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Ana Lorenzo

@lorenzoana.bsky.social
15 followers 19 following 0 posts

PhD student at Aarhus University, Denmark

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Reposted by Ana Lorenzo
William Garland @willgarland.bsky.social · 29/09/2026
New from the lab! We uncover how the cap-binding complex promotes first-intron splicing: ZC3H18 recruits splicing factors while competing with the RNA-decay machinery, linking two alternative fates for newly made RNA. doi.org/10.1016/j.mo...
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Reposted by Ana Lorenzo
Nature @nature.com · 19/06/2026
Nature research paper: Molecular basis of polyadenylated RNA fate determination in the nucleus go.nature.com/4vr9d7c
go.nature.com
Molecular basis of polyadenylated RNA fate determination in the nucleus - Nature
Biochemical, structural and cell biological analyses reveal that UAP56 (DDX39B) assembles with a TREX-2–like module that redirects non-functional polyadenylated RNAs from export to degradation.
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Reposted by Ana Lorenzo
Plaschka lab @plaschkalab.bsky.social · 18/06/2026
Now published! We investigated how polyadenylated RNAs are targeted for decay in the human nucleus. www.nature.com/articles/s41... (1/5)
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Reposted by Ana Lorenzo
IMP @impvienna.bsky.social · 17/06/2026
How do cells distinguish functional genetic messages from molecular noise? Researchers in Clemens Plaschka's lab at IMP, together with Julius Brennecke's lab at IMBA and collaborators at Aarhus University, reveal a new principle of gene regulation: www.nature.com/articles/s41586-026-…
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Reposted by Ana Lorenzo
Andrii Bugai @abugai.bsky.social · 17/06/2026
Check out our latest research, just published in Nature @nature.com @molbiolau.bsky.social @au.dk Molecular basis of polyadenylated RNA fate determination in the nucleus www.nature.com/articles/s41...
nature.com
Molecular basis of polyadenylated RNA fate determination in the nucleus - Nature
Biochemical, structural and cell biological analyses reveal that UAP56 (DDX39B) assembles with a TREX-2–like module that redirects non-functional polyadenylated RNAs from export to degradati...
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Reposted by Ana Lorenzo
Ulrich Hohmann @hohmannulrich.bsky.social · 12/10/2025
Thrilled to share that I’ll be joining @imbmainz.bsky.social in February 2026 to start my own group! We will explore new mechanisms in eukaryotic gene expression, leveraging ‘evolutionary play’ to uncover how regulation, repurposing, and hijacking shape RNA biology. PhD positions available!
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Reposted by Ana Lorenzo
Ulrich Hohmann @hohmannulrich.bsky.social · 23/09/2025
How are RNAs sorted for export vs. degradation in the nucleus? In collaboration with @heick.bsky.social’s lab we (@clemensplaschka.bsky.social and @juliusbrennecke.bsky.social labs) discovered a direct mechanistic link between the export and decay machineries: www.biorxiv.org/content/10.1... (1/x)
biorxiv.org
Molecular basis of polyadenylated RNA fate determination in the nucleus
Eukaryotic genomes generate a plethora of polyadenylated (pA+) RNAs[1][1],[2][2], that are packaged into ribonucleoprotein particles (RNPs). To ensure faithful gene expression, functional pA+ RNPs, in...
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