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DAP5 drives translation of specific mRNA targets with upstream ORFs in human embryonic stem cells

Death associated protein 5 (DAP5/eIF4G2/NAT1) is a member of the eIF4G translation initiation factors that has been shown to mediate noncanonical and/or cap-independent translation. It is essential for embryonic development and for differentiation of embryonic stem cells (ESCs), specifically its abi...

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Autores principales: David, Maya, Olender, Tsviya, Mizrahi, Orel, Weingarten-Gabbay, Shira, Friedlander, Gilgi, Meril, Sara, Goldberg, Nadav, Savidor, Alon, Levin, Yishai, Salomon, Vered, Stern-Ginossar, Noam, Bialik, Shani, Kimchi, Adi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9479741/
https://www.ncbi.nlm.nih.gov/pubmed/35961752
http://dx.doi.org/10.1261/rna.079194.122
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author David, Maya
Olender, Tsviya
Mizrahi, Orel
Weingarten-Gabbay, Shira
Friedlander, Gilgi
Meril, Sara
Goldberg, Nadav
Savidor, Alon
Levin, Yishai
Salomon, Vered
Stern-Ginossar, Noam
Bialik, Shani
Kimchi, Adi
author_facet David, Maya
Olender, Tsviya
Mizrahi, Orel
Weingarten-Gabbay, Shira
Friedlander, Gilgi
Meril, Sara
Goldberg, Nadav
Savidor, Alon
Levin, Yishai
Salomon, Vered
Stern-Ginossar, Noam
Bialik, Shani
Kimchi, Adi
author_sort David, Maya
collection PubMed
description Death associated protein 5 (DAP5/eIF4G2/NAT1) is a member of the eIF4G translation initiation factors that has been shown to mediate noncanonical and/or cap-independent translation. It is essential for embryonic development and for differentiation of embryonic stem cells (ESCs), specifically its ability to drive translation of specific target mRNAs. In order to expand the repertoire of DAP5 target mRNAs, we compared ribosome profiles in control and DAP5 knockdown (KD) human ESCs (hESCs) to identify mRNAs with decreased ribosomal occupancy upon DAP5 silencing. A cohort of 68 genes showed decreased translation efficiency in DAP5 KD cells. Mass spectrometry confirmed decreased protein abundance of a significant portion of these targets. Among these was KMT2D, a histone methylase previously shown to be essential for ESC differentiation and embryonic development. We found that nearly half of the cohort of DAP5 target mRNAs displaying reduced translation efficiency of their main coding sequences upon DAP5 KD contained upstream open reading frames (uORFs) that are actively translated independently of DAP5. This is consistent with previously suggested mechanisms by which DAP5 mediates leaky scanning through uORFs and/or reinitiation at the main coding sequence. Crosslinking protein–RNA immunoprecipitation experiments indicated that a significant subset of DAP5 mRNA targets bound DAP5, indicating that direct binding between DAP5 protein and its target mRNAs is a frequent but not absolute requirement for DAP5-dependent translation of the main coding sequence. Thus, we have extended DAP5's function in translation of specific mRNAs in hESCs by a mechanism allowing translation of the main coding sequence following upstream translation of short ORFs.
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spelling pubmed-94797412022-10-07 DAP5 drives translation of specific mRNA targets with upstream ORFs in human embryonic stem cells David, Maya Olender, Tsviya Mizrahi, Orel Weingarten-Gabbay, Shira Friedlander, Gilgi Meril, Sara Goldberg, Nadav Savidor, Alon Levin, Yishai Salomon, Vered Stern-Ginossar, Noam Bialik, Shani Kimchi, Adi RNA Report Death associated protein 5 (DAP5/eIF4G2/NAT1) is a member of the eIF4G translation initiation factors that has been shown to mediate noncanonical and/or cap-independent translation. It is essential for embryonic development and for differentiation of embryonic stem cells (ESCs), specifically its ability to drive translation of specific target mRNAs. In order to expand the repertoire of DAP5 target mRNAs, we compared ribosome profiles in control and DAP5 knockdown (KD) human ESCs (hESCs) to identify mRNAs with decreased ribosomal occupancy upon DAP5 silencing. A cohort of 68 genes showed decreased translation efficiency in DAP5 KD cells. Mass spectrometry confirmed decreased protein abundance of a significant portion of these targets. Among these was KMT2D, a histone methylase previously shown to be essential for ESC differentiation and embryonic development. We found that nearly half of the cohort of DAP5 target mRNAs displaying reduced translation efficiency of their main coding sequences upon DAP5 KD contained upstream open reading frames (uORFs) that are actively translated independently of DAP5. This is consistent with previously suggested mechanisms by which DAP5 mediates leaky scanning through uORFs and/or reinitiation at the main coding sequence. Crosslinking protein–RNA immunoprecipitation experiments indicated that a significant subset of DAP5 mRNA targets bound DAP5, indicating that direct binding between DAP5 protein and its target mRNAs is a frequent but not absolute requirement for DAP5-dependent translation of the main coding sequence. Thus, we have extended DAP5's function in translation of specific mRNAs in hESCs by a mechanism allowing translation of the main coding sequence following upstream translation of short ORFs. Cold Spring Harbor Laboratory Press 2022-10 /pmc/articles/PMC9479741/ /pubmed/35961752 http://dx.doi.org/10.1261/rna.079194.122 Text en © 2022 David et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society https://creativecommons.org/licenses/by/4.0/This article, published in RNA, is available under a Creative Commons License (Attribution 4.0 International), as described at http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Report
David, Maya
Olender, Tsviya
Mizrahi, Orel
Weingarten-Gabbay, Shira
Friedlander, Gilgi
Meril, Sara
Goldberg, Nadav
Savidor, Alon
Levin, Yishai
Salomon, Vered
Stern-Ginossar, Noam
Bialik, Shani
Kimchi, Adi
DAP5 drives translation of specific mRNA targets with upstream ORFs in human embryonic stem cells
title DAP5 drives translation of specific mRNA targets with upstream ORFs in human embryonic stem cells
title_full DAP5 drives translation of specific mRNA targets with upstream ORFs in human embryonic stem cells
title_fullStr DAP5 drives translation of specific mRNA targets with upstream ORFs in human embryonic stem cells
title_full_unstemmed DAP5 drives translation of specific mRNA targets with upstream ORFs in human embryonic stem cells
title_short DAP5 drives translation of specific mRNA targets with upstream ORFs in human embryonic stem cells
title_sort dap5 drives translation of specific mrna targets with upstream orfs in human embryonic stem cells
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9479741/
https://www.ncbi.nlm.nih.gov/pubmed/35961752
http://dx.doi.org/10.1261/rna.079194.122
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