AI Article Synopsis

  • Src activation is crucial in cancer development, with just five minutes being enough for transformation and cancer stem cell maintenance.
  • Various tyrosine kinase receptors play a key role in activating Src through ligand binding, while some intracellular receptor isoforms can activate Src without this binding.
  • The i21-VEGFR-1 isoform in breast cancer cells can upregulate Src activation via the Notch signaling pathway, suggesting potential therapeutic strategies using Notch inhibitors and retinoic acid for invasive breast cancer.

Article Abstract

One of the best examples of the renaissance of Src as an open door to cancer has been the demonstration that just five min of Src activation is sufficient for transformation and also for induction and maintenance of cancer stem cells [1]. Many tyrosine kinase receptors, through the binding of their ligands, become the keys that unlock the structure of Src and activate its oncogenic transduction pathways. Furthermore, intracellular isoforms of these receptors, devoid of any tyrosine kinase activity, still retain the ability to unlock Src. This has been shown with a truncated isoform of KIT (tr-KIT) and a truncated isoform of VEGFR-1 (i21-VEGFR-1), which are intracellular and require no ligand binding, but are nonetheless able to activate Src and induce cell migration and invasion of cancer cells. Expression of the i21-VEGFR-1 is upregulated by the Notch signaling pathway and repressed by miR-200c and retinoic acid in breast cancer cells. Both Notch inhibitors and retinoic acid have been proposed as potential therapies for invasive breast cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3980740PMC
http://dx.doi.org/10.3390/cells3010092DOI Listing

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