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Induction of Adhesion-dependent Signals Using Low-intensity Ultrasound
Published on: May 8, 2012
Syndecan-1 couples the insulin-like growth factor-1 receptor to inside-out integrin activation
DeannaLee M Beauvais1, Alan C Rapraeger
1Department of Pathology and Laboratory Medicine, University of Wisconsin-Madison, 1111 Highland Avenue, Madison, WI 53705, USA.
Abstract:
Syndecan-1 (Sdc1) engages and activates the αvβ3 (and/or αvβ5) integrin when clustered in human carcinoma and endothelial cells. Although the engagement is extracellular, the activation mechanism is cytoplasmic. This talin-dependent, inside-out signaling pathway is activated downstream of the insulin-like growth factor-1 receptor (IGF1R), whose kinase activity is triggered by Sdc1 clustering. In vitro binding assays using purified receptors suggest that association of the Sdc1 ectodomain with the integrin provides a 'docking face' for IGF1R. IGF1R docking and activation of the associated integrin is blocked by synstatin (SSTN(92-119)), a peptide derived from the integrin engagement site in Sdc1. IGF1R colocalizes with αvβ3 integrin and Sdc1 in focal contacts, but fails to associate with or activate the integrin in cells either lacking Sdc1 or expressing Sdc1(Δ67-121), a mutant that is unable to form the Sdc1-integrin-IGF1R ternary complex. Integrin activation is also blocked by IGF1R inhibitors or by silencing IGF1R or talin expression with small-interfering RNAs (siRNAs). In both cases, expression of the constitutively active talin F23 head domain rescues integrin activation. We recently reported that SSTN(92-119) blocks angiogenesis and impairs tumor growth in mice, therefore this Sdc1-mediated integrin regulatory mechanism might be a crucial regulator of disease processes known to rely on these integrins, including tumor cell metastasis and tumor-induced angiogenesis.
Insights
Syndecan-1 clustering activates integrins via the IGF1R pathway, involving talin. A peptide from Syndecan-1 blocks this, impacting tumor growth and angiogenesis.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Syndecan-1 (Sdc1) is implicated in cell adhesion and signaling.
- Integrins (αvβ3/αvβ5) mediate cell-extracellular matrix interactions crucial for various cellular processes.
Purpose of the Study:
- To elucidate the mechanism by which Syndecan-1 (Sdc1) engages and activates integrins.
- To investigate the role of the insulin-like growth factor-1 receptor (IGF1R) and talin in Sdc1-mediated integrin activation.
Main Methods:
- In vitro binding assays with purified receptors.
- Cellular studies using Sdc1-deficient cells and Sdc1 mutants.
- Gene silencing via small-interfering RNAs (siRNAs) for IGF1R and talin.
- Expression of constitutively active talin domains.
Main Results:
- Sdc1 clustering triggers an inside-out signaling pathway activating integrins, dependent on IGF1R kinase activity and talin.
- Sdc1 ectodomain association with integrin acts as a docking site for IGF1R.
- A peptide (SSTN(92-119)) derived from Sdc1 blocks IGF1R docking and integrin activation.
- IGF1R, Sdc1, and αvβ3 integrin colocalize in focal contacts.
Conclusions:
- Sdc1-mediated integrin activation is a talin-dependent, inside-out signaling process initiated by IGF1R.
- This pathway is critical for processes like tumor angiogenesis and metastasis, as evidenced by the inhibitory effect of SSTN(92-119).
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