Mutational Analysis of the Nsa2 N-Terminus Reveals Its Essential Role in Ribosomal 60S Subunit Assembly

The ribosome assembly factor Nsa2 is part of the Rea1-Rsa4-Nsa2 interconnected relay on nuclear pre-60S particles that is essential for 60S ribosome biogenesis. Cryo-EM structures depict Nsa2 docked via its C-terminal β-barrel domain to nuclear pre-60S particles, whereas the extended N-terminus, con...

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Main Authors: Helge Paternoga, Alexander Früh, Ruth Kunze, Bettina Bradatsch, Jochen Baßler, Ed Hurt
Format: Article
Language:English
Published: MDPI AG 2020-11-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/21/23/9108
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spelling doaj-8c17172b141340d8afff238bde9a436a2020-12-01T00:03:20ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672020-11-01219108910810.3390/ijms21239108Mutational Analysis of the Nsa2 N-Terminus Reveals Its Essential Role in Ribosomal 60S Subunit AssemblyHelge Paternoga0Alexander Früh1Ruth Kunze2Bettina Bradatsch3Jochen Baßler4Ed Hurt5Biochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld 328, 69120 Heidelberg, GermanyBiochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld 328, 69120 Heidelberg, GermanyBiochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld 328, 69120 Heidelberg, GermanyBiochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld 328, 69120 Heidelberg, GermanyBiochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld 328, 69120 Heidelberg, GermanyBiochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld 328, 69120 Heidelberg, GermanyThe ribosome assembly factor Nsa2 is part of the Rea1-Rsa4-Nsa2 interconnected relay on nuclear pre-60S particles that is essential for 60S ribosome biogenesis. Cryo-EM structures depict Nsa2 docked via its C-terminal β-barrel domain to nuclear pre-60S particles, whereas the extended N-terminus, consisting of three α-helical segments, meanders between various 25S rRNA helices with the extreme N-terminus in close vicinity to the Nog1 GTPase center. Here, we tested whether this unappreciated proximity between Nsa2 and Nog1 is of functional importance. Our findings demonstrate that a conservative mutation, Nsa2 Q3N, abolished cell growth and impaired 60S biogenesis. Subsequent genetic and biochemical analyses verified that the Nsa2 N-terminus is required to target Nsa2 to early pre-60S particles. However, overexpression of the Nsa2 N-terminus abolished cytoplasmic recycling of the Nog1 GTPase, and both Nog1 and the Nsa2-N (1-58) construct, but not the respective Nsa2-N (1-58) Q3N mutant, were found arrested on late cytoplasmic pre-60S particles. These findings point to specific roles of the different Nsa2 domains for 60S ribosome biogenesis.https://www.mdpi.com/1422-0067/21/23/9108ribosome assemblyribosome biogenesisNsa2Nog1Rsa4TINP1
collection DOAJ
language English
format Article
sources DOAJ
author Helge Paternoga
Alexander Früh
Ruth Kunze
Bettina Bradatsch
Jochen Baßler
Ed Hurt
spellingShingle Helge Paternoga
Alexander Früh
Ruth Kunze
Bettina Bradatsch
Jochen Baßler
Ed Hurt
Mutational Analysis of the Nsa2 N-Terminus Reveals Its Essential Role in Ribosomal 60S Subunit Assembly
International Journal of Molecular Sciences
ribosome assembly
ribosome biogenesis
Nsa2
Nog1
Rsa4
TINP1
author_facet Helge Paternoga
Alexander Früh
Ruth Kunze
Bettina Bradatsch
Jochen Baßler
Ed Hurt
author_sort Helge Paternoga
title Mutational Analysis of the Nsa2 N-Terminus Reveals Its Essential Role in Ribosomal 60S Subunit Assembly
title_short Mutational Analysis of the Nsa2 N-Terminus Reveals Its Essential Role in Ribosomal 60S Subunit Assembly
title_full Mutational Analysis of the Nsa2 N-Terminus Reveals Its Essential Role in Ribosomal 60S Subunit Assembly
title_fullStr Mutational Analysis of the Nsa2 N-Terminus Reveals Its Essential Role in Ribosomal 60S Subunit Assembly
title_full_unstemmed Mutational Analysis of the Nsa2 N-Terminus Reveals Its Essential Role in Ribosomal 60S Subunit Assembly
title_sort mutational analysis of the nsa2 n-terminus reveals its essential role in ribosomal 60s subunit assembly
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1661-6596
1422-0067
publishDate 2020-11-01
description The ribosome assembly factor Nsa2 is part of the Rea1-Rsa4-Nsa2 interconnected relay on nuclear pre-60S particles that is essential for 60S ribosome biogenesis. Cryo-EM structures depict Nsa2 docked via its C-terminal β-barrel domain to nuclear pre-60S particles, whereas the extended N-terminus, consisting of three α-helical segments, meanders between various 25S rRNA helices with the extreme N-terminus in close vicinity to the Nog1 GTPase center. Here, we tested whether this unappreciated proximity between Nsa2 and Nog1 is of functional importance. Our findings demonstrate that a conservative mutation, Nsa2 Q3N, abolished cell growth and impaired 60S biogenesis. Subsequent genetic and biochemical analyses verified that the Nsa2 N-terminus is required to target Nsa2 to early pre-60S particles. However, overexpression of the Nsa2 N-terminus abolished cytoplasmic recycling of the Nog1 GTPase, and both Nog1 and the Nsa2-N (1-58) construct, but not the respective Nsa2-N (1-58) Q3N mutant, were found arrested on late cytoplasmic pre-60S particles. These findings point to specific roles of the different Nsa2 domains for 60S ribosome biogenesis.
topic ribosome assembly
ribosome biogenesis
Nsa2
Nog1
Rsa4
TINP1
url https://www.mdpi.com/1422-0067/21/23/9108
work_keys_str_mv AT helgepaternoga mutationalanalysisofthensa2nterminusrevealsitsessentialroleinribosomal60ssubunitassembly
AT alexanderfruh mutationalanalysisofthensa2nterminusrevealsitsessentialroleinribosomal60ssubunitassembly
AT ruthkunze mutationalanalysisofthensa2nterminusrevealsitsessentialroleinribosomal60ssubunitassembly
AT bettinabradatsch mutationalanalysisofthensa2nterminusrevealsitsessentialroleinribosomal60ssubunitassembly
AT jochenbaßler mutationalanalysisofthensa2nterminusrevealsitsessentialroleinribosomal60ssubunitassembly
AT edhurt mutationalanalysisofthensa2nterminusrevealsitsessentialroleinribosomal60ssubunitassembly
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