Article
- The EMBO Journal (2004) 23, 2358 - 2368
- doi:10.1038/sj.emboj.7600253
Published online: 27 May 2004
Subject Categories:
A unique pathway for sustained neurotrophin signaling through an ankyrin-rich membrane-spanning protein
Juan Carlos Arévalo1, Hiroko Yano1, Kenneth K Teng2 and Moses V Chao1
- Molecular Neurobiology Program, Departments of Cell Biology, Physiology and Neuroscience, Skirball Institute of Biomolecular Medicine, New York University School of Medicine, New York, NY, USA
- Department of Medicine, Weill Medical College of Cornell University, New York, NY, USA
Correspondence to:
Moses V Chao, Skirball Institute of Biomolecular Medicine, New York University School of Medicine, 540 First Avenue, New York, NY 10016, USA. Tel.: +1 212 263 0721; Fax: +1 212 263 0723; E-mail: chao@saturn.med.nyu.edu
Received 28 November 2003; Accepted 3 May 2004
Abstract
A major question in cell biology is how molecular specificity is achieved by different growth factor receptors that activate apparently identical signaling events. For the neurotrophin family, a distinguishing feature is the ability to maintain a prolonged duration of signal transduction. However, the mechanisms by which neurotrophin receptors assemble such a sustained signaling complex are not understood. Here we report that an unusual ankyrin-rich transmembrane protein (ARMS+kidins220) is closely associated with Trk receptor tyrosine kinases, and not the EGF receptor. This association requires interactions between transmembrane domains of Trk and ARMS. ARMS is rapidly tyrosine phosphorylated after binding of neurotrophins to Trk receptors and provides a docking site for the CrkL–C3G complex, resulting in Rap1-dependent sustained ERK activation. Accordingly, disruption of Trk–ARMS or the ARMS–CrkL interaction with dominant-negative ARMS mutants, or treatment with small interference RNA against ARMS substantially reduce neurotrophin-elicited signaling to ERK, but without any effect upon Ras or Akt activation. These findings suggest that ARMS acts as a major and neuronal-specific platform for prolonged MAP kinase signaling by neurotrophins.
Keywords:
- BDNF,
- Crk,
- NGF,
- Rap1,
- signal transduction
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