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March 25, 2026Genetics1 citations

Crosstalk between and developmental dynamics of C. elegans Argonaute proteins

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ASAnn-Sophie SeistrupENEmily NischwitzFBFalk Butter

Key Points

  • The study aims to explore how WAGO proteins in C. elegans interact with small RNAs and influence gene regulation during different developmental stages.
  • Analyzed the expression of WAGO-1 and WAGO-3 in different developmental stages of C. elegans
  • Examined relationships between WAGO proteins and 22G-RNA sequences
  • Performed metagene analysis on 22G-RNA profiles
  • WAGO-1 primarily influences 22G-RNA expression in gravid adults
  • WAGO-3 affects 22G-RNA expression predominantly in embryos
  • No upregulation of target mRNAs observed with loss of WAGO-1 or WAGO-3
  • Loss of one WAGO protein causes shifts in WAGO 22G-RNA binding

Abstract

Gene regulation via Argonaute-bound small RNAs is a broadly conserved mechanism, present in all domains of life. The nematode Caenorhabditis elegans expresses several worm-specific Argonautes (WAGOs), which interact with the small RNAs known as 22G-RNAs. These WAGOs have roles in gene regulation, transposon-defence as well as in viral control and experimentally induced RNA interference. Despite many studies, direct relationships between WAGO targeting, as defined by 22G-RNA sequences, and mRNA abundance are not clear. Also, the effects of developmental stage and WAGO-interconnectivity have been under-studied thus far. We studied these aspects for two germline-expressed WAGO proteins, WAGO-1 and WAGO-3. We show that WAGO-1 mostly affects 22G-RNA expression in gravid adult worms, while WAGO-3 predominantly affects 22G-RNA expression in embryos. Furthermore, we detect a link between WAGO-3 and the maternal 26G-RNA pathway governed by the Argonaute protein ERGO-1, and between WAGO-1 and the paternal 26G-RNA pathway governed by the Argonautes ALG-3/4. We also demonstrate that, globally speaking, loss of WAGO-1 or WAGO-3 does not result in upregulation of their target mRNAs, as defined by 22G-RNA complementarity. Finally, metagene analysis of 22G-RNA profiles suggests loss of one WAGO protein leads to shifts in WAGO 22G-RNA binding. Overall, we conclude that WAGO-1 and WAGO-3 are developmentally dynamic, are embedded in distinct regulatory networks, and that potential silencing of individual mRNAs by these WAGO proteins is hard to assess by simple loss-of-function studies.

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Cite This Study

Seistrup et al. (2026) studied this question.

synapsesocial.com/papers/69c37bd4b34aaaeb1a67ea03https://doi.org/10.1093/genetics/iyag077
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