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  Germline AGO2 mutations impair RNA interference and human neurological development

Lessel, D., Zeitler, D. M., Reijnders, M. R. F., Kazantsev, A., Hassani Nia, F., Bartholomäus, A., Martens, V., Bruckmann, A., Graus, V., McConkie-Rosell, A., McDonald, M., Lozic, B., Tan, E.-S., Gerkes, E., Johannsen, J., Denecke, J., Telegrafi, A., Zonneveld-Huijssoon, E., Lemmink, H. H., Cham, B. W. M., Kovacevic, T., Ramsdell, L., Foss, K., Le Duc, D., Mitter, D., Syrbe, S., Merkenschlager, A., Sinnema, M., Panis, B., Lazier, J., Osmond, M., Hartley, T., Mortreux, J., Busa, T., Missirian, C., Prasun, P., Lüttgen, S., Mannucci, I., Lessel, I., Schob, C., Kindler, S., Pappas, J., Rabin, R., Willemsen, M., Gardeitchik, T., Löhner, K., Rump, P., Dias, K.-R., Evans, C.-A., Andrews, P. I., Roscioli, T., Brunner, H. G., Chijiwa, C., Lewis, M. E. S., Jamra, R. A., Dyment, D. A., Boycott, K. M., Stegmann, A. P. A., Kubisch, C., Tan, E.-C., Mirzaa, G. M., McWalter, K., Kleefstra, T., Pfundt, R., Ignatova, Z., Meister, G., Kreienkamp, H.-J. (2020): Germline AGO2 mutations impair RNA interference and human neurological development. - Nature Communications, 11, 5797.
https://doi.org/10.1038/s41467-020-19572-5

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Lessel, Davor1, Author
Zeitler, Daniela M.1, Author
Reijnders, Margot R. F.1, Author
Kazantsev, Andriy1, Author
Hassani Nia, Fatemeh1, Author
Bartholomäus, Alexander2, Author              
Martens, Victoria1, Author
Bruckmann, Astrid1, Author
Graus, Veronika1, Author
McConkie-Rosell, Allyn1, Author
McDonald, Marie1, Author
Lozic, Bernarda1, Author
Tan, Ee-Shien1, Author
Gerkes, Erica1, Author
Johannsen, Jessika1, Author
Denecke, Jonas1, Author
Telegrafi, Aida1, Author
Zonneveld-Huijssoon, Evelien1, Author
Lemmink, Henny H.1, Author
Cham, Breana W. M.1, Author
Kovacevic, Tanja1, AuthorRamsdell, Linda1, AuthorFoss, Kimberly1, AuthorLe Duc, Diana1, AuthorMitter, Diana1, AuthorSyrbe, Steffen1, AuthorMerkenschlager, Andreas1, AuthorSinnema, Margje1, AuthorPanis, Bianca1, AuthorLazier, Joanna1, AuthorOsmond, Matthew1, AuthorHartley, Taila1, AuthorMortreux, Jeremie1, AuthorBusa, Tiffany1, AuthorMissirian, Chantal1, AuthorPrasun, Pankaj1, AuthorLüttgen, Sabine1, AuthorMannucci, Ilaria1, AuthorLessel, Ivana1, AuthorSchob, Claudia1, AuthorKindler, Stefan1, AuthorPappas, John1, AuthorRabin, Rachel1, AuthorWillemsen, Marjolein1, AuthorGardeitchik, Thatjana1, AuthorLöhner, Katharina1, AuthorRump, Patrick1, AuthorDias, Kerith-Rae1, AuthorEvans, Carey-Anne1, AuthorAndrews, Peter Ian1, AuthorRoscioli, Tony1, AuthorBrunner, Han G.1, AuthorChijiwa, Chieko1, AuthorLewis, M. E. Suzanne1, AuthorJamra, Rami Abou1, AuthorDyment, David A.1, AuthorBoycott, Kym M.1, AuthorStegmann, Alexander P. A.1, AuthorKubisch, Christian1, AuthorTan, Ene-Choo1, AuthorMirzaa, Ghayda M.1, AuthorMcWalter, Kirsty1, AuthorKleefstra, Tjitske1, AuthorPfundt, Rolph1, AuthorIgnatova, Zoya1, AuthorMeister, Gunter1, AuthorKreienkamp, Hans-Jürgen1, Author more..
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1External Organizations, ou_persistent22              
23.7 Geomicrobiology, 3.0 Geochemistry, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146043              

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 Abstract: ARGONAUTE-2 and associated miRNAs form the RNA-induced silencing complex (RISC), which targets mRNAs for translational silencing and degradation as part of the RNA interference pathway. Despite the essential nature of this process for cellular function, there is little information on the role of RISC components in human development and organ function. We identify 13 heterozygous mutations in AGO2 in 21 patients affected by disturbances in neurological development. Each of the identified single amino acid mutations result in impaired shRNA-mediated silencing. We observe either impaired RISC formation or increased binding of AGO2 to mRNA targets as mutation specific functional consequences. The latter is supported by decreased phosphorylation of a C-terminal serine cluster involved in mRNA target release, increased formation of dendritic P-bodies in neurons and global transcriptome alterations in patient-derived primary fibroblasts. Our data emphasize the importance of gene expression regulation through the dynamic AGO2-RNA association for human neuronal development.

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 Dates: 2020-11-162020
 Publication Status: Finally published
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 Identifiers: DOI: 10.1038/s41467-020-19572-5
GFZPOF: p3 PT3 Earth Surface and Climate Interactions
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Title: Nature Communications
Source Genre: Journal, SCI, Scopus, oa
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Pages: - Volume / Issue: 11 Sequence Number: 5797 Start / End Page: - Identifier: ISSN: 2041-1723
Other: Springer Nature
CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals354
Publisher: Springer Nature