Chromatoid Body Protein TDRD6 Supports Long 3' UTR Triggered Nonsense Mediated mRNA Decay.

Chromatoid bodies (CBs) are spermiogenesis-specific organelles of largely unknown function. CBs harbor various RNA species, RNA-associated proteins and proteins of the tudor domain family like TDRD6, which is required for a proper CB architecture. Proteome analysis of purified CBs revealed component...

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Main Authors: Grigorios Fanourgakis, Mathias Lesche, Müge Akpinar, Andreas Dahl, Rolf Jessberger
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-05-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4858158?pdf=render
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spelling doaj-37dfb517ca874e9fada7436e1ab9c5aa2020-11-25T02:06:06ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042016-05-01125e100585710.1371/journal.pgen.1005857Chromatoid Body Protein TDRD6 Supports Long 3' UTR Triggered Nonsense Mediated mRNA Decay.Grigorios FanourgakisMathias LescheMüge AkpinarAndreas DahlRolf JessbergerChromatoid bodies (CBs) are spermiogenesis-specific organelles of largely unknown function. CBs harbor various RNA species, RNA-associated proteins and proteins of the tudor domain family like TDRD6, which is required for a proper CB architecture. Proteome analysis of purified CBs revealed components of the nonsense-mediated mRNA decay (NMD) machinery including UPF1. TDRD6 is essential for UPF1 localization to CBs, for UPF1-UPF2 and UPF1-MVH interactions. Upon removal of TDRD6, the association of several mRNAs with UPF1 and UPF2 is disturbed, and the long 3' UTR-stimulated but not the downstream exon-exon junction triggered pathway of NMD is impaired. Reduced association of the long 3' UTR mRNAs with UPF1 and UPF2 correlates with increased stability and enhanced translational activity. Thus, we identified TDRD6 within CBs as required for mRNA degradation, specifically the extended 3' UTR-triggered NMD pathway, and provide evidence for the requirement of NMD in spermiogenesis. This function depends on TDRD6-promoted assembly of mRNA and decay enzymes in CBs.http://europepmc.org/articles/PMC4858158?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Grigorios Fanourgakis
Mathias Lesche
Müge Akpinar
Andreas Dahl
Rolf Jessberger
spellingShingle Grigorios Fanourgakis
Mathias Lesche
Müge Akpinar
Andreas Dahl
Rolf Jessberger
Chromatoid Body Protein TDRD6 Supports Long 3' UTR Triggered Nonsense Mediated mRNA Decay.
PLoS Genetics
author_facet Grigorios Fanourgakis
Mathias Lesche
Müge Akpinar
Andreas Dahl
Rolf Jessberger
author_sort Grigorios Fanourgakis
title Chromatoid Body Protein TDRD6 Supports Long 3' UTR Triggered Nonsense Mediated mRNA Decay.
title_short Chromatoid Body Protein TDRD6 Supports Long 3' UTR Triggered Nonsense Mediated mRNA Decay.
title_full Chromatoid Body Protein TDRD6 Supports Long 3' UTR Triggered Nonsense Mediated mRNA Decay.
title_fullStr Chromatoid Body Protein TDRD6 Supports Long 3' UTR Triggered Nonsense Mediated mRNA Decay.
title_full_unstemmed Chromatoid Body Protein TDRD6 Supports Long 3' UTR Triggered Nonsense Mediated mRNA Decay.
title_sort chromatoid body protein tdrd6 supports long 3' utr triggered nonsense mediated mrna decay.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2016-05-01
description Chromatoid bodies (CBs) are spermiogenesis-specific organelles of largely unknown function. CBs harbor various RNA species, RNA-associated proteins and proteins of the tudor domain family like TDRD6, which is required for a proper CB architecture. Proteome analysis of purified CBs revealed components of the nonsense-mediated mRNA decay (NMD) machinery including UPF1. TDRD6 is essential for UPF1 localization to CBs, for UPF1-UPF2 and UPF1-MVH interactions. Upon removal of TDRD6, the association of several mRNAs with UPF1 and UPF2 is disturbed, and the long 3' UTR-stimulated but not the downstream exon-exon junction triggered pathway of NMD is impaired. Reduced association of the long 3' UTR mRNAs with UPF1 and UPF2 correlates with increased stability and enhanced translational activity. Thus, we identified TDRD6 within CBs as required for mRNA degradation, specifically the extended 3' UTR-triggered NMD pathway, and provide evidence for the requirement of NMD in spermiogenesis. This function depends on TDRD6-promoted assembly of mRNA and decay enzymes in CBs.
url http://europepmc.org/articles/PMC4858158?pdf=render
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