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Published on: June 17, 2014
Decorin antagonizes Met receptor activity and down-regulates {beta}-catenin and Myc levels
Simone Buraschi1, Nutan Pal, Nadia Tyler-Rubinstein
1Department of Pathology, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.
Abstract:
A theme emerging during the past few years is that members of the small leucine-rich proteoglycan gene family affect cell growth by interacting with multiple receptor tyrosine kinases (RTKs), mostly by a physical down-regulation of the receptors, thereby depriving tumor cells of pro-survival signals. Decorin binds and down-regulates several RTKs, including Met, the receptor for hepatocyte growth factor. Here we demonstrate that decorin blocks several biological activities mediated by the Met signaling axis, including cell scatter, evasion, and migration. These effects were mediated by a profound down-regulation of noncanonical β-catenin levels. In addition, Myc, a downstream target of β-catenin, was markedly down-regulated by decorin, whereas phosphorylation of Myc at threonine 58 was markedly induced. The latter is known to destabilize Myc and target it for proteasomal degradation. We also discovered that systemic delivery of decorin using three distinct tumor xenograft models caused down-regulation of Met and a concurrent suppression of β-catenin and Myc levels. We found that decorin protein core labeled with the near infrared dye IR800 specifically targeted the tumor cells expressing Met. Even 68-h post-injection, decorin was found to reside within the tumor xenografts with little or no binding to other tissues. Collectively, our results indicate a role for a secreted proteoglycan in suppressing the expression of key oncogenic factors required for tumor progression.
Insights
Decorin, a small leucine-rich proteoglycan, suppresses tumor growth by down-regulating Met receptor tyrosine kinase (RTK) signaling. This leads to reduced levels of key oncogenic factors like β-catenin and Myc, inhibiting tumor cell progression.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Small leucine-rich proteoglycans regulate cell growth by interacting with receptor tyrosine kinases (RTKs).
- Decorin, a member of this family, binds and down-regulates RTKs, including Met, the receptor for hepatocyte growth factor.
Purpose of the Study:
- To investigate decorin's effect on Met signaling and tumor progression.
- To determine decorin's mechanism of action in suppressing tumor cell activities.
Main Methods:
- Assessed decorin's impact on Met-mediated biological activities (cell scatter, evasion, migration).
- Analyzed downstream signaling pathways involving β-catenin and Myc.
- Evaluated systemic decorin delivery in tumor xenograft models.
- Utilized fluorescently labeled decorin to track tumor targeting.
Main Results:
- Decorin blocked Met-mediated cell scatter, evasion, and migration.
- Decorin profoundly down-regulated β-catenin and Myc levels, while inducing Myc phosphorylation at threonine 58.
- Systemic decorin delivery suppressed Met, β-catenin, and Myc in xenograft models.
- Labeled decorin specifically targeted Met-expressing tumor cells with minimal off-target binding.
Conclusions:
- Decorin effectively suppresses tumor progression by inhibiting Met signaling and down-regulating key oncogenic factors.
- Decorin demonstrates potential as a therapeutic agent for targeting RTK-driven tumors.
- Targeted delivery of decorin to tumors highlights its specificity and therapeutic promise.
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