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dc.contributor.author
Leppek, Kathrin
dc.contributor.author
Fujii, Kotaro
dc.contributor.author
Quade, Nick
dc.contributor.author
Susanto, Teodorus Theo
dc.contributor.author
Böhringer, Daniel
dc.contributor.author
Lenarcic, Tea
dc.contributor.author
Xue, Shifeng
dc.contributor.author
Genuth, Naomi R.
dc.contributor.author
Ban, Nenad
dc.contributor.author
Barna, Maria
dc.date.accessioned
2021-01-11T09:37:36Z
dc.date.available
2020-12-24T03:41:04Z
dc.date.available
2021-01-11T09:37:36Z
dc.date.issued
2020-12-17
dc.identifier.issn
1097-2765
dc.identifier.issn
1097-4164
dc.identifier.other
10.1016/j.molcel.2020.10.023
en_US
dc.identifier.uri
http://hdl.handle.net/20.500.11850/458489
dc.description.abstract
Ribosomes have been suggested to directly control gene regulation, but regulatory roles for ribosomal RNA (rRNA) remain largely unexplored. Expansion segments (ESs) consist of multitudes of tentacle-like rRNA structures extending from the core ribosome in eukaryotes. ESs are remarkably variable in sequence and size across eukaryotic evolution with largely unknown functions. In characterizing ribosome binding to a regulatory element within a Homeobox (Hox) 5′ UTR, we identify a modular stem-loop within this element that binds to a single ES, ES9S. Engineering chimeric, “humanized” yeast ribosomes for ES9S reveals that an evolutionary change in the sequence of ES9S endows species-specific binding of Hoxa9 mRNA to the ribosome. Genome editing to site-specifically disrupt the Hoxa9-ES9S interaction demonstrates the functional importance for such selective mRNA-rRNA binding in translation control. Together, these studies unravel unexpected gene regulation directly mediated by rRNA and how ribosome evolution drives translation of critical developmental regulators. © 2020 Elsevier Inc.
en_US
dc.language.iso
en
en_US
dc.publisher
Cell Press
en_US
dc.title
Gene- and Species-Specific Hox mRNA Translation by Ribosome Expansion Segments
en_US
dc.type
Journal Article
dc.date.published
2020-11-16
ethz.journal.title
Molecular Cell
ethz.journal.volume
80
en_US
ethz.journal.issue
6
en_US
ethz.journal.abbreviated
Mol Cell
ethz.pages.start
980
en_US
ethz.pages.end
995.e13
en_US
ethz.grant
Bonus of Excellence - Structural studies of complexes involved in ribosome assembly and translation initiation in yeast
en_US
ethz.identifier.wos
ethz.identifier.scopus
ethz.publication.place
Cambridge, MA
en_US
ethz.publication.status
published
en_US
ethz.leitzahl
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02030 - Dep. Biologie / Dep. of Biology::02521 - Inst. f. Molekularbiologie u. Biophysik / Inst. Molecular Biology and Biophysics::03556 - Ban, Nenad / Ban, Nenad
ethz.leitzahl
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02030 - Dep. Biologie / Dep. of Biology::02521 - Inst. f. Molekularbiologie u. Biophysik / Inst. Molecular Biology and Biophysics::03556 - Ban, Nenad / Ban, Nenad
ethz.leitzahl.certified
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02030 - Dep. Biologie / Dep. of Biology::02521 - Inst. f. Molekularbiologie u. Biophysik / Inst. Molecular Biology and Biophysics::03556 - Ban, Nenad / Ban, Nenad
ethz.leitzahl.certified
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02030 - Dep. Biologie / Dep. of Biology::02521 - Inst. f. Molekularbiologie u. Biophysik / Inst. Molecular Biology and Biophysics::03556 - Ban, Nenad / Ban, Nenad
ethz.grant.agreementno
163478
ethz.grant.fundername
SNF
ethz.grant.funderDoi
10.13039/501100001711
ethz.grant.program
Exzellenzbeitrag in Lebenswissenschaften
ethz.date.deposited
2020-12-24T03:41:17Z
ethz.source
SCOPUS
ethz.eth
yes
en_US
ethz.availability
Metadata only
en_US
ethz.rosetta.installDate
2021-01-11T09:37:44Z
ethz.rosetta.lastUpdated
2024-02-02T12:48:46Z
ethz.rosetta.versionExported
true
ethz.COinS
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