2014
DOI: 10.1371/journal.pgen.1004564
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The RNA Helicases AtMTR4 and HEN2 Target Specific Subsets of Nuclear Transcripts for Degradation by the Nuclear Exosome in Arabidopsis thaliana

Abstract: The RNA exosome is the major 3′-5′ RNA degradation machine of eukaryotic cells and participates in processing, surveillance and turnover of both nuclear and cytoplasmic RNA. In both yeast and human, all nuclear functions of the exosome require the RNA helicase MTR4. We show that the Arabidopsis core exosome can associate with two related RNA helicases, AtMTR4 and HEN2. Reciprocal co-immunoprecipitation shows that each of the RNA helicases co-purifies with the exosome core complex and with distinct sets of spec… Show more

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Cited by 103 publications
(176 citation statements)
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References 77 publications
(131 reference statements)
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“…Based on available co-immunoprecipitation data showing the direct interaction between the exosome core and AtRRP44 (Lange et al 2014) and our results, we speculate that AtRRP44 endows plant RNA exosome with the catalytic activity. Arabidopsis Col-0 transformants expressing AtRRP44-GUS fusion proteins driven by the AtRRP44 native promoter region showed strong signals especially in organs associated with active turnover (such as shoot and root apical meristems as well as lateral root primordia), indicating that AtRRP44 has pleiotropic functions in plant development through RNA degradation and processing.…”
Section: Discussionsupporting
confidence: 67%
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“…Based on available co-immunoprecipitation data showing the direct interaction between the exosome core and AtRRP44 (Lange et al 2014) and our results, we speculate that AtRRP44 endows plant RNA exosome with the catalytic activity. Arabidopsis Col-0 transformants expressing AtRRP44-GUS fusion proteins driven by the AtRRP44 native promoter region showed strong signals especially in organs associated with active turnover (such as shoot and root apical meristems as well as lateral root primordia), indicating that AtRRP44 has pleiotropic functions in plant development through RNA degradation and processing.…”
Section: Discussionsupporting
confidence: 67%
“…In A. thaliana, well known exosome core components and cofactors, AtRRP44 and AtRRP6Ls, have been determined (Chekanova et al 2007;Kumakura et al 2013;Lange et al 2009Lange et al , 2014. Rrp44/Dis3 proteins in human and yeast have ribonuclease activity and are the catalytic centers of the exosome (Dziembowski et al 2006;Liu et al 2006;Staals et al 2010).…”
Section: Discussionmentioning
confidence: 99%
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