Cargando…

Protein Hit1, a novel box C/D snoRNP assembly factor, controls cellular concentration of the scaffolding protein Rsa1 by direct interaction

Biogenesis of eukaryotic box C/D small nucleolar ribonucleoprotein particles (C/D snoRNPs) involves conserved trans-acting factors, which are proposed to facilitate the assembly of the core proteins Snu13p/15.5K, Nop58p/NOP58, Nop56p/NOP56 and Nop1p/Fibrillarin on box C/D small nucleolar RNAs (C/D s...

Descripción completa

Detalles Bibliográficos
Autores principales: Rothé, Benjamin, Saliou, Jean-Michel, Quinternet, Marc, Back, Régis, Tiotiu, Decebal, Jacquemin, Clémence, Loegler, Christine, Schlotter, Florence, Peña, Vlad, Eckert, Kelvin, Moréra, Solange, Dorsselaer, Alain Van, Branlant, Christiane, Massenet, Séverine, Sanglier-Cianférani, Sarah, Manival, Xavier, Charpentier, Bruno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4176330/
https://www.ncbi.nlm.nih.gov/pubmed/25170085
http://dx.doi.org/10.1093/nar/gku612
_version_ 1782336612402724864
author Rothé, Benjamin
Saliou, Jean-Michel
Quinternet, Marc
Back, Régis
Tiotiu, Decebal
Jacquemin, Clémence
Loegler, Christine
Schlotter, Florence
Peña, Vlad
Eckert, Kelvin
Moréra, Solange
Dorsselaer, Alain Van
Branlant, Christiane
Massenet, Séverine
Sanglier-Cianférani, Sarah
Manival, Xavier
Charpentier, Bruno
author_facet Rothé, Benjamin
Saliou, Jean-Michel
Quinternet, Marc
Back, Régis
Tiotiu, Decebal
Jacquemin, Clémence
Loegler, Christine
Schlotter, Florence
Peña, Vlad
Eckert, Kelvin
Moréra, Solange
Dorsselaer, Alain Van
Branlant, Christiane
Massenet, Séverine
Sanglier-Cianférani, Sarah
Manival, Xavier
Charpentier, Bruno
author_sort Rothé, Benjamin
collection PubMed
description Biogenesis of eukaryotic box C/D small nucleolar ribonucleoprotein particles (C/D snoRNPs) involves conserved trans-acting factors, which are proposed to facilitate the assembly of the core proteins Snu13p/15.5K, Nop58p/NOP58, Nop56p/NOP56 and Nop1p/Fibrillarin on box C/D small nucleolar RNAs (C/D snoRNAs). In yeast, protein Rsa1 acts as a platform, interacting with both the RNA-binding core protein Snu13 and protein Pih1 of the Hsp82–R2TP chaperone complex. In this work, a proteomic approach coupled with functional and structural studies identifies protein Hit1 as a novel Rsa1p-interacting partner involved in C/D snoRNP assembly. Hit1p contributes to in vivo C/D snoRNA stability and pre-RNA maturation kinetics. It associates with U3 snoRNA precursors and influences its 3′-end processing. Remarkably, Hit1p is required to maintain steady-state levels of Rsa1p. This stabilizing activity is likely to be general across eukaryotic species, as the human protein ZNHIT3(TRIP3) showing sequence homology with Hit1p regulates the abundance of NUFIP1, the Rsa1p functional homolog. The nuclear magnetic resonance solution structure of the Rsa1p(317–352)–Hit1p(70–164) complex reveals a novel mode of protein–protein association explaining the strong stability of the Rsa1p–Hit1p complex. Our biochemical data show that C/D snoRNAs and the core protein Nop58 can interact with the purified Snu13p–Rsa1p–Hit1p heterotrimer.
format Online
Article
Text
id pubmed-4176330
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-41763302014-12-01 Protein Hit1, a novel box C/D snoRNP assembly factor, controls cellular concentration of the scaffolding protein Rsa1 by direct interaction Rothé, Benjamin Saliou, Jean-Michel Quinternet, Marc Back, Régis Tiotiu, Decebal Jacquemin, Clémence Loegler, Christine Schlotter, Florence Peña, Vlad Eckert, Kelvin Moréra, Solange Dorsselaer, Alain Van Branlant, Christiane Massenet, Séverine Sanglier-Cianférani, Sarah Manival, Xavier Charpentier, Bruno Nucleic Acids Res Structural Biology Biogenesis of eukaryotic box C/D small nucleolar ribonucleoprotein particles (C/D snoRNPs) involves conserved trans-acting factors, which are proposed to facilitate the assembly of the core proteins Snu13p/15.5K, Nop58p/NOP58, Nop56p/NOP56 and Nop1p/Fibrillarin on box C/D small nucleolar RNAs (C/D snoRNAs). In yeast, protein Rsa1 acts as a platform, interacting with both the RNA-binding core protein Snu13 and protein Pih1 of the Hsp82–R2TP chaperone complex. In this work, a proteomic approach coupled with functional and structural studies identifies protein Hit1 as a novel Rsa1p-interacting partner involved in C/D snoRNP assembly. Hit1p contributes to in vivo C/D snoRNA stability and pre-RNA maturation kinetics. It associates with U3 snoRNA precursors and influences its 3′-end processing. Remarkably, Hit1p is required to maintain steady-state levels of Rsa1p. This stabilizing activity is likely to be general across eukaryotic species, as the human protein ZNHIT3(TRIP3) showing sequence homology with Hit1p regulates the abundance of NUFIP1, the Rsa1p functional homolog. The nuclear magnetic resonance solution structure of the Rsa1p(317–352)–Hit1p(70–164) complex reveals a novel mode of protein–protein association explaining the strong stability of the Rsa1p–Hit1p complex. Our biochemical data show that C/D snoRNAs and the core protein Nop58 can interact with the purified Snu13p–Rsa1p–Hit1p heterotrimer. Oxford University Press 2014-09-15 2014-08-28 /pmc/articles/PMC4176330/ /pubmed/25170085 http://dx.doi.org/10.1093/nar/gku612 Text en © The Author(s) 2014. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Structural Biology
Rothé, Benjamin
Saliou, Jean-Michel
Quinternet, Marc
Back, Régis
Tiotiu, Decebal
Jacquemin, Clémence
Loegler, Christine
Schlotter, Florence
Peña, Vlad
Eckert, Kelvin
Moréra, Solange
Dorsselaer, Alain Van
Branlant, Christiane
Massenet, Séverine
Sanglier-Cianférani, Sarah
Manival, Xavier
Charpentier, Bruno
Protein Hit1, a novel box C/D snoRNP assembly factor, controls cellular concentration of the scaffolding protein Rsa1 by direct interaction
title Protein Hit1, a novel box C/D snoRNP assembly factor, controls cellular concentration of the scaffolding protein Rsa1 by direct interaction
title_full Protein Hit1, a novel box C/D snoRNP assembly factor, controls cellular concentration of the scaffolding protein Rsa1 by direct interaction
title_fullStr Protein Hit1, a novel box C/D snoRNP assembly factor, controls cellular concentration of the scaffolding protein Rsa1 by direct interaction
title_full_unstemmed Protein Hit1, a novel box C/D snoRNP assembly factor, controls cellular concentration of the scaffolding protein Rsa1 by direct interaction
title_short Protein Hit1, a novel box C/D snoRNP assembly factor, controls cellular concentration of the scaffolding protein Rsa1 by direct interaction
title_sort protein hit1, a novel box c/d snornp assembly factor, controls cellular concentration of the scaffolding protein rsa1 by direct interaction
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4176330/
https://www.ncbi.nlm.nih.gov/pubmed/25170085
http://dx.doi.org/10.1093/nar/gku612
work_keys_str_mv AT rothebenjamin proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT salioujeanmichel proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT quinternetmarc proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT backregis proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT tiotiudecebal proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT jacqueminclemence proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT loeglerchristine proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT schlotterflorence proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT penavlad proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT eckertkelvin proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT morerasolange proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT dorsselaeralainvan proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT branlantchristiane proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT massenetseverine proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT sangliercianferanisarah proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT manivalxavier proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction
AT charpentierbruno proteinhit1anovelboxcdsnornpassemblyfactorcontrolscellularconcentrationofthescaffoldingproteinrsa1bydirectinteraction