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Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
Tyrosine kinase receptor-activated signal transduction pathways which lead to oncogenesis
1Department of Pharmacology and Toxicology, College of Pharmacy, The University of Arizona, Tucson 85721, USA.
Abstract:
Oncogenesis is a complicated process involving signal transduction pathways that mediate many different physiological events. Typically, oncogenes cause unregulated cell growth and this phenotype has been attributed to the growth-stimulating activity of oncogenes such as ras and src. In recent years, much research effort has focused on proteins that function downstream of Ras, leading to the identification of the Ras/Raf/MAPK pathway, because activation of this pathway leads to cellular proliferation. Activated receptor tyrosine kinases (RTKs) also utilize this pathway to mediate their growth-stimulating effects. However, RTKs activate many other signaling proteins that are not involved in the cellular proliferation process, per se and we are learning that these pathways also contribute to the oncogenic process. In fact, RTKs and many of the proteins involved in RTK-dependent signal transduction can also function as oncogenes. For example, the catalytic subunit of phosphoinositide 3-kinase (P13-K) was recently identified as an oncogenic protein. The scope of pathways that are activated by oncogenic RTKs is expanding. Thus, not only do RTKs activate Ras-dependent pathways that drive proliferation, RTKs activate P13-K-dependent pathways which also contribute to the oncogenic mechanism. P13-K can initiate changes in gene transcription, cytoskeletal changes through beta-catenin, changes in cell motility through the tumor suppressor, adenomatous polyposis coli (APC), and phosphorylation of BAD, a protein involved in apoptotic and antiapoptotic signaling. There is also cross-talk between RTKs and the oncostatin cytokine receptor which may positively and negatively influence oncogenesis. For this review, we will focus on oncogenic RTKs and the network of cellular proteins that are activated by RTKs because multiple, divergent pathways are responsible for oncogenesis.
Insights
Oncogenic receptor tyrosine kinases (RTKs) activate multiple signaling pathways beyond cell proliferation, contributing to cancer development. These pathways, including Ras/Raf/MAPK and phosphoinositide 3-kinase (PI3K), highlight the complex network driving oncogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Oncogenesis involves complex signal transduction pathways, with oncogenes like Ras and Src driving unregulated cell growth.
- Receptor tyrosine kinases (RTKs) are crucial in mediating cellular proliferation via pathways such as Ras/Raf/MAPK.
- Emerging evidence indicates RTKs activate diverse signaling proteins beyond proliferation, contributing significantly to oncogenic processes.
Purpose of the Study:
- To review the role of oncogenic RTKs in cancer.
- To explore the network of cellular proteins activated by RTKs.
- To understand how divergent pathways activated by RTKs contribute to oncogenesis.
Main Methods:
- Literature review focusing on oncogenic RTKs and their downstream signaling.
- Analysis of pathways including Ras/Raf/MAPK and phosphoinositide 3-kinase (PI3K).
- Examination of cross-talk between RTKs and other signaling molecules.
Main Results:
- RTKs activate not only proliferation pathways (Ras/Raf/MAPK) but also PI3K-dependent pathways.
- PI3K activation by RTKs influences gene transcription, cell motility, and apoptosis.
- Proteins involved in RTK signaling, such as the catalytic subunit of PI3K, can function as oncogenes.
Conclusions:
- Oncogenic RTKs activate multiple, divergent signaling pathways crucial for cancer development.
- Understanding the intricate network of RTK-activated pathways is essential for comprehending oncogenesis.
- Further research into these pathways may reveal novel therapeutic targets for cancer treatment.
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