Abstract
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-3 beta (GSK3b). KLC2 phosphorylation by GSK3 beta induces the release of cargo from KLC2. LMTK2 signals via protein phosphatase-1C (PP1C) to increase inhibitory phosphorylation of GSK3 beta 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-beta (TGF beta) receptor stimulation and transport of Smad2 by kinesin-1 is required for this signalling. We show that small interfering RNA loss of LMTK2 not only reduces binding of Smad2 to KLC2, but also inhibits TGF beta-induced Smad2 signalling. Thus, LMTK2 may regulate the activity of kinesin-1 motor function and Smad2 signalling. Oncogene (2012) 31, 2773-2782; doi: 10.1038/onc.2011.437; published online 26 September 2011
Original language | English |
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Pages (from-to) | 2773-2782 |
Number of pages | 10 |
Journal | Oncogene |
Volume | 31 |
Issue number | 22 |
Early online date | 26 Sept 2011 |
DOIs | |
Publication status | Published - 31 May 2012 |