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Adhesive and Proteolytic Phenotype of Migrating Endothelial Cells Induced by Thymosin β-4

机译:胸腺素β-4诱导的迁移内皮细胞的粘合剂和蛋白水解表型

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The early stages of angiogenesis are usually accompanied by the occurrence of vascular leakage, and the deposition of fibrin in extravascular spaces. Initially, the fibrin network acts as a sealing matrix, but later on also as a scaffolding for invading endothelial cells. This process is induced by angiogenic growth factors, particularly by vascular endothelial growth factor (VEGF). Angiogenesis involves proteolytic activities, in particular cell-bound urokinase/plasmin and matrix met-alloproteinase (MMPs) activities that modulate the fibrin structure and affect adhesion and migration of endothelial cells. Recent data show that formation of new vessels may be stimulated by thymosin p-4 (Tβ-4), but it is still not clear whether Tp-4 alone is angiogenic or the angiogenic potential of Tβ-4 is mediated by VEGF. In this report to further characterize Tp-4 angiogenic activity, we produced its mutants that were deprived of the N-terminal tetrapeptide AcSDKP (Tβ-4_((AcSDKPT/4A))), the actin-binding sequence KLKKTET (Tβ-4_((KLKKTET/7A))) and with the nuclear localization sequence damaged by a point mutation Lysl6Ala (Tp-4_((K16A)))-^sThen we tested their activity to induce expression and release of MMPs as well as plasminogen activators inhibitor type-1 (PAI-1). We also analyzed their effect on migration and proliferation of endothelial cells in three-dimensional (3D) fibrin matrix as well as on their ability to stimulate the outgrowth of human endothelial cells in capillary-like tubular structures. Our data demonstrate that increased intracellular expression of Tβ-4 and its mutants is necessary and sufficient to induce PAI-1 gene expression in endothelial cells. Similarly, they stimulate expression and release of MMP-1, -2, and -3. As evaluated by using specific inhibitors to these MMPs, they modified specifically the structure of fibrin and thus facilitated migration of endothelial cells. To sum up, our data show that the mechanism by which Tβ-4 induced transition of endothe-lial cells from quiescent to proangiogenic phenotype is characterized by increased expression of PAI-1 and MMPs did not require the presence of the N-terminal sequence AcSDKP, and depended only partially on its ability to bind G-actin or to enter the nucleus.
机译:血管生成的早期阶段通常伴随着血管泄漏的发生,以及在血管外空间中沉积纤维蛋白。最初,纤维蛋白网络充当密封基质,但后来也作为用于侵入内皮细胞的支架。该方法由血管生成生长因子诱导,特别是通过血管内皮生长因子(VEGF)。血管生成涉及蛋白水解活性,特别是细胞结合的尿激酶/纤溶酶和基质满足蛋白酶(MMPS)活性,其调节纤维蛋白结构并影响内皮细胞的粘附性和迁移。最近的数据表明,胸腺素P-4(Tβ-4)刺激新血管的形成,但尚不清楚TP-4是否单独血管生成或Tβ-4的血管生成潜力由VEGF介导。在进一步表征TP-4血管生成活性本报告中,我们生产及其突变体被剥夺的N末端四肽AcSDKP干预(Tβ-4 _((AcSDKPT / 4A))),肌动蛋白结合序列KLKKTET(Tβ-4_的那个( (KLKKTET / 7A))),并用通过点突变Lysl6Ala损坏核定位序列(TP-4 _((K16A))) - ^ sThen我们测试它们的活性来诱导MMP的表达和释放,以及纤溶酶原激活物抑制物-1(PAI-1)。我们还分析了它们对三维(3D)纤维蛋白基质中内皮细胞的迁移和增殖的影响以及它们在毛细管状管状结构中刺激人内皮细胞的产物的能力。我们的数据表明,需要增加Tβ-4及其突变体的细胞内表达是必要的,并且足以诱导内皮细胞中的PAI-1基因表达。类似地,它们刺激MMP-1,-2和-3的表达和释放。如通过使用特异性抑制剂对这些MMP的评估,它们特别修饰纤维蛋白的结构,从而促进内皮细胞的迁移。总而言之,我们的数据表明,Tβ-4诱导的内皮细胞从静脉化对常致型表型转变的机制的特征在于PAI-1和MMP的表达增加不需要N-末端序列ACSDKP的存在,并仅部分地依赖于其结合G-Actin或进入细胞核的能力。

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