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Updated: Apr 16, 2026

Monitoring Functionality and Morphology of Vasculature Recruited by Factors Secreted by Fast-growing Tumor-generating Cells
Published on: November 23, 2014
The native structure of annexin A2 peptides in hydrophilic environment determines their anti-angiogenic effects
Aase M Raddum1, Hanne Hollås1, Igor A Shumilin2
1Department of Biomedicine, University of Bergen.
Abstract:
The progression of aggressive cancer occurs via angiogenesis and metastasis makes these processes important targets for the development of anti-cancer agents. However, recent studies have raised the concern that selective inhibition of angiogenesis results in a switch towards increased tumour growth and metastasis. Since Annexin A2 (AnxA2) is involved in both angiogenesis and metastasis, it may serve as an ideal target for the simultaneous inhibition of both processes. Based on the discovery that domains I (D(I)) and IV (D(IV)) of AnxA2 are potent inhibitors of angiogenesis, we designed seven peptides derived from these domains based on AnxA2 crystal structures. The peptides were expressed as fusion peptides to increase their folding and solubility. Light scattering, far-UV circular dichroism and thermal transition analyses were employed to investigate their aggregation tendencies, α-helical propensity and stability, respectively. 2,2,2-trifluoroethanol (50%) increased the α-helical propensities of all peptides, indicating that they may favour a hydrophobic environment, but did not enhance their thermal stability. D(I)-P2 appears to be the most stable and folded peptide in a hydrophilic environment. The secondary structure of D(I)-P2 was confirmed by nuclear magnetic resonance spectra. The effect of the seven AnxA2 peptides on the formation and integrity of capillary-like networks was studied in a co-culture system mimicking many of the angiogenesis-related processes. Notably, D(I)-P2 inhibited significantly network formation in this system, indicating that the folded D(I)-P2 peptide interferes with vascular endothelial growth factor-dependent pro-angiogenic processes. Thus, this peptide has the potential of being developed further as an anti-angiogenic drug.
Insights
Researchers developed novel peptides targeting Annexin A2 (AnxA2) to inhibit both cancer angiogenesis and metastasis. The peptide D(I)-P2 showed significant anti-angiogenic potential, offering a promising new avenue for cancer drug development.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Cancer progression relies on angiogenesis and metastasis, making them key therapeutic targets.
- Selective angiogenesis inhibitors may paradoxically increase tumor growth and metastasis.
- Annexin A2 (AnxA2) is implicated in both angiogenesis and metastasis, presenting it as a dual-target candidate.
Purpose of the Study:
- To design and characterize peptides derived from Annexin A2 domains I and IV as potential inhibitors of angiogenesis and metastasis.
- To evaluate the stability, folding, and anti-angiogenic activity of these novel peptides.
Main Methods:
- Peptide design based on AnxA2 crystal structures and expression as fusion peptides.
- Characterization using light scattering, circular dichroism, and thermal transition analyses.
- Assessment of anti-angiogenic activity via a co-culture system and confirmation of secondary structure by NMR.
Main Results:
- Seven peptides were designed; D(I)-P2 exhibited optimal stability and folding in a hydrophilic environment.
- 2,2,2-trifluoroethanol enhanced α-helical propensity but not thermal stability for all peptides.
- D(I)-P2 significantly inhibited capillary-like network formation, indicating interference with vascular endothelial growth factor-dependent processes.
Conclusions:
- The peptide D(I)-P2 demonstrates significant anti-angiogenic properties.
- D(I)-P2 holds potential for further development as a novel anti-cancer therapeutic agent targeting angiogenesis.
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