Literature DB >> 17227793

Reciprocal regulation of Rac1 and Rho1 in Drosophila circulating immune surveillance cells.

Michael J Williams1, Mazen S Habayeb, Dan Hultmark.   

Abstract

In many cell types it is evident that the small GTPases Rac and Rho regulate each other's activities. What is unclear is exactly how this regulation occurs. To further elucidate this interaction we examined the activities of Rac1 and Rho1 in Drosophila cellular immune surveillance cells. In larvae the cellular immune response involves circulating cells (hemocytes) that can be recruited from a hematopoietic organ located behind the brain, as well as a sessile population found just underneath the larval cuticle. We demonstrate for the first time that Rho-kinase activation requires both Rho1 and the Drosophila c-Jun N-terminal kinase (Basket). We also show that Rac1, via Basket, regulates Rho1 activity, possibly by inhibiting RhoGAPp190. In the reciprocal pathway, co-expression of dominant negative Rho-kinase and constitutive active Rho1 induces a Rac1-like phenotype. This induction requires the formin Diaphanous. Co-expression of dominant negative Rho-kinase and constitutive active Rho1 also induces filopodia formation, with Diaphanous enriched at the tips. The Rac1-like phenotypes, and filopodia formation, could be blocked by co-expression of dominant negative Rac1. Finally, though dominant negative Rac1 is able to block filopodia formation in the overexpression experiments, only Rac2 is necessary for filopodia formed by hemocytes after parasitization.

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Year:  2007        PMID: 17227793     DOI: 10.1242/jcs.03341

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  23 in total

1.  Balanced Rac1 and RhoA activities regulate cell shape and drive invagination morphogenesis in epithelia.

Authors:  Bharesh K Chauhan; Ming Lou; Yi Zheng; Richard A Lang
Journal:  Proc Natl Acad Sci U S A       Date:  2011-10-20       Impact factor: 11.205

2.  Schnurri regulates hemocyte function to promote tissue recovery after DNA damage.

Authors:  Ellen Miriam Kelsey; Xi Luo; Katja Brückner; Heinrich Jasper
Journal:  J Cell Sci       Date:  2012-01-24       Impact factor: 5.285

3.  DRhoGEF2 and diaphanous regulate contractile force during segmental groove morphogenesis in the Drosophila embryo.

Authors:  Shai Mulinari; Mojgan Padash Barmchi; Udo Häcker
Journal:  Mol Biol Cell       Date:  2008-02-20       Impact factor: 4.138

4.  Rho-guanine nucleotide exchange factors during development: Force is nothing without control.

Authors:  Shai Mulinari; Udo Häcker
Journal:  Small GTPases       Date:  2010-07

5.  Sequential immunosuppressive activities of bacterial secondary metabolites from the entomopahogenic bacterium Xenorhabdus nematophila.

Authors:  Seonghyeon Eom; Youngjin Park; Yonggyun Kim
Journal:  J Microbiol       Date:  2014-02-01       Impact factor: 3.422

6.  The small GTPases RhoA and Rac1 regulate cerebellar development by controlling cell morphogenesis, migration and foliation.

Authors:  Shalaka Mulherkar; Mohammad Danish Uddin; Anthony D Couvillon; Roy V Sillitoe; Kimberley F Tolias
Journal:  Dev Biol       Date:  2014-08-14       Impact factor: 3.582

7.  ROCK1 feedback regulation of the upstream small GTPase RhoA.

Authors:  Alan T Tang; William B Campbell; Kasem Nithipatikom
Journal:  Cell Signal       Date:  2012-03-11       Impact factor: 4.315

8.  Cannabinoid receptor type 1 (CB1) activation inhibits small GTPase RhoA activity and regulates motility of prostate carcinoma cells.

Authors:  Kasem Nithipatikom; Ana Doris Gomez-Granados; Alan T Tang; Adam W Pfeiffer; Carol L Williams; William B Campbell
Journal:  Endocrinology       Date:  2011-11-15       Impact factor: 4.736

Review 9.  Formins in development: orchestrating body plan origami.

Authors:  Raymond Liu; Elena V Linardopoulou; Gregory E Osborn; Susan M Parkhurst
Journal:  Biochim Biophys Acta       Date:  2008-10-14

10.  Formin-dependent synaptic growth: evidence that Dlar signals via Diaphanous to modulate synaptic actin and dynamic pioneer microtubules.

Authors:  Catherine Pawson; Benjamin A Eaton; Graeme W Davis
Journal:  J Neurosci       Date:  2008-10-29       Impact factor: 6.167

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