Literature DB >> 25633630

Deubiquitinase-based analysis of ubiquitin chain architecture using Ubiquitin Chain Restriction (UbiCRest).

Manuela K Hospenthal1, Tycho E T Mevissen1, David Komander1.   

Abstract

Protein ubiquitination is a versatile protein modification that regulates virtually all cellular processes. This versatility originates from polyubiquitin chains, which can be linked in eight distinct ways. The combinatorial complexity of eight linkage types in homotypic (one chain type per polymer) and heterotypic (multiple linkage types per polymer) chains poses significant problems for biochemical analysis. Here we describe UbiCRest, in which substrates (ubiquitinated proteins or polyubiquitin chains) are treated with a panel of linkage-specific deubiquitinating enzymes (DUBs) in parallel reactions, followed by gel-based analysis. UbiCRest can be used to show that a protein is ubiquitinated, to identify which linkage type(s) are present on polyubiquitinated proteins and to assess the architecture of heterotypic polyubiquitin chains. DUBs used in UbiCRest can be obtained commercially; however, we include details for generating a toolkit of purified DUBs and for profiling their linkage preferences in vitro. UbiCRest is a qualitative method that yields insights into ubiquitin chain linkage types and architecture within hours, and it can be performed on western blotting quantities of endogenously ubiquitinated proteins.

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Year:  2015        PMID: 25633630      PMCID: PMC5011418          DOI: 10.1038/nprot.2015.018

Source DB:  PubMed          Journal:  Nat Protoc        ISSN: 1750-2799            Impact factor:   13.491


  41 in total

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Journal:  Chem Biol       Date:  2011-12-23

2.  Characterization of polyubiquitin chain structure by middle-down mass spectrometry.

Authors:  Ping Xu; Junmin Peng
Journal:  Anal Chem       Date:  2008-03-20       Impact factor: 6.986

Review 3.  The ubiquitin system.

Authors:  A Hershko; A Ciechanover
Journal:  Annu Rev Biochem       Date:  1998       Impact factor: 23.643

4.  Lys11-linked ubiquitin chains adopt compact conformations and are preferentially hydrolyzed by the deubiquitinase Cezanne.

Authors:  Anja Bremm; Stefan M V Freund; David Komander
Journal:  Nat Struct Mol Biol       Date:  2010-07-11       Impact factor: 15.369

5.  Molecular basis for ubiquitin and ISG15 cross-reactivity in viral ovarian tumor domains.

Authors:  Masato Akutsu; Yu Ye; Satpal Virdee; Jason W Chin; David Komander
Journal:  Proc Natl Acad Sci U S A       Date:  2011-01-25       Impact factor: 11.205

6.  OTU deubiquitinases reveal mechanisms of linkage specificity and enable ubiquitin chain restriction analysis.

Authors:  Tycho E T Mevissen; Manuela K Hospenthal; Paul P Geurink; Paul R Elliott; Masato Akutsu; Nadia Arnaudo; Reggy Ekkebus; Yogesh Kulathu; Tobias Wauer; Farid El Oualid; Stefan M V Freund; Huib Ovaa; David Komander
Journal:  Cell       Date:  2013-07-03       Impact factor: 41.582

7.  Ubiquitin chain conformation regulates recognition and activity of interacting proteins.

Authors:  Yu Ye; Georg Blaser; Mathew H Horrocks; Maria J Ruedas-Rama; Shehu Ibrahim; Alexander A Zhukov; Angel Orte; David Klenerman; Sophie E Jackson; David Komander
Journal:  Nature       Date:  2012-12-02       Impact factor: 49.962

8.  Assembly, analysis and architecture of atypical ubiquitin chains.

Authors:  Manuela K Hospenthal; Stefan M V Freund; David Komander
Journal:  Nat Struct Mol Biol       Date:  2013-04-07       Impact factor: 15.369

9.  Regulation of A20 and other OTU deubiquitinases by reversible oxidation.

Authors:  Yogesh Kulathu; Francisco J Garcia; Tycho E T Mevissen; Martin Busch; Nadia Arnaudo; Kate S Carroll; David Barford; David Komander
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

10.  Activation of the canonical IKK complex by K63/M1-linked hybrid ubiquitin chains.

Authors:  Christoph H Emmerich; Alban Ordureau; Sam Strickson; J Simon C Arthur; Patrick G A Pedrioli; David Komander; Philip Cohen
Journal:  Proc Natl Acad Sci U S A       Date:  2013-08-28       Impact factor: 11.205

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  87 in total

Review 1.  The small molecule that packs a punch: ubiquitin-mediated regulation of RIPK1/FADD/caspase-8 complexes.

Authors:  Rebecca Feltham; John Silke
Journal:  Cell Death Differ       Date:  2017-06-02       Impact factor: 15.828

2.  Parkin inhibits BAK and BAX apoptotic function by distinct mechanisms during mitophagy.

Authors:  Jonathan P Bernardini; Jason M Brouwer; Iris Kl Tan; Jarrod J Sandow; Shuai Huang; Che A Stafford; Aleksandra Bankovacki; Christopher D Riffkin; Ahmad Z Wardak; Peter E Czabotar; Michael Lazarou; Grant Dewson
Journal:  EMBO J       Date:  2018-12-20       Impact factor: 11.598

3.  Substrate Ubiquitination Controls the Unfolding Ability of the Proteasome.

Authors:  Eden L Reichard; Giavanna G Chirico; William J Dewey; Nicholas D Nassif; Katelyn E Bard; Nickolas E Millas; Daniel A Kraut
Journal:  J Biol Chem       Date:  2016-07-12       Impact factor: 5.157

Review 4.  Regulation of DNA double-strand break repair by ubiquitin and ubiquitin-like modifiers.

Authors:  Petra Schwertman; Simon Bekker-Jensen; Niels Mailand
Journal:  Nat Rev Mol Cell Biol       Date:  2016-05-23       Impact factor: 94.444

5.  Dissenting degradation: Deubiquitinases in cell cycle and cancer.

Authors:  Thomas Bonacci; Michael J Emanuele
Journal:  Semin Cancer Biol       Date:  2020-03-20       Impact factor: 15.707

6.  KIAA0317 regulates pulmonary inflammation through SOCS2 degradation.

Authors:  Travis B Lear; Alison C McKelvey; John W Evankovich; Shristi Rajbhandari; Tiffany A Coon; Sarah R Dunn; James D Londino; Bryan J McVerry; Yingze Zhang; Eleanor Valenzi; Christine L Burton; Rachael Gordon; Sebastien Gingras; Karina C Lockwood; Michael J Jurczak; Robert Lafyatis; Mark J Shlomchik; Yuan Liu; Bill B Chen
Journal:  JCI Insight       Date:  2019-10-03

7.  Hrd1 forms the retrotranslocation pore regulated by auto-ubiquitination and binding of misfolded proteins.

Authors:  Vedran Vasic; Niels Denkert; Claudia C Schmidt; Dietmar Riedel; Alexander Stein; Michael Meinecke
Journal:  Nat Cell Biol       Date:  2020-02-24       Impact factor: 28.824

8.  Analysis of the topology of ubiquitin chains.

Authors:  Lucia Geis-Asteggiante; Amanda E Lee; Catherine Fenselau
Journal:  Methods Enzymol       Date:  2019-07-13       Impact factor: 1.600

9.  Connexin-43 K63-polyubiquitylation on lysines 264 and 303 regulates gap junction internalization.

Authors:  Rachael M Kells-Andrews; Rachel A Margraf; Charles G Fisher; Matthias M Falk
Journal:  J Cell Sci       Date:  2018-08-09       Impact factor: 5.285

10.  Ubiquitin Chain Enrichment Middle-Down Mass Spectrometry Enables Characterization of Branched Ubiquitin Chains in Cellulo.

Authors:  Sean O Crowe; Ambar S J B Rana; Kirandeep K Deol; Ying Ge; Eric R Strieter
Journal:  Anal Chem       Date:  2017-03-29       Impact factor: 6.986

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