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March 4, 2026Development0 citations

Developmental assembly of contractile actomyosin networks in the C. elegans spermatheca requires Anillin and successful cytokinesis

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FCFung-Yi ChanDODaniel S. OsórioMCMaria Begoña Criado

Key Points

  • This research aims to understand how Anillin and cytokinesis influence the assembly of actomyosin networks in the spermatheca of C. elegans.
  • Conducted an RNAi screen targeting 117 F-actin regulators
  • Utilized live imaging to assess the effects of ANI-1 depletion on contractility
  • Analyzed effects of cytokinetic regulators AIR-2 and ZEN-4 on F-actin organization
  • Depletion of ANI-1 led to disrupted F-actin organization and Rho activation
  • Cytokinesis failure resulted in ovulation failure and sterility
  • Identical F-actin defects were observed with depletion of AIR-2 and ZEN-4

Abstract

Proper contractility of the C. elegans spermatheca relies on the coordinated developmental assembly of actomyosin bundles, yet the mechanisms that organize these structures remain poorly understood. From an RNAi screen targeting 117 F-actin regulators, we uncovered an essential role for ANI-1/Anillin in spermatheca morphogenesis. Live imaging revealed that ANI-1 depletion prevents organ contractility due to disrupted F-actin organization, impaired Rho activation, and absent calcium signaling, leading to ovulation failure and sterility. We show that a primary defect of ANI-1 depletion is furrow regression during spermatheca cell cytokinesis, which leads to multinucleation during early spermatheca development. Following failed cytokinesis, F-actin bundle formation is severely impaired, preventing robust F-actin network assembly especially in the spermatheca distal neck. Depletion of the cytokinetic regulators AIR-2/Aurora B and the centralspindlin component ZEN-4 produced identical F-actin defects in the mature spermatheca. We conclude that successful cell division is a prerequisite for subsequent F-actin network assembly that supports organ contractility, and identify ANI-1 as a key regulator of spermatheca function.

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Cite This Study

Chan et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd9dd48f933b5eeda287https://doi.org/10.1242/dev.204915
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