DENR-MCTS1 heterodimerization and tRNA recruitment are required for translation reinitiation.

The succession of molecular events leading to eukaryotic translation reinitiation-whereby ribosomes terminate translation of a short open reading frame (ORF), resume scanning, and then translate a second ORF on the same mRNA-is not well understood. Density-regulated reinitiation and release factor (...

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Main Authors: Yasar Luqman Ahmed, Sibylle Schleich, Jonathan Bohlen, Nicolas Mandel, Bernd Simon, Irmgard Sinning, Aurelio A Teleman
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-06-01
Series:PLoS Biology
Online Access:http://europepmc.org/articles/PMC6013234?pdf=render
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spelling doaj-d5a8b8b27b4644399a4b6de6235b56f82021-07-02T06:05:53ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852018-06-01166e200516010.1371/journal.pbio.2005160DENR-MCTS1 heterodimerization and tRNA recruitment are required for translation reinitiation.Yasar Luqman AhmedSibylle SchleichJonathan BohlenNicolas MandelBernd SimonIrmgard SinningAurelio A TelemanThe succession of molecular events leading to eukaryotic translation reinitiation-whereby ribosomes terminate translation of a short open reading frame (ORF), resume scanning, and then translate a second ORF on the same mRNA-is not well understood. Density-regulated reinitiation and release factor (DENR) and multiple copies in T-cell lymphoma-1 (MCTS1) are implicated in promoting translation reinitiation both in vitro in translation extracts and in vivo. We present here the crystal structure of MCTS1 bound to a fragment of DENR. Based on this structure, we identify and experimentally validate that DENR residues Glu42, Tyr43, and Tyr46 are important for MCTS1 binding and that MCTS1 residue Phe104 is important for tRNA binding. Mutation of these residues reveals that DENR-MCTS1 dimerization and tRNA binding are both necessary for DENR and MCTS1 to promote translation reinitiation in human cells. These findings thereby link individual residues of DENR and MCTS1 to specific molecular functions of the complex. Since DENR-MCTS1 can bind tRNA in the absence of the ribosome, this suggests the DENR-MCTS1 complex could recruit tRNA to the ribosome during reinitiation analogously to the eukaryotic initiation factor 2 (eIF2) complex in cap-dependent translation.http://europepmc.org/articles/PMC6013234?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yasar Luqman Ahmed
Sibylle Schleich
Jonathan Bohlen
Nicolas Mandel
Bernd Simon
Irmgard Sinning
Aurelio A Teleman
spellingShingle Yasar Luqman Ahmed
Sibylle Schleich
Jonathan Bohlen
Nicolas Mandel
Bernd Simon
Irmgard Sinning
Aurelio A Teleman
DENR-MCTS1 heterodimerization and tRNA recruitment are required for translation reinitiation.
PLoS Biology
author_facet Yasar Luqman Ahmed
Sibylle Schleich
Jonathan Bohlen
Nicolas Mandel
Bernd Simon
Irmgard Sinning
Aurelio A Teleman
author_sort Yasar Luqman Ahmed
title DENR-MCTS1 heterodimerization and tRNA recruitment are required for translation reinitiation.
title_short DENR-MCTS1 heterodimerization and tRNA recruitment are required for translation reinitiation.
title_full DENR-MCTS1 heterodimerization and tRNA recruitment are required for translation reinitiation.
title_fullStr DENR-MCTS1 heterodimerization and tRNA recruitment are required for translation reinitiation.
title_full_unstemmed DENR-MCTS1 heterodimerization and tRNA recruitment are required for translation reinitiation.
title_sort denr-mcts1 heterodimerization and trna recruitment are required for translation reinitiation.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2018-06-01
description The succession of molecular events leading to eukaryotic translation reinitiation-whereby ribosomes terminate translation of a short open reading frame (ORF), resume scanning, and then translate a second ORF on the same mRNA-is not well understood. Density-regulated reinitiation and release factor (DENR) and multiple copies in T-cell lymphoma-1 (MCTS1) are implicated in promoting translation reinitiation both in vitro in translation extracts and in vivo. We present here the crystal structure of MCTS1 bound to a fragment of DENR. Based on this structure, we identify and experimentally validate that DENR residues Glu42, Tyr43, and Tyr46 are important for MCTS1 binding and that MCTS1 residue Phe104 is important for tRNA binding. Mutation of these residues reveals that DENR-MCTS1 dimerization and tRNA binding are both necessary for DENR and MCTS1 to promote translation reinitiation in human cells. These findings thereby link individual residues of DENR and MCTS1 to specific molecular functions of the complex. Since DENR-MCTS1 can bind tRNA in the absence of the ribosome, this suggests the DENR-MCTS1 complex could recruit tRNA to the ribosome during reinitiation analogously to the eukaryotic initiation factor 2 (eIF2) complex in cap-dependent translation.
url http://europepmc.org/articles/PMC6013234?pdf=render
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AT jonathanbohlen denrmcts1heterodimerizationandtrnarecruitmentarerequiredfortranslationreinitiation
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AT irmgardsinning denrmcts1heterodimerizationandtrnarecruitmentarerequiredfortranslationreinitiation
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