Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome

Liu TYM, Tibbe D, Engler JB, Hermans-Borgmeyer I, Borgmeyer U, de Maruri KR, Lessel D, MacRae IJ, Kreienkamp H-J (2025)
Nucleic Acids Research 53(19).

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
OA 2.80 MB
Autor*in
Liu, TingYu M; Tibbe, DeboraUniBi ; Engler, Jan Broder; Hermans-Borgmeyer, Irm; Borgmeyer, Uwe; de Maruri, Kerstin Robles; Lessel, Davor; MacRae, Ian J ; Kreienkamp, Hans-Jürgen
Abstract / Bemerkung
**Abstract**

Mutations in human Argonaute genes, AGO1 and AGO2, are associated with neurodevelopmental disorders. Although multiple patients have been identified, the underlying molecular basis for pathogenesis remains unclear. Here, we biochemically examined five AGO2 mutations (p.L192P, p.A367P, p.T357M, p.F182del, and p.G733R) linked to different clinical severities. Except for G733R, all AGO2 mutant proteins maintained a stable fold, capable of binding and using microRNA (miRNA) guides. Kinetic studies showed that the L192P, A367P, and T357M mutants have prolonged dwell times on target RNAs, indicating impaired target release. The L192P and A367P variants also display slow target RNA association kinetics. RNA Bind-n-Seq experiments showed that in vitro, the L192P, A367P, T357M, and F182Δ mutants are prone to mis-targeting. In cultured murine cortical neurons, the L192P mutant altered the miRNA complement associated with AGO2, altered guide strand selectivity, and increased the accumulation of 3′ isomiRs, suggesting altered miRNA loading and increased miRNA 3′ end exposure. In vivo, mice carrying the p.L192P variant, but not p.G733R, demonstrated strongly reduced breeding ability, altered cortical transcriptomes, and over-repression of miRNA targets. The combined results suggest patient mutations impact AGO2 targeting dynamics in a gain-of-function manner, leading to deregulation of the neuronal transcriptome and the observed neurodevelopmental anomalies.

Erscheinungsjahr
2025
Zeitschriftentitel
Nucleic Acids Research
Band
53
Ausgabe
19
ISSN
0305-1048
eISSN
1362-4962
Page URI
https://pub.uni-bielefeld.de/record/3016898

Zitieren

Liu TYM, Tibbe D, Engler JB, et al. Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome. Nucleic Acids Research. 2025;53(19).
Liu, T. Y. M., Tibbe, D., Engler, J. B., Hermans-Borgmeyer, I., Borgmeyer, U., de Maruri, K. R., Lessel, D., et al. (2025). Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome. Nucleic Acids Research, 53(19). https://doi.org/10.1093/nar/gkaf1002
Liu, TingYu M, Tibbe, Debora, Engler, Jan Broder, Hermans-Borgmeyer, Irm, Borgmeyer, Uwe, de Maruri, Kerstin Robles, Lessel, Davor, MacRae, Ian J, and Kreienkamp, Hans-Jürgen. 2025. “Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome”. Nucleic Acids Research 53 (19).
Liu, T. Y. M., Tibbe, D., Engler, J. B., Hermans-Borgmeyer, I., Borgmeyer, U., de Maruri, K. R., Lessel, D., MacRae, I. J., and Kreienkamp, H. - J. (2025). Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome. Nucleic Acids Research 53.
Liu, T.Y.M., et al., 2025. Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome. Nucleic Acids Research, 53(19).
T.Y.M. Liu, et al., “Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome”, Nucleic Acids Research, vol. 53, 2025.
Liu, T.Y.M., Tibbe, D., Engler, J.B., Hermans-Borgmeyer, I., Borgmeyer, U., de Maruri, K.R., Lessel, D., MacRae, I.J., Kreienkamp, H.-J.: Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome. Nucleic Acids Research. 53, (2025).
Liu, TingYu M, Tibbe, Debora, Engler, Jan Broder, Hermans-Borgmeyer, Irm, Borgmeyer, Uwe, de Maruri, Kerstin Robles, Lessel, Davor, MacRae, Ian J, and Kreienkamp, Hans-Jürgen. “Dysregulation of AGO2-miRNA dynamics underlies the -associated Lessel–Kreienkamp syndrome”. Nucleic Acids Research 53.19 (2025).
Alle Dateien verfügbar unter der/den folgenden Lizenz(en):
Creative Commons Namensnennung 4.0 International Public License (CC-BY 4.0):
Volltext(e)
Name
Access Level
OA Open Access
Zuletzt Hochgeladen
2026-05-21T08:29:29Z
MD5 Prüfsumme
44769f0bb3d8838ee588d5b5d847a3bd


Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Suchen in

Google Scholar