Lemur tyrosine kinase-2 signalling regulates kinesin light chain-2 phosphorylation and binding of Smad2 cargo
A recent genome wide association study identified the gene encoding lemur tyrosine kinase-2 ( LMTK2 ) as a susceptibility gene for prostate cancer. The identified genetic alteration is within intron 9 but the mechanisms by which LMTK2 may impact upon prostate cancer are not clear because the functio...
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Veröffentlicht in: | Oncogene 2011-09, Vol.31 (22), p.2773-2782 |
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Sprache: | eng |
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Zusammenfassung: | A recent genome wide association study identified the gene encoding lemur tyrosine kinase-2 (
LMTK2
) as a susceptibility gene for prostate cancer. The identified genetic alteration is within intron 9 but the mechanisms by which LMTK2 may impact upon prostate cancer are not clear because the functions of LMTK2 are poorly understood. Here, we show that LMTK2 regulates a known pathway that controls phosphorylation of kinesin-1 light chain-2 (KLC2) by glycogen synthase kinase-3β (GSK3β). KLC2 phosphorylation by GSK3β induces release of cargo from KLC2. LMTK2 signals via protein phosphatase-1C (PP1C) to increase inhibitory phosphorylation of GSK3β on serine-9 that reduces KLC2 phosphorylation and promotes binding of the known KLC2 cargo Smad2. Smad2 signals to the nucleus in response to transforming growth factor-β (TGFβ) receptor stimulation and transport of Smad2 by kinesin-1 is required for this signalling. We show that siRNA loss of LMTK2 not only reduces binding of Smad2 to KLC2 but also inhibits TGFβ-induced Smad2 signalling. Thus, LMTK2 may regulate the activity of kinesin-1 motor function and Smad2 signalling. |
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ISSN: | 0950-9232 1476-5594 |
DOI: | 10.1038/onc.2011.437 |