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Trk receptor tyrosine kinases: a bridge between cancer and neural development
1Division of Biochemistry, Chiba Cancer Center Research Institute, 666-2 Nitona, Chuoh-ku, 260-8717, Chiba, Japan. akiranak@chiba-cc.pref.chiba.jp
Abstract:
The proto-oncogene Trks encode the high-affinity receptor tyrosine kinases for neurotrophins of a nerve growth factor (NGF) family. The Trk signals spatiotemporally regulate neural development and maintenance of neural network. However, Trk was originally cloned as an oncogene fused with the tropomyosin gene in the extracellular domain. Accumulating evidence has demonstrated that the rearranged Trk oncogene is often observed in non-neuronal neoplasms such as colon and papillary thyroid cancers, while the signals through the receptors encoded by the proto-oncogene Trks regulate growth, differentiation and apoptosis of the tumors with neuronal origin such as neuroblastoma and medulloblastoma. The intracellular Trk signaling pathway is also different depending on the Trk family receptors, cell types and the grade of transformation. Furthermore, developmentally programmed cell death of neuron, which is largely regulated by neurotrophin signaling, is at least in part controlled by tumor suppressors p53 and p73 as well as their antagonist DeltaNp73. Thus, the Trks and their downstream signaling function in both ontogenesis and oncogenesis. In this short review, the dynamic role of the Trk family receptors signaling in neural development, neurogenic tumors and other cancers will be discussed.
Insights
The Trk receptor tyrosine kinases are crucial for neural development but can also drive cancer. Understanding Trk signaling in both normal development and oncogenesis is key for new cancer therapies.
Area of Science:
- Molecular Biology
- Neuroscience
- Oncology
Background:
- Proto-oncogene Trks encode high-affinity receptor tyrosine kinases for neurotrophins.
- Trk signaling regulates neural development, network maintenance, and neuronal cell death.
- Trk was initially identified as an oncogene fused with tropomyosin.
Purpose of the Study:
- To review the dynamic role of Trk family receptor signaling.
- To discuss Trk signaling in neural development, neurogenic tumors, and other cancers.
Main Methods:
- Literature review of existing evidence on Trk signaling pathways.
- Analysis of Trk's dual role in neurogenesis and oncogenesis.
- Examination of Trk signaling variations across different cell types and cancers.
Main Results:
- Rearranged Trk oncogenes are found in non-neuronal cancers (e.g., colon, thyroid).
- Trk signaling regulates growth, differentiation, and apoptosis in neuronal tumors (e.g., neuroblastoma).
- Intracellular Trk pathways differ based on receptor, cell type, and cancer grade.
Conclusions:
- Trk signaling is pivotal in both normal neural development (ontogenesis) and cancer development (oncogenesis).
- Understanding Trk's complex roles offers therapeutic potential for various cancers.
- Neurotrophin signaling, Trk pathways, and tumor suppressors (p53, p73) interact dynamically.