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Ikeda M, et al.  (2008) The rim101 pathway is involved in rsb1 expression induced by altered lipid asymmetry. Mol Biol Cell 19(5):1922-31

Abstract: Monitoring Editor: Sean Munro Biological membranes consist of lipid bilayers. The lipid compositions between the two leaflets of the plasma membrane differ, generating lipid asymmetry. Maintenance of proper lipid asymmetry is physiologically quite important, and its collapse induces several cellular responses including apoptosis and platelet coagulation. Thus, a change in lipid asymmetry must be restored to maintain "lipid asymmetry homeostasis". However, to date no lipid asymmetry-sensing proteins or any related downstream signaling pathways have been identified. We recently demonstrated that expression of the putative yeast sphingoid long-chain base transporter/translocase Rsb1 is induced when glycerophospholipid asymmetry is altered. Using mutant screening, we determined that the pH-responsive Rim101 pathway, the protein kinase Mck1, and the transcription factor Mot3 all act in lipid asymmetry signaling, and that the Rim101 pathway was activated in response to a change in lipid asymmetry. The activated transcription factor Rim101 induces Rsb1 expression via repression of another transcription repressor, Nrg1. Changes in lipid asymmetry are accompanied by cell surface exposure of negatively charged phospholipids; we speculate that the Rim101 pathway recognizes the surface charges.

Status: Published Type: Journal Article PubMed ID: 18287536

Topics addressed in this paper

Number of different genes curated to this paper: 23

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Topics Genes linked to topics (#1 - 10 )
DFG16 DID4 IME1 LEM3 MCK1 MOT3 NRG1 PDR1 PDR5 RIM101
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Topics Genes linked to topics (#11 - 20 )
RIM13 RIM20 RIM21 RIM8 RIM9 RSB1 SNF7 VPS20 VPS24 VPS25
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Topics Genes linked to topics (#21 - 23 )
VPS28 YGR122W YOR1
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