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Published on: September 6, 2024
Src protein-tyrosine kinase structure, mechanism, and small molecule inhibitors
1Blue Ridge Institute for Medical Research, 3754 Brevard Road, Suite 116, Box 19, Horse Shoe, NC 28742-8814, United States.
Abstract:
The physiological Src proto-oncogene is a protein-tyrosine kinase that plays key roles in cell growth, division, migration, and survival signaling pathways. From the N- to C-terminus, Src contains a unique domain, an SH3 domain, an SH2 domain, a protein-tyrosine kinase domain, and a regulatory tail. The chief phosphorylation sites of human Src include an activating pTyr419 that results from phosphorylation in the kinase domain by an adjacent Src molecule and an inhibitory pTyr530 in the regulatory tail that results from phosphorylation by C-terminal Src kinase (Csk) or Chk (Csk homologous kinase). The oncogenic Rous sarcoma viral protein lacks the equivalent of Tyr530 and is constitutively activated. Inactive Src is stabilized by SH2 and SH3 domains on the rear of the kinase domain where they form an immobilizing and inhibitory clamp. Protein kinases including Src contain hydrophobic regulatory and catalytic spines and collateral shell residues that are required to assemble the active enzyme. In the inactive enzyme, the regulatory spine contains a kink or a discontinuity with a structure that is incompatible with catalysis. The conversion of inactive to active Src is accompanied by electrostatic exchanges involving the breaking and making of distinct sets of kinase domain salt bridges and hydrogen bonds. Src-catalyzed protein phosphorylation requires the participation of two Mg(2+) ions. Although nearly all protein kinases possess a common K/E/D/D signature, each enzyme exhibits its unique variations of the protein-kinase reaction template. Bosutinib, dasatinib, and ponatinib are Src/multikinase inhibitors that are approved by the FDA for the treatment of chronic myelogenous leukemia and vandetanib is approved for the treatment of medullary thyroid cancer. The Src and BCR-Abl inhibitors saracatinib and AZD0424, along with the previous four drugs, are in clinical trials for a variety of solid tumors including breast and lung cancers. Both ATP and targeted therapeutic Src protein kinase inhibitors such as dasatinib and ponatinib make hydrophobic contacts with catalytic spine residues and form hydrogen bonds with hinge residues connecting the small and large kinase lobes.
Insights
The Src proto-oncogene is a protein-tyrosine kinase crucial for cell signaling. Inhibitors targeting Src kinase are being developed for various cancers, including chronic myelogenous leukemia and solid tumors.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- The Src proto-oncogene is a protein-tyrosine kinase regulating cell growth, division, migration, and survival.
- Src kinase activity is modulated by phosphorylation at specific sites, including activating pTyr419 and inhibitory pTyr530.
- Dysregulation of Src kinase is implicated in oncogenesis, as seen in the constitutively active Rous sarcoma viral protein.
Purpose of the Study:
- To elucidate the structural and functional mechanisms of Src proto-oncogene activation and inhibition.
- To review the role of Src kinase in cellular signaling pathways and its implications in cancer.
- To summarize the development and therapeutic applications of Src/multikinase inhibitors.
Main Methods:
- Structural analysis of Src kinase domains, including unique, SH3, SH2, and catalytic domains.
- Investigation of phosphorylation sites and their impact on Src kinase activity.
- Review of existing and investigational Src/multikinase inhibitors and their mechanisms of action.
Main Results:
- Inactive Src is stabilized by an inhibitory clamp formed by SH2 and SH3 domains.
- Activation of Src involves structural rearrangements, including electrostatic exchanges and salt bridge modifications.
- Src-catalyzed phosphorylation requires Mg(2+) ions and specific catalytic residues.
Conclusions:
- Src kinase activity is tightly regulated by structural conformation and phosphorylation.
- Targeted Src kinase inhibitors show promise in treating various cancers, including chronic myelogenous leukemia and solid tumors.
- Understanding Src kinase structure-function relationships is key to developing effective cancer therapies.
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