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α integrin cytoplasmic tails can rescue the loss of Rho-family GTPase signaling in the C. elegans somatic gonad. | LitMetric

AI Article Synopsis

  • Integrin signaling involves various pathways that influence cell behavior, particularly through the Rho family of GTPases, which are essential for regulating cell shape and movement.
  • Research on the nematode C. elegans reveals that different α integrin cytoplasmic tails can compensate for the loss of certain Rho family members, specifically in the somatic gonad, affecting processes like actin organization and ovulation.
  • Specific combinations of chimeric α integrins can restore certain functionalities after knocking down different Rho family proteins, indicating that these cytoplasmic tails can override Rho signaling in developmental processes.

Article Abstract

Integrin signaling relies on multiple, distinct pathways to impact a diverse set of cell behaviors. The Rho family of GTPases are well-established downstream signaling partners of integrins that regulate cell shape, polarity, and migration. The nematode C. elegans provides a simple in vivo system for studying both integrins and the Rho family. Our previous work showed that the C. elegans α integrin cytoplasmic tails have tissue-specific functions during development. Here, we use chimeric α integrins to show that the cytoplasmic tails can rescue the loss of the Rho family of GTPases in three cell types in the somatic gonad. Knockdown of rho-1 by RNAi causes defects in sheath cell actin organization, ovulation, and vulva morphology. Chimeric α integrin ina-1 with the pat-2 cytoplasmic tail can rescue both actin organization and ovulation after rho-1 RNAi, yet cannot restore vulva morphology. Knockdown of cdc-42 by RNAi causes defects in sheath cell actin organization, ovulation, vulva morphology, and distal tip cell migration. Chimeric α integrin pat-2 with the ina-1 cytoplasmic tail can rescue vulva morphology defects and distal tip cell migration after cdc-42 RNAi, yet cannot restore sheath cell actin organization or ovulation. Disruption of Rac yields the same phenotype in distal tip cells regardless of α integrin cytoplasmic tail composition. Taken together, the cytoplasmic tails of α integrins can bypass signaling from members of the Rho family of GTPases during development.

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Source
http://dx.doi.org/10.1016/j.mod.2014.12.006DOI Listing

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