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血管抑素kringle结构域作为内皮细胞迁移拮抗剂的特性研究,内皮细胞迁移是血管生成中的一个重要过程。

Characterization of kringle domains of angiostatin as antagonists of endothelial cell migration, an important process in angiogenesis.

作者信息

Ji W R, Castellino F J, Chang Y, Deford M E, Gray H, Villarreal X, Kondri M E, Marti D N, Llinás M, Schaller J, Kramer R A, Trail P A

机构信息

Department of Oncology Drug Discovery, Bristol-Myers Squibb Pharmaceuticals, Inc., Princeton, New Jersey 08543, USA.

出版信息

FASEB J. 1998 Dec;12(15):1731-8. doi: 10.1096/fasebj.12.15.1731.

Abstract

Angiogenesis is a complex process that involves endothelial cell proliferation, migration, basement membrane degradation, and neovessel organization. Angiostatin, consisting of four homologous triple-disulfide bridged kringle domains, has previously been shown to exhibit profound inhibition of endothelial cell proliferation in vitro and angiogenesis in vivo. It was also demonstrated that angiostatin could suppress the growth of a variety of tumors via the blocking of angiogenesis. The primary aim of our study was to characterize the kringle domains of angiostatin for their inhibitory activities of endothelial cell migration in order to elucidate their contributions to the anti-angiogenic function of angiostatin. In this report, we demonstrate for the first time that the kringles of angiostatin play different roles in inhibiting endothelial cell migration, a crucial process in angiogenesis. Kringle 4, which has only marginal anti-proliferative activity, is among the most potent fragments in inhibiting endothelial cell migration (IC50 of approximately 500 nM). In contrast, kringle 1-3, which is equivalent to angiostatin in inhibiting endothelial cell proliferation, manifests only a modest anti-migratory effect. The combination of kringle 1-3 and kringle 4 results in an anti-migratory activity comparable to that of angiostatin. When kringle 1 is removed from kringle 1-3, the resulting kringle 2-3 becomes more potent than kringle 1-3. This implies that kringle 1, although virtually ineffective in inhibiting endothelial cell migration, may influence the conformation of kringle 1-3 to alter its anti-migratory activity. We also show that disruption of the kringle structure by reducing/alkylating agents markedly attenuates the anti-migratory activity of angiostatin, demonstrating the significance of kringle conformation in maintaining the anti-angiogenic activity of angiostatin. Our data suggest that different kringle domains may contribute to the overall anti-angiogenic function of angiostatin by their distinct anti-migratory activities.

摘要

血管生成是一个复杂的过程,涉及内皮细胞增殖、迁移、基底膜降解和新血管形成。血管抑素由四个同源的三对二硫键桥接的kringle结构域组成,此前已证明其在体外对内皮细胞增殖和体内血管生成具有显著抑制作用。还证实血管抑素可通过阻断血管生成来抑制多种肿瘤的生长。我们研究的主要目的是鉴定血管抑素的kringle结构域对内皮细胞迁移的抑制活性,以阐明它们对血管抑素抗血管生成功能的作用。在本报告中,我们首次证明血管抑素的kringle结构域在抑制内皮细胞迁移(血管生成中的关键过程)中发挥不同作用。Kringle 4仅有微弱的抗增殖活性,却是抑制内皮细胞迁移最有效的片段之一(IC50约为500 nM)。相比之下,在抑制内皮细胞增殖方面与血管抑素相当的kringle 1 - 3,仅表现出适度的抗迁移作用。Kringle 1 - 3和kringle 4组合后的抗迁移活性与血管抑素相当。当从kringle 1 - 3中去除kringle 1后,得到的kringle 2 - 3比kringle 1 - 3更有效。这意味着kringle 1虽然在抑制内皮细胞迁移方面几乎无效,但可能会影响kringle 1 - 3的构象以改变其抗迁移活性。我们还表明,还原/烷基化试剂破坏kringle结构会显著减弱血管抑素的抗迁移活性,这证明了kringle构象在维持血管抑素抗血管生成活性中的重要性。我们的数据表明,不同的kringle结构域可能通过其独特的抗迁移活性对血管抑素的整体抗血管生成功能做出贡献。

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