Reader domain specificity and lysine demethylase-4 family function

KDM4 histone demethylases target specific chromatin regions by a mechanism that is not fully characterised. Here, the authors identify trimethyl-lysine histone-binding preferences for closely related KDM4 double tudor domains and use structural and biochemical information to examine the molecular de...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Zhangli Su, Fengbin Wang, Jin-Hee Lee, Kimberly E. Stephens, Romeo Papazyan, Ekaterina Voronina, Kimberly A. Krautkramer, Ana Raman, Jeremy J. Thorpe, Melissa D. Boersma, Vyacheslav I. Kuznetsov, Mitchell D. Miller, Sean D. Taverna, George N. Phillips, John M. Denu
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
Materias:
Q
Acceso en línea:https://doaj.org/article/502865cd91ae47c58370ec2f6dd3787b
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:502865cd91ae47c58370ec2f6dd3787b
record_format dspace
spelling oai:doaj.org-article:502865cd91ae47c58370ec2f6dd3787b2021-12-02T16:56:45ZReader domain specificity and lysine demethylase-4 family function10.1038/ncomms133872041-1723https://doaj.org/article/502865cd91ae47c58370ec2f6dd3787b2016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13387https://doaj.org/toc/2041-1723KDM4 histone demethylases target specific chromatin regions by a mechanism that is not fully characterised. Here, the authors identify trimethyl-lysine histone-binding preferences for closely related KDM4 double tudor domains and use structural and biochemical information to examine the molecular details of this interaction.Zhangli SuFengbin WangJin-Hee LeeKimberly E. StephensRomeo PapazyanEkaterina VoroninaKimberly A. KrautkramerAna RamanJeremy J. ThorpeMelissa D. BoersmaVyacheslav I. KuznetsovMitchell D. MillerSean D. TavernaGeorge N. PhillipsJohn M. DenuNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-15 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhangli Su
Fengbin Wang
Jin-Hee Lee
Kimberly E. Stephens
Romeo Papazyan
Ekaterina Voronina
Kimberly A. Krautkramer
Ana Raman
Jeremy J. Thorpe
Melissa D. Boersma
Vyacheslav I. Kuznetsov
Mitchell D. Miller
Sean D. Taverna
George N. Phillips
John M. Denu
Reader domain specificity and lysine demethylase-4 family function
description KDM4 histone demethylases target specific chromatin regions by a mechanism that is not fully characterised. Here, the authors identify trimethyl-lysine histone-binding preferences for closely related KDM4 double tudor domains and use structural and biochemical information to examine the molecular details of this interaction.
format article
author Zhangli Su
Fengbin Wang
Jin-Hee Lee
Kimberly E. Stephens
Romeo Papazyan
Ekaterina Voronina
Kimberly A. Krautkramer
Ana Raman
Jeremy J. Thorpe
Melissa D. Boersma
Vyacheslav I. Kuznetsov
Mitchell D. Miller
Sean D. Taverna
George N. Phillips
John M. Denu
author_facet Zhangli Su
Fengbin Wang
Jin-Hee Lee
Kimberly E. Stephens
Romeo Papazyan
Ekaterina Voronina
Kimberly A. Krautkramer
Ana Raman
Jeremy J. Thorpe
Melissa D. Boersma
Vyacheslav I. Kuznetsov
Mitchell D. Miller
Sean D. Taverna
George N. Phillips
John M. Denu
author_sort Zhangli Su
title Reader domain specificity and lysine demethylase-4 family function
title_short Reader domain specificity and lysine demethylase-4 family function
title_full Reader domain specificity and lysine demethylase-4 family function
title_fullStr Reader domain specificity and lysine demethylase-4 family function
title_full_unstemmed Reader domain specificity and lysine demethylase-4 family function
title_sort reader domain specificity and lysine demethylase-4 family function
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/502865cd91ae47c58370ec2f6dd3787b
work_keys_str_mv AT zhanglisu readerdomainspecificityandlysinedemethylase4familyfunction
AT fengbinwang readerdomainspecificityandlysinedemethylase4familyfunction
AT jinheelee readerdomainspecificityandlysinedemethylase4familyfunction
AT kimberlyestephens readerdomainspecificityandlysinedemethylase4familyfunction
AT romeopapazyan readerdomainspecificityandlysinedemethylase4familyfunction
AT ekaterinavoronina readerdomainspecificityandlysinedemethylase4familyfunction
AT kimberlyakrautkramer readerdomainspecificityandlysinedemethylase4familyfunction
AT anaraman readerdomainspecificityandlysinedemethylase4familyfunction
AT jeremyjthorpe readerdomainspecificityandlysinedemethylase4familyfunction
AT melissadboersma readerdomainspecificityandlysinedemethylase4familyfunction
AT vyacheslavikuznetsov readerdomainspecificityandlysinedemethylase4familyfunction
AT mitchelldmiller readerdomainspecificityandlysinedemethylase4familyfunction
AT seandtaverna readerdomainspecificityandlysinedemethylase4familyfunction
AT georgenphillips readerdomainspecificityandlysinedemethylase4familyfunction
AT johnmdenu readerdomainspecificityandlysinedemethylase4familyfunction
_version_ 1718382738670616576