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Co-immunoprecipitation Assay for Studying Functional Interactions Between Receptors and Enzymes
Published on: September 28, 2018
Receptor-type protein tyrosine phosphatase κ directly dephosphorylates CD133 and regulates downstream AKT activation
O Shimozato1, M Waraya1, K Nakashima1
1Division of Biochemistry and Molecular Carcinogenesis, Chiba Cancer Center Research Institute, Chiba, Japan.
Abstract:
Although CD133 has been considered to be a molecular marker for cancer stem cells, its functional roles in tumorigenesis remain unclear. We here examined the molecular basis behind CD133-mediated signaling. Knockdown of CD133 resulted in the retardation of xenograft tumor growth of colon cancer-derived HT-29 and LoVo cells accompanied by hypophosphorylation of AKT, which diminished β-catenin/T-cell factor-mediated CD44 expression. As tyrosine residues of CD133 at positions 828 and 852 were phosphorylated in HT-29 and SW480 cells, we further addressed the significance of this phosphorylation in the tumorigenesis of SW480 cells expressing mutant CD133, with substitution of these tyrosine residues by glutamate (CD133-EE) or phenylalanine (CD133-FF). Forced expression of CD133-EE promoted much more aggressive xenograft tumor growth relative to wild-type CD133-expressing cells accompanied by hyperphosphorylation of AKT; however, CD133-FF expression had negligible effects on AKT phosphorylation and xenograft tumor formation. Intriguingly, the tyrosine phosphorylation status of CD133 was closely linked to the growth of SW480-derived spheroids. Using yeast two-hybrid screening, we finally identified receptor-type protein tyrosine phosphatase κ (PTPRK) as a binding partner of CD133. In vitro studies demonstrated that PTPRK associates with the carboxyl-terminal region of CD133 through its intracellular phosphatase domains and also catalyzes dephosphorylation of CD133 at tyrosine-828/tyrosine-852. Silencing of PTPRK elevated the tyrosine phosphorylation of CD133, whereas forced expression of PTPRK reduced its phosphorylation level markedly and abrogated CD133-mediated AKT phosphorylation. Endogenous CD133 expression was also closely associated with higher AKT phosphorylation in primary colon cancer cells, and ectopic expression of CD133 enhanced AKT phosphorylation. Furthermore, lower PTPRK expression significantly correlated with the poor prognosis of colon cancer patients with high expression of CD133. Thus, our present findings strongly indicate that the tyrosine phosphorylation of CD133, which is dephosphorylated by PTPRK, regulates AKT signaling and has a critical role in colon cancer progression.
Insights
The tyrosine phosphorylation of CD133, regulated by PTPRK, influences AKT signaling and colon cancer progression. This finding clarifies CD133
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- CD133 is a marker for cancer stem cells, but its role in tumor development is not fully understood.
- Understanding CD133 signaling is crucial for developing targeted cancer therapies.
Purpose of the Study:
- To investigate the molecular mechanisms of CD133-mediated signaling in colon cancer.
- To elucidate the functional significance of CD133 tyrosine phosphorylation in tumorigenesis.
Main Methods:
- CD133 knockdown and mutant expression in colon cancer cell lines (HT-29, LoVo, SW480).
- Xenograft tumor growth assays and spheroid formation studies.
- Yeast two-hybrid screening to identify CD133-interacting proteins.
- In vitro phosphatase assays and Western blotting to assess protein phosphorylation.
- Analysis of primary colon cancer patient data.
Main Results:
- CD133 knockdown reduced tumor growth and AKT phosphorylation.
- Mutant CD133 (CD133-EE) enhanced tumor growth and AKT phosphorylation, while CD133-FF had minimal effect.
- PTPRK was identified as a CD133-binding protein that dephosphorylates CD133 at Tyr828/Tyr852.
- PTPRK silencing increased CD133 phosphorylation, while PTPRK overexpression decreased it and inhibited AKT phosphorylation.
- High CD133 expression correlated with poor prognosis in colon cancer patients with low PTPRK expression.
Conclusions:
- Tyrosine phosphorylation of CD133 is critical for colon cancer progression.
- PTPRK dephosphorylates CD133, thereby regulating AKT signaling.
- CD133-PTPRK-AKT axis represents a potential therapeutic target in colon cancer.
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