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Decorin differentially modulates the activity of insulin receptor isoform A ligands
Alaide Morcavallo1, Simone Buraschi2, Shi-Qiong Xu3
1Department of Urology and Biology of Prostate Cancer Program, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA 19107, USA; Department of Health, Endocrinology, University of Catanzaro, 88100 Catanzaro, Italy.
Abstract:
The proteoglycan decorin, a key component of the tumor stroma, regulates the action of several tyrosine-kinase receptors, including the EGFR, Met and the IGF-IR. Notably, the action of decorin in regulating the IGF-I system differs between normal and transformed cells. In normal cells, decorin binds with high affinity to both the natural ligand IGF-I and the IGF-I receptor (IGF-IR) and positively regulates IGF-IR activation and downstream signaling. In contrast, in transformed cells, decorin negatively regulates ligand-induced IGF-IR activation, downstream signaling and IGF-IR-dependent biological responses. Whether decorin may bind another member of the IGF-I system, the insulin receptor A isoform (IR-A) and its cognate ligands, insulin, IGF-II and proinsulin, have not been established. Here we show that decorin bound with high affinity insulin and IGF-II and, to a lesser extent, proinsulin and IR-A. We utilized as a cell model system mouse embryonic fibroblasts homozygous for a targeted disruption of the Igf1r gene (designated R(-) cells) which were stably transfected with a human construct harboring the IR-A isoform of the receptor. Using these R(-)/IR-A cells, we demonstrate that decorin did not affect ligand-induced phosphorylation of the IR-A but enhanced IR-A downregulation after prolonged IGF-II stimulation without affecting insulin and proinsulin-dependent effects on IR-A stability. In addition, decorin significantly inhibited IGF-II-mediated activation of the Akt pathways, without affecting insulin and proinsulin-dependent signaling. Notably, decorin significantly inhibited IGF-II-mediated cell proliferation of R(-)/IR-A cells but affected neither insulin- nor proinsulin-dependent mitogenesis. Collectively, these results suggest that decorin differentially regulates the action of IR-A ligands. Decorin preferentially inhibits IGF-II-mediated biological responses but does not affect insulin- or proinsulin-dependent signaling. Thus, decorin loss may contribute to tumor initiation and progression in malignant neoplasms which depend on an IGF-II/IR-A autocrine loop.
Insights
Decorin differentially regulates the insulin receptor A isoform (IR-A) and its ligands. It inhibits insulin-like growth factor-II (IGF-II)-mediated responses while sparing insulin and proinsulin signaling, impacting tumor growth.
Area of Science:
- Cell biology
- Molecular oncology
- Biochemistry
Background:
- Decorin, a proteoglycan in tumor stroma, modulates tyrosine-kinase receptors like EGFR, Met, and IGF-IR.
- Decorin's role in the IGF-I system differs between normal and transformed cells, negatively regulating IGF-IR in cancer.
- The interaction of decorin with the insulin receptor A isoform (IR-A) and its ligands (insulin, IGF-II, proinsulin) is not well understood.
Purpose of the Study:
- To investigate decorin's binding affinity and functional effects on the IR-A and its ligands.
- To determine if decorin differentially regulates signaling pathways activated by IR-A ligands.
- To explore decorin's impact on IGF-II/IR-A autocrine loops in cancer progression.
Main Methods:
- Utilized mouse embryonic fibroblasts lacking IGF-IR (R(-) cells) stably transfected with human IR-A (R(-)/IR-A cells).
- Assessed decorin binding to IR-A, insulin, IGF-II, and proinsulin using affinity assays.
- Analyzed ligand-induced IR-A phosphorylation, downregulation, Akt pathway activation, and cell proliferation.
Main Results:
- Decorin bound with high affinity to insulin and IGF-II, and to a lesser extent, proinsulin and IR-A.
- Decorin did not affect IR-A phosphorylation but enhanced IR-A downregulation upon prolonged IGF-II stimulation.
- Decorin significantly inhibited IGF-II-mediated Akt activation and cell proliferation, but not insulin- or proinsulin-dependent signaling.
Conclusions:
- Decorin differentially regulates IR-A activity, preferentially inhibiting IGF-II-mediated biological responses.
- Decorin's inhibitory effect on IGF-II/IR-A signaling suggests a role in preventing tumor initiation and progression.
- Loss of decorin may contribute to malignant neoplasms reliant on IGF-II/IR-A autocrine signaling.
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