NOL11, implicated in the pathogenesis of North American Indian childhood cirrhosis, is required for pre-rRNA transcription and processing.

The fundamental process of ribosome biogenesis requires hundreds of factors and takes place in the nucleolus. This process has been most thoroughly characterized in baker's yeast and is generally well conserved from yeast to humans. However, some of the required proteins in yeast are not found...

Full description

Bibliographic Details
Main Authors: Emily F Freed, José-Luis Prieto, Kathleen L McCann, Brian McStay, Susan J Baserga
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC3420923?pdf=render
_version_ 1818510123802296320
author Emily F Freed
José-Luis Prieto
Kathleen L McCann
Brian McStay
Susan J Baserga
author_facet Emily F Freed
José-Luis Prieto
Kathleen L McCann
Brian McStay
Susan J Baserga
author_sort Emily F Freed
collection DOAJ
description The fundamental process of ribosome biogenesis requires hundreds of factors and takes place in the nucleolus. This process has been most thoroughly characterized in baker's yeast and is generally well conserved from yeast to humans. However, some of the required proteins in yeast are not found in humans, raising the possibility that they have been replaced by functional analogs. Our objective was to identify non-conserved interaction partners for the human ribosome biogenesis factor, hUTP4/Cirhin, since the R565W mutation in the C-terminus of hUTP4/Cirhin was reported to cause North American Indian childhood cirrhosis (NAIC). By screening a yeast two-hybrid cDNA library derived from human liver, and through affinity purification followed by mass spectrometry, we identified an uncharacterized nucleolar protein, NOL11, as an interaction partner for hUTP4/Cirhin. Bioinformatic analysis revealed that NOL11 is conserved throughout metazoans and their immediate ancestors but is not found in any other phylogenetic groups. Co-immunoprecipitation experiments show that NOL11 is a component of the human ribosomal small subunit (SSU) processome. siRNA knockdown of NOL11 revealed that it is involved in the cleavage steps required to generate the mature 18S rRNA and is required for optimal rDNA transcription. Furthermore, abnormal nucleolar morphology results from the absence of NOL11. Finally, yeast two-hybrid analysis shows that NOL11 interacts with the C-terminus of hUTP4/Cirhin and that the R565W mutation partially disrupts this interaction. We have therefore identified NOL11 as a novel protein required for the early stages of ribosome biogenesis in humans. Our results further implicate a role for NOL11 in the pathogenesis of NAIC.
first_indexed 2024-12-10T22:54:55Z
format Article
id doaj.art-c0329b2d5e714f64baba789cf535598a
institution Directory Open Access Journal
issn 1553-7390
1553-7404
language English
last_indexed 2024-12-10T22:54:55Z
publishDate 2012-01-01
publisher Public Library of Science (PLoS)
record_format Article
series PLoS Genetics
spelling doaj.art-c0329b2d5e714f64baba789cf535598a2022-12-22T01:30:18ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042012-01-0188e100289210.1371/journal.pgen.1002892NOL11, implicated in the pathogenesis of North American Indian childhood cirrhosis, is required for pre-rRNA transcription and processing.Emily F FreedJosé-Luis PrietoKathleen L McCannBrian McStaySusan J BasergaThe fundamental process of ribosome biogenesis requires hundreds of factors and takes place in the nucleolus. This process has been most thoroughly characterized in baker's yeast and is generally well conserved from yeast to humans. However, some of the required proteins in yeast are not found in humans, raising the possibility that they have been replaced by functional analogs. Our objective was to identify non-conserved interaction partners for the human ribosome biogenesis factor, hUTP4/Cirhin, since the R565W mutation in the C-terminus of hUTP4/Cirhin was reported to cause North American Indian childhood cirrhosis (NAIC). By screening a yeast two-hybrid cDNA library derived from human liver, and through affinity purification followed by mass spectrometry, we identified an uncharacterized nucleolar protein, NOL11, as an interaction partner for hUTP4/Cirhin. Bioinformatic analysis revealed that NOL11 is conserved throughout metazoans and their immediate ancestors but is not found in any other phylogenetic groups. Co-immunoprecipitation experiments show that NOL11 is a component of the human ribosomal small subunit (SSU) processome. siRNA knockdown of NOL11 revealed that it is involved in the cleavage steps required to generate the mature 18S rRNA and is required for optimal rDNA transcription. Furthermore, abnormal nucleolar morphology results from the absence of NOL11. Finally, yeast two-hybrid analysis shows that NOL11 interacts with the C-terminus of hUTP4/Cirhin and that the R565W mutation partially disrupts this interaction. We have therefore identified NOL11 as a novel protein required for the early stages of ribosome biogenesis in humans. Our results further implicate a role for NOL11 in the pathogenesis of NAIC.http://europepmc.org/articles/PMC3420923?pdf=render
spellingShingle Emily F Freed
José-Luis Prieto
Kathleen L McCann
Brian McStay
Susan J Baserga
NOL11, implicated in the pathogenesis of North American Indian childhood cirrhosis, is required for pre-rRNA transcription and processing.
PLoS Genetics
title NOL11, implicated in the pathogenesis of North American Indian childhood cirrhosis, is required for pre-rRNA transcription and processing.
title_full NOL11, implicated in the pathogenesis of North American Indian childhood cirrhosis, is required for pre-rRNA transcription and processing.
title_fullStr NOL11, implicated in the pathogenesis of North American Indian childhood cirrhosis, is required for pre-rRNA transcription and processing.
title_full_unstemmed NOL11, implicated in the pathogenesis of North American Indian childhood cirrhosis, is required for pre-rRNA transcription and processing.
title_short NOL11, implicated in the pathogenesis of North American Indian childhood cirrhosis, is required for pre-rRNA transcription and processing.
title_sort nol11 implicated in the pathogenesis of north american indian childhood cirrhosis is required for pre rrna transcription and processing
url http://europepmc.org/articles/PMC3420923?pdf=render
work_keys_str_mv AT emilyffreed nol11implicatedinthepathogenesisofnorthamericanindianchildhoodcirrhosisisrequiredforprerrnatranscriptionandprocessing
AT joseluisprieto nol11implicatedinthepathogenesisofnorthamericanindianchildhoodcirrhosisisrequiredforprerrnatranscriptionandprocessing
AT kathleenlmccann nol11implicatedinthepathogenesisofnorthamericanindianchildhoodcirrhosisisrequiredforprerrnatranscriptionandprocessing
AT brianmcstay nol11implicatedinthepathogenesisofnorthamericanindianchildhoodcirrhosisisrequiredforprerrnatranscriptionandprocessing
AT susanjbaserga nol11implicatedinthepathogenesisofnorthamericanindianchildhoodcirrhosisisrequiredforprerrnatranscriptionandprocessing