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A Low Molecular Weight Protein from the Sea Anemone Anemonia viridis with an Anti-Angiogenic Activity

机译:一种来自海葵海葵的低分子量蛋白,具有抗血管生成活性

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Sea anemones are a remarkable source of active principles due to a decentralized venom system. New blood vessel growth or angiogenesis is a very promising target against cancer, but the few available antiangiogenic compounds have limited efficacy. In this study, a protein fraction, purified from tentacles of Anemonia viridis , was able to limit endothelial cells proliferation and angiogenesis at low concentration (14 nM). Protein sequences were determined with Edman degradation and mass spectrometry in source decay and revealed homologies with Blood Depressing Substance (BDS) sea anemones. The presence of a two-turn alpha helix observed with circular dichroism and a trypsin activity inhibition suggested that the active principle could be a Kunitz-type inhibitor, which may interact with an integrin due to an Arginine Glycin Aspartate (RGD) motif. Molecular modeling showed that this RGD motif was well exposed to solvent. This active principle could improve antiangiogenic therapy from existing antiangiogenic compounds binding on the Vascular Endothelial Growth Factor (VEGF).
机译:由于分散的毒液系统,海葵是有效成分的重要来源。新血管生长或血管生成是抗癌的非常有希望的靶标,但是很少有可用的抗血管生成化合物具有有限的功效。在这项研究中,从绿色大花银莲花触角纯化的蛋白质部分能够以低浓度(14 nM)限制内皮细胞的增殖和血管生成。蛋白序列通过Edman降解和质谱法在源衰变中进行测定,并与降血压物质(BDS)海葵揭示同源性。观察到具有圆二色性和胰蛋白酶活性抑制的两转α螺旋的存在表明,活性成分可能是Kunitz型抑制剂,由于精氨酸天冬氨酸(RGD)基序,它可能与整联蛋白相互作用。分子模型表明该RGD基序充分暴露于溶剂中。该活性成分可以从与血管内皮生长因子(VEGF)结合的现有抗血管生成化合物改善抗血管生成疗法。

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