) and the general transcription factor TFIIB. NMR and biochemical experiments revealed that both VP16 activation regions are required for the interaction and undergo a conformational transition from random coil to alpha-helix upon binding to its target PC4. The interaction is strongly electrostatically driven and the binding to PC4 is enhanced by the presence of its amino-terminal domain. We propose models for binding of VP16 to the core domains of PC4 and TFIIB that are based on two independent docking approaches using NMR chemical shift changes observed in titration experiments. The models are consistent with results from site-directed mutagenesis and provide an explanation for the contribution of both acidic and hydrophobic residues for transcriptional activation by VP16. Both intrinsically unstructured activation domains are attracted to their interaction partner by electrostatic interactions, and adopt an alpha-helical conformation around the important hydrophobic residues. The models showed multiple distinct binding surfaces upon interaction with various partners, providing an explanation for the promiscuous properties, cooperativity, and the high activity of this activation domain.

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Year:  2005        PMID: 15654739     DOI: 10.1021/bi0482912

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  34 in total

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4.  Cytokinin Response Factor 5 has transcriptional activity governed by its C-terminal domain.

Authors:  Bernd Striberny; Anthony E Melton; Rainer Schwacke; Kirsten Krause; Karsten Fischer; Leslie R Goertzen; Aaron M Rashotte
Journal:  Plant Signal Behav       Date:  2017-02

5.  Structural dissection of an interaction between transcription initiation and termination factors implicated in promoter-terminator cross-talk.

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Journal:  J Biol Chem       Date:  2017-11-20       Impact factor: 5.157

6.  A High-Throughput Mutational Scan of an Intrinsically Disordered Acidic Transcriptional Activation Domain.

Authors:  Max V Staller; Alex S Holehouse; Devjanee Swain-Lenz; Rahul K Das; Rohit V Pappu; Barak A Cohen
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7.  An overview of the importance of conformational flexibility in gene regulation by the transcription factors.

Authors:  Shagufta H Khan; Raj Kumar
Journal:  J Biophys       Date:  2010-02-04

8.  Transactivation, dimerization, and DNA-binding activity of white spot syndrome virus immediate-early protein IE1.

Authors:  Wang-Jing Liu; Yun-Shiang Chang; Hao-Ching Wang; Jiann-Horng Leu; Guang-Hsiung Kou; Chu-Fang Lo
Journal:  J Virol       Date:  2008-09-03       Impact factor: 5.103

9.  Plasmodium falciparum merozoite surface protein 2 is unstructured and forms amyloid-like fibrils.

Authors:  Christopher G Adda; Vince J Murphy; Margaret Sunde; Lynne J Waddington; Jesse Schloegel; Gert H Talbo; Kleo Vingas; Vivian Kienzle; Rosella Masciantonio; Geoffrey J Howlett; Anthony N Hodder; Michael Foley; Robin F Anders
Journal:  Mol Biochem Parasitol       Date:  2009-04-09       Impact factor: 1.759

10.  Interaction between the transactivation domain of p53 and PC4 exemplifies acidic activation domains as single-stranded DNA mimics.

Authors:  Sridharan Rajagopalan; Antonina Andreeva; Daniel P Teufel; Stefan M Freund; Alan R Fersht
Journal:  J Biol Chem       Date:  2009-06-12       Impact factor: 5.157

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