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Pseudouridine guides germline small RNA transport and epigenetic inheritance

Epigenetic modifications that arise during plant and animal development, such as DNA and histone modification, are mostly reset during gamete formation, but some are inherited from the germline including those marking imprinted genes(1). Small RNAs guide these epigenetic modifications, and some are...

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Autores principales: Herridge, Rowan P, Dolata, Jakub, Migliori, Valentina, de Santis Alves, Cristiane, Borges, Filipe, Schorn, Andrea J, Van Ex, Frédéric, Parent, Jean-Sebastien, Lin, Ann, Bajczyk, Mateusz, Leonardi, Tommaso, Hendrick, Alan, Kouzarides, Tony, Martienssen, Robert A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312437/
https://www.ncbi.nlm.nih.gov/pubmed/37398006
http://dx.doi.org/10.1101/2023.05.27.542553
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author Herridge, Rowan P
Dolata, Jakub
Migliori, Valentina
de Santis Alves, Cristiane
Borges, Filipe
Schorn, Andrea J
Van Ex, Frédéric
Parent, Jean-Sebastien
Lin, Ann
Bajczyk, Mateusz
Leonardi, Tommaso
Hendrick, Alan
Kouzarides, Tony
Martienssen, Robert A
author_facet Herridge, Rowan P
Dolata, Jakub
Migliori, Valentina
de Santis Alves, Cristiane
Borges, Filipe
Schorn, Andrea J
Van Ex, Frédéric
Parent, Jean-Sebastien
Lin, Ann
Bajczyk, Mateusz
Leonardi, Tommaso
Hendrick, Alan
Kouzarides, Tony
Martienssen, Robert A
author_sort Herridge, Rowan P
collection PubMed
description Epigenetic modifications that arise during plant and animal development, such as DNA and histone modification, are mostly reset during gamete formation, but some are inherited from the germline including those marking imprinted genes(1). Small RNAs guide these epigenetic modifications, and some are also inherited by the next generation(2,3). In C. elegans, these inherited small RNAs have poly (UG) tails(4), but how inherited small RNAs are distinguished in other animals and plants is unknown. Pseudouridine (Ψ) is the most abundant RNA modification but has not been explored in small RNAs. Here, we develop novel assays to detect Ψ in short RNA sequences, demonstrating its presence in mouse and Arabidopsis microRNAs and their precursors. We also detect substantial enrichment in germline small RNAs, namely epigenetically activated siRNAs (easiRNAs) in Arabidopsis pollen, and piwi-interacting piRNAs in mouse testis. In pollen, pseudouridylated easiRNAs are localized to sperm cells, and we found that PAUSED/HEN5 (PSD), the plant homolog of Exportin-t, interacts genetically with Ψ and is required for transport of easiRNAs into sperm cells from the vegetative nucleus. We further show that Exportin-t is required for the triploid block: chromosome dosage-dependent seed lethality that is epigenetically inherited from pollen. Thus, Ψ has a conserved role in marking inherited small RNAs in the germline.
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spelling pubmed-103124372023-07-01 Pseudouridine guides germline small RNA transport and epigenetic inheritance Herridge, Rowan P Dolata, Jakub Migliori, Valentina de Santis Alves, Cristiane Borges, Filipe Schorn, Andrea J Van Ex, Frédéric Parent, Jean-Sebastien Lin, Ann Bajczyk, Mateusz Leonardi, Tommaso Hendrick, Alan Kouzarides, Tony Martienssen, Robert A bioRxiv Article Epigenetic modifications that arise during plant and animal development, such as DNA and histone modification, are mostly reset during gamete formation, but some are inherited from the germline including those marking imprinted genes(1). Small RNAs guide these epigenetic modifications, and some are also inherited by the next generation(2,3). In C. elegans, these inherited small RNAs have poly (UG) tails(4), but how inherited small RNAs are distinguished in other animals and plants is unknown. Pseudouridine (Ψ) is the most abundant RNA modification but has not been explored in small RNAs. Here, we develop novel assays to detect Ψ in short RNA sequences, demonstrating its presence in mouse and Arabidopsis microRNAs and their precursors. We also detect substantial enrichment in germline small RNAs, namely epigenetically activated siRNAs (easiRNAs) in Arabidopsis pollen, and piwi-interacting piRNAs in mouse testis. In pollen, pseudouridylated easiRNAs are localized to sperm cells, and we found that PAUSED/HEN5 (PSD), the plant homolog of Exportin-t, interacts genetically with Ψ and is required for transport of easiRNAs into sperm cells from the vegetative nucleus. We further show that Exportin-t is required for the triploid block: chromosome dosage-dependent seed lethality that is epigenetically inherited from pollen. Thus, Ψ has a conserved role in marking inherited small RNAs in the germline. Cold Spring Harbor Laboratory 2023-11-03 /pmc/articles/PMC10312437/ /pubmed/37398006 http://dx.doi.org/10.1101/2023.05.27.542553 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Herridge, Rowan P
Dolata, Jakub
Migliori, Valentina
de Santis Alves, Cristiane
Borges, Filipe
Schorn, Andrea J
Van Ex, Frédéric
Parent, Jean-Sebastien
Lin, Ann
Bajczyk, Mateusz
Leonardi, Tommaso
Hendrick, Alan
Kouzarides, Tony
Martienssen, Robert A
Pseudouridine guides germline small RNA transport and epigenetic inheritance
title Pseudouridine guides germline small RNA transport and epigenetic inheritance
title_full Pseudouridine guides germline small RNA transport and epigenetic inheritance
title_fullStr Pseudouridine guides germline small RNA transport and epigenetic inheritance
title_full_unstemmed Pseudouridine guides germline small RNA transport and epigenetic inheritance
title_short Pseudouridine guides germline small RNA transport and epigenetic inheritance
title_sort pseudouridine guides germline small rna transport and epigenetic inheritance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312437/
https://www.ncbi.nlm.nih.gov/pubmed/37398006
http://dx.doi.org/10.1101/2023.05.27.542553
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