Structure of the RBM7–ZCCHC8 core of the NEXT complex reveals connections to splicing factors

RBM7 and ZCCHC8 are two core subunits of the Nuclear Exosome Targeting complex, which regulates the degradation of selected non-coding RNAs in human cells. Here, the authors use structural and biochemical methods to show how ZCCHC8 recruits RBM7 in the complex, leaving the RNA binding site accessibl...

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Autores principales: Sebastian Falk, Ksenia Finogenova, Mireille Melko, Christian Benda, Søren Lykke-Andersen, Torben Heick Jensen, Elena Conti
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/eb3b13a071824d4d95e7463413ad6161
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spelling oai:doaj.org-article:eb3b13a071824d4d95e7463413ad61612021-12-02T14:38:36ZStructure of the RBM7–ZCCHC8 core of the NEXT complex reveals connections to splicing factors10.1038/ncomms135732041-1723https://doaj.org/article/eb3b13a071824d4d95e7463413ad61612016-12-01T00:00:00Zhttps://doi.org/10.1038/ncomms13573https://doaj.org/toc/2041-1723RBM7 and ZCCHC8 are two core subunits of the Nuclear Exosome Targeting complex, which regulates the degradation of selected non-coding RNAs in human cells. Here, the authors use structural and biochemical methods to show how ZCCHC8 recruits RBM7 in the complex, leaving the RNA binding site accessible and revealing possible implications for splicing.Sebastian FalkKsenia FinogenovaMireille MelkoChristian BendaSøren Lykke-AndersenTorben Heick JensenElena ContiNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sebastian Falk
Ksenia Finogenova
Mireille Melko
Christian Benda
Søren Lykke-Andersen
Torben Heick Jensen
Elena Conti
Structure of the RBM7–ZCCHC8 core of the NEXT complex reveals connections to splicing factors
description RBM7 and ZCCHC8 are two core subunits of the Nuclear Exosome Targeting complex, which regulates the degradation of selected non-coding RNAs in human cells. Here, the authors use structural and biochemical methods to show how ZCCHC8 recruits RBM7 in the complex, leaving the RNA binding site accessible and revealing possible implications for splicing.
format article
author Sebastian Falk
Ksenia Finogenova
Mireille Melko
Christian Benda
Søren Lykke-Andersen
Torben Heick Jensen
Elena Conti
author_facet Sebastian Falk
Ksenia Finogenova
Mireille Melko
Christian Benda
Søren Lykke-Andersen
Torben Heick Jensen
Elena Conti
author_sort Sebastian Falk
title Structure of the RBM7–ZCCHC8 core of the NEXT complex reveals connections to splicing factors
title_short Structure of the RBM7–ZCCHC8 core of the NEXT complex reveals connections to splicing factors
title_full Structure of the RBM7–ZCCHC8 core of the NEXT complex reveals connections to splicing factors
title_fullStr Structure of the RBM7–ZCCHC8 core of the NEXT complex reveals connections to splicing factors
title_full_unstemmed Structure of the RBM7–ZCCHC8 core of the NEXT complex reveals connections to splicing factors
title_sort structure of the rbm7–zcchc8 core of the next complex reveals connections to splicing factors
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/eb3b13a071824d4d95e7463413ad6161
work_keys_str_mv AT sebastianfalk structureoftherbm7zcchc8coreofthenextcomplexrevealsconnectionstosplicingfactors
AT kseniafinogenova structureoftherbm7zcchc8coreofthenextcomplexrevealsconnectionstosplicingfactors
AT mireillemelko structureoftherbm7zcchc8coreofthenextcomplexrevealsconnectionstosplicingfactors
AT christianbenda structureoftherbm7zcchc8coreofthenextcomplexrevealsconnectionstosplicingfactors
AT sørenlykkeandersen structureoftherbm7zcchc8coreofthenextcomplexrevealsconnectionstosplicingfactors
AT torbenheickjensen structureoftherbm7zcchc8coreofthenextcomplexrevealsconnectionstosplicingfactors
AT elenaconti structureoftherbm7zcchc8coreofthenextcomplexrevealsconnectionstosplicingfactors
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