Literature DB >> 18067411

Phosphorylation site analysis of the anti-inflammatory and mRNA-destabilizing protein tristetraprolin.

Heping Cao1, Leesa J Deterding, Perry J Blackshear.   

Abstract

Tristetraprolin (TTP) is a member of the CCCH zinc finger proteins and is an anti-inflammatory protein. Mice deficient in TTP develop a profound inflammatory syndrome with erosive arthritis, autoimmunity and myeloid hyperplasia. TTP binds to mRNA AU-rich elements with high affinity for UUAUUUAUU nucleotides and causes destabilization of those mRNA molecules. TTP is phosphorylated extensively in vivo and is a substrate for multiple protein kinases in vitro. A number of approaches have been used to identify its phosphorylation sites. This article highlights the recent progress and different approaches utilized for the identification of phosphorylation sites in mammalian TTP. Important but limited results are obtained using traditional methods, including in vivo labeling, site-directed mutagenesis, phosphopeptide mapping and protein sequencing. Mass spectrometry (MS), including MALDI/MS, MALDI/MS/MS, liquid chromatography/MS/MS, immobilized metal ion affinity chromatography (IMAC)/MALDI/MS/MS and multidimensional protein identification technology has led the way in identifying TTP phosphorylation sites. The combination of these approaches has identified multiple phosphorylation sites in mammalian TTP, some of which are predicted by motif scanning to be phosphorylated by several protein kinases. This information should provide the molecular basis for future investigation of TTP's regulatory functions in controlling proinflammatory cytokines.

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Year:  2007        PMID: 18067411      PMCID: PMC2674331          DOI: 10.1586/14789450.4.6.711

Source DB:  PubMed          Journal:  Expert Rev Proteomics        ISSN: 1478-9450            Impact factor:   3.940


  82 in total

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Authors:  Michael J MacCoss; W Hayes McDonald; Anita Saraf; Rovshan Sadygov; Judy M Clark; Joseph J Tasto; Kathleen L Gould; Dirk Wolters; Michael Washburn; Avery Weiss; John I Clark; John R Yates
Journal:  Proc Natl Acad Sci U S A       Date:  2002-06-11       Impact factor: 11.205

2.  A growth factor-inducible nuclear protein with a novel cysteine/histidine repetitive sequence.

Authors:  R N DuBois; M W McLane; K Ryder; L F Lau; D Nathans
Journal:  J Biol Chem       Date:  1990-11-05       Impact factor: 5.157

3.  Comparison of adenosine 3':5'-monophosphate-dependent protein kinases from rabbit skeletal and bovine heart muscle.

Authors:  F Hofmann; J A Beavo; P J Bechtel; E G Krebs
Journal:  J Biol Chem       Date:  1975-10-10       Impact factor: 5.157

4.  Nucleotide sequence of a cDNA encoding TIS11, a message induced in Swiss 3T3 cells by the tumor promoter tetradecanoyl phorbol acetate.

Authors:  B C Varnum; R W Lim; V P Sukhatme; H R Herschman
Journal:  Oncogene       Date:  1989-01       Impact factor: 9.867

5.  Coordinated remodeling of cellular metabolism during iron deficiency through targeted mRNA degradation.

Authors:  Sergi Puig; Eric Askeland; Dennis J Thiele
Journal:  Cell       Date:  2005-01-14       Impact factor: 41.582

6.  Parallel and independent regulation of interleukin-3 mRNA turnover by phosphatidylinositol 3-kinase and p38 mitogen-activated protein kinase.

Authors:  X F Ming; G Stoecklin; M Lu; R Looser; C Moroni
Journal:  Mol Cell Biol       Date:  2001-09       Impact factor: 4.272

7.  Expression and purification of recombinant tristetraprolin that can bind to tumor necrosis factor-alpha mRNA and serve as a substrate for mitogen-activated protein kinases.

Authors:  Heping Cao; Frederick Dzineku; Perry J Blackshear
Journal:  Arch Biochem Biophys       Date:  2003-04-01       Impact factor: 4.013

8.  RNA binding properties of the AU-rich element-binding recombinant Nup475/TIS11/tristetraprolin protein.

Authors:  Mark T Worthington; Jared W Pelo; Muhammadreza A Sachedina; Joan L Applegate; Kristen O Arseneau; Theresa T Pizarro
Journal:  J Biol Chem       Date:  2002-09-24       Impact factor: 5.157

9.  Direct association of tristetraprolin with the nucleoporin CAN/Nup214.

Authors:  Julie A Carman; Steven G Nadler
Journal:  Biochem Biophys Res Commun       Date:  2004-03-05       Impact factor: 3.575

10.  MK2-induced tristetraprolin:14-3-3 complexes prevent stress granule association and ARE-mRNA decay.

Authors:  Georg Stoecklin; Tiffany Stubbs; Nancy Kedersha; Stephen Wax; William F C Rigby; T Keith Blackwell; Paul Anderson
Journal:  EMBO J       Date:  2004-03-11       Impact factor: 11.598

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  31 in total

Review 1.  The roles of TTP and BRF proteins in regulated mRNA decay.

Authors:  Sandhya Sanduja; Fernando F Blanco; Dan A Dixon
Journal:  Wiley Interdiscip Rev RNA       Date:  2011 Jan-Feb       Impact factor: 9.957

2.  Direct binding of specific AUF1 isoforms to tandem zinc finger domains of tristetraprolin (TTP) family proteins.

Authors:  Vishram P Kedar; Beth E Zucconi; Gerald M Wilson; Perry J Blackshear
Journal:  J Biol Chem       Date:  2011-12-27       Impact factor: 5.157

3.  Phosphorylation of tristetraprolin by MK2 impairs AU-rich element mRNA decay by preventing deadenylase recruitment.

Authors:  Sandra L Clement; Claudia Scheckel; Georg Stoecklin; Jens Lykke-Andersen
Journal:  Mol Cell Biol       Date:  2010-11-15       Impact factor: 4.272

Review 4.  Post-transcriptional regulons coordinate the initiation and resolution of inflammation.

Authors:  Paul Anderson
Journal:  Nat Rev Immunol       Date:  2010-01       Impact factor: 53.106

5.  FasL expression in activated T lymphocytes involves HuR-mediated stabilization.

Authors:  Gillian L Drury; Sergio Di Marco; Virginie Dormoy-Raclet; Julie Desbarats; Imed-Eddine Gallouzi
Journal:  J Biol Chem       Date:  2010-07-30       Impact factor: 5.157

6.  A Knock-In Tristetraprolin (TTP) Zinc Finger Point Mutation in Mice: Comparison with Complete TTP Deficiency.

Authors:  Wi S Lai; Deborah J Stumpo; Lianqun Qiu; Roberta Faccio; Perry J Blackshear
Journal:  Mol Cell Biol       Date:  2018-01-29       Impact factor: 4.272

Review 7.  Tristetraprolin (TTP): interactions with mRNA and proteins, and current thoughts on mechanisms of action.

Authors:  Seth A Brooks; Perry J Blackshear
Journal:  Biochim Biophys Acta       Date:  2013-02-18

8.  Mutant tristetraprolin: a potent inhibitor of malignant glioma cell growth.

Authors:  Esther A Suswam; John J Shacka; Kiera Walker; Liang Lu; Xuelin Li; Ying Si; Xiaowen Zhang; Lei Zheng; L Burt Nabors; Heping Cao; Peter H King
Journal:  J Neurooncol       Date:  2013-03-25       Impact factor: 4.130

9.  Phosphorylation of human tristetraprolin in response to its interaction with the Cbl interacting protein CIN85.

Authors:  Vishram P Kedar; Martyn K Darby; Jason G Williams; Perry J Blackshear
Journal:  PLoS One       Date:  2010-03-08       Impact factor: 3.240

Review 10.  Post-transcriptional control during chronic inflammation and cancer: a focus on AU-rich elements.

Authors:  Khalid S A Khabar
Journal:  Cell Mol Life Sci       Date:  2010-05-22       Impact factor: 9.261

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