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GPCR activation of Ras and PI3Kc in neutrophils depends on PLCb2/b3 and the RasGEF RasGRP4.

Sabine Suire | Charlotte Lécureuil | Karen E Anderson | George Damoulakis | Izabella Niewczas | Keith Davidson | Hervé Guillou | Dingxin Pan | Jonathan Clark | Phillip T Hawkins | Len Stephens
The EMBO journal | 2012

The molecular mechanisms by which receptors regulate the Ras Binding Domains of the PIP3-generating, class I PI3Ks remain poorly understood, despite their importance in a range of biological settings, including tumorigenesis, activation of neutrophils by pro-inflammatory mediators, chemotaxis of Dictyostelium and cell growth in Drosophila. We provide evidence that G protein-coupled receptors (GPCRs) can stimulate PLCb2/b3 and diacylglycerol- dependent activation of the RasGEF, RasGRP4 in neutrophils. The genetic loss of RasGRP4 phenocopies knock-in of a Ras-insensitive version of PI3Kc in its effects on PI3Kc-dependent PIP3 accumulation, PKB activation, chemokinesis and reactive oxygen species (ROS) formation. These results establish a new mechanism by which GPCRs can stimulate Ras, and the broadly important principle that PLCs can control activation of class I PI3Ks.

Pubmed ID: 22728827

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Associated grants

  • Agency: Wellcome Trust, United Kingdom
  • Agency: Biotechnology and Biological Sciences Research Council, United Kingdom
    Id: BBS/E/B/000C0411
  • Agency: Biotechnology and Biological Sciences Research Council, United Kingdom
    Id: C20177
  • Agency: Biotechnology and Biological Sciences Research Council, United Kingdom
    Id: BB/D013593/1

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International Mouse Phenotyping Consortium (IMPC) (tool)

RRID:SCR_006158

Center that produces knockout mice and carries out high-throughput phenotyping of each line in order to determine function of every gene in mouse genome. These mice will be preserved in repositories and made available to scientific community representing valuable resource for basic scientific research as well as generating new models for human diseases.

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