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Published on: December 26, 2019
Extra cellular matrix derived metabolite regulates angiogenesis by FasL mediated apoptosis
Raj K Verma1, Venugopal Gunda, Smita C Pawar
1Irma Lerma Rangel College of Pharmacy, Texas A&M Health Science Center, Kingsville, Texas, United States of America.
Object:
Antiangiogenic treatments are beginning to give promising outcomes in many vascular diseases including tumor angiogenesis. In this current study the antiangiogenic and pro-apoptotic actions of α1(IV)NC1 and its N- and C- peptides α1S1(IV)NC1, α1S2(IV)NC1 were investigated in-vitro and in-vivo.
Study Method:
Endothelial cells (ECs) were treated with α1(IV)NC1, α1S1(IV)NC1, α1S2(IV)NC1 and in-vitro proliferation, migration, tube formation and apoptotic assays were executed. FasL, Fas, Caspase-8, -3 and PARP activations were studied using immunoblotting analysis using specific antibodies. Also the in-vivo antiangiogenic and pro-apoptotic effects were tested using α1(IV)NC1 in a mice model.
Results:
Like α1(IV)NC1, its N- and C- terminal α1S2(IV)NC1 and α1S1(IV)NC1 domains posses anti-proliferative, pro-apoptotic activity and inhibit ECs migration and tube formation in-vitro. Both α1S1(IV)NC1 and α1S2(IV)NC1 domains promote apoptosis by activating FasL and down stream apoptotic events including activation of caspase-8, -3 and PARP cleavage in a dose dependent manner in-vitro in ECs. Tumors in mice showed apoptotic TUNEL positive microvasculature upon α1(IV)NC1 treatment, indicating inhibition of tumor angiogenesis and tumor growth. Further, the antitumor activity of α1(IV)NC1 was abrogated when caspase-3 inhibitor was used. These results conform additional properties of α1(IV)NC1 as an endogenous angioinhibitor that induces apoptosis in-vitro and in-vivo by activating FasL mediated caspase-3.
Significance:
α1(IV)NC1 and its N- and C- terminal α1S1(IV)NC1 and α1S2(IV)NC1 domains also posses pro-apoptotic and angioinhibitory activity in-vitro and in-vivo. α1(IV)NC1 regulates tumor angiogenesis by activating FasL mediated apoptosis in-vitro and in-vivo. These results demonstrate that α1(IV)NC1 and its peptides inhibit neo-vascular diseases.
Insights
Alpha1(IV)NC1 and its peptides demonstrate antiangiogenic and pro-apoptotic properties, inhibiting endothelial cell functions and tumor growth. This angioinhibitor activates FasL-mediated apoptosis, offering potential for treating vascular diseases.
Area of Science:
- Biochemistry
- Molecular Biology
- Vascular Biology
Background:
- Antiangiogenic therapies show promise for vascular diseases, including tumor angiogenesis.
- Alpha1(IV)NC1 is an endogenous protein with potential therapeutic applications.
Purpose of the Study:
- To investigate the antiangiogenic and pro-apoptotic actions of alpha1(IV)NC1 and its N- and C-terminal peptides (alpha1S1(IV)NC1, alpha1S2(IV)NC1) in vitro and in vivo.
- To elucidate the molecular mechanisms underlying their effects on endothelial cells and tumor angiogenesis.
Main Methods:
- In vitro assays: endothelial cell proliferation, migration, and tube formation.
- Apoptosis assays and immunoblotting to analyze FasL, Fas, Caspase-8, -3, and PARP activation.
- In vivo studies using a mouse model to assess antiangiogenic and pro-apoptotic effects of alpha1(IV)NC1.
Main Results:
- Alpha1(IV)NC1, alpha1S1(IV)NC1, and alpha1S2(IV)NC1 exhibited anti-proliferative and pro-apoptotic activity, inhibiting endothelial cell migration and tube formation in vitro.
- These peptides induced apoptosis by activating FasL and downstream caspases (-8, -3) and PARP cleavage in a dose-dependent manner.
- In vivo, alpha1(IV)NC1 treatment resulted in apoptotic microvasculature in tumors, inhibiting angiogenesis and tumor growth, an effect abrogated by caspase-3 inhibition.
Conclusions:
- Alpha1(IV)NC1 and its terminal peptides possess significant pro-apoptotic and angioinhibitory activities in vitro and in vivo.
- Alpha1(IV)NC1 regulates tumor angiogenesis via FasL-mediated apoptosis, highlighting its role as an endogenous angioinhibitor.
- These findings suggest that alpha1(IV)NC1 and its peptides are promising candidates for inhibiting neovascular diseases.
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