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Published on: March 17, 2011
CED-5/CED-12 (DOCK/ELMO) can promote and inhibit F-actin formation via distinct motifs that target different GTPases
Thejasvi Venkatachalam1, Sushma Mannimala1, Martha C Soto1
1Department of Pathology and Laboratory Medicine, Rutgers - Robert Wood Johnson Medical School, Piscataway, NJ, USA.
Abstract:
Coordinated activation and inhibition of F-actin supports the movements of morphogenesis. Understanding the proteins that regulate F-actin is important, since these proteins are mis-regulated in diseases like cancer. Our studies of C. elegans embryonic epidermal morphogenesis identified the GTPase CED-10/Rac1 as an essential activator of F-actin. However, we need to identify the GEF, or Guanine-nucleotide Exchange Factor, that activates CED-10/Rac1 during embryonic cell migrations. The two-component GEF, CED-5/CED-12, is known to activate CED-10/Rac1 to promote cell movements that result in the engulfment of dying cells during embryogenesis, and a later cell migration of the larval Distal Tip Cell. It is believed that CED-5/CED-12 powers cellular movements of corpse engulfment and DTC migration by promoting F-actin formation. Therefore, we tested if CED-5/CED-12 was involved in embryonic migrations, and got a contradictory result. CED-5/CED-12 definitely support embryonic migrations, since their loss led to embryos that died due to failed epidermal cell migrations. However, CED-5/CED-12 inhibited F-actin in the migrating epidermis, the opposite of what was expected for a CED-10 GEF. To address how CED-12/CED-5 could have two opposing effects on F-actin, during corpse engulfment and cell migration, we investigated if CED-12 harbors GAP (GTPase Activating Protein) functions. A candidate GAP region in CED-12 faces away from the CED-5 GEF catalytic region. Mutating a candidate catalytic Arginine in the CED-12 GAP region (R537A) altered the epidermal cell migration function, and not the corpse engulfment function. A candidate GEF region on CED-5 faces towards Rac1/CED-10. Mutating Serine-Arginine in CED-5/DOCK predicted to bind and stabilize Rac1 for catalysis, resulted in loss of both ventral enclosure and corpse engulfment. Genetic and expression studies showed the GEF and GAP functions act on different GTPases. Thus, we propose CED-5/CED-12 support the cycling of multiple GTPases, by using distinct domains, to both promote and inhibit F-actin nucleation.
Insights
The study reveals CED-5/CED-12 proteins have dual roles in regulating F-actin during C. elegans development. These proteins promote actin formation for cell migration and corpse engulfment, but also inhibit it, suggesting complex GTPase regulation.
Area of Science:
- Cell Biology
- Developmental Biology
- Molecular Biology
Background:
- Coordinated F-actin dynamics are crucial for morphogenesis.
- Proteins regulating F-actin are implicated in diseases like cancer.
- CED-10/Rac1 GTPase is an essential F-actin activator in C. elegans epidermal morphogenesis.
Conclusions:
- CED-5/CED-12 exhibits opposing effects on F-actin during different developmental processes.
- CED-12 possesses both GEF-activating and GAP inhibitory functions.
- The CED-5/CED-12 complex regulates multiple GTPases through distinct domains.
- This dual regulation promotes and inhibits F-actin nucleation, enabling complex cellular movements.
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