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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >A designed angiopoietin-2 variant, pentameric COMP-Ang2, strongly activates Tie2 receptor and stimulates angiogenesis.
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A designed angiopoietin-2 variant, pentameric COMP-Ang2, strongly activates Tie2 receptor and stimulates angiogenesis.

机译:设计的血管生成素2变体,五聚体COMP-Ang2,强烈激活Tie2受体并刺激血管生成。

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摘要

Despite that angiopoietin-2 (Ang2) produces more versatile and dynamic functions than angiopoietin-1 (Ang1) in angiogenesis and inflammation, the molecular mechanism that underlies this difference is still unknown. To define the role of oligomerization of Ang2 in activation of its receptor, Tie2, we designed and generated different oligomeric forms of Ang2 by replacement of the amino-terminal domains of Ang2 with dimeric, tetrameric, and pentameric short coiled-coil domains derived from GCN4, matrillin-1, and COMP. COMP-Ang2 strongly binds and activates Tie2, whereas GCN4-Ang2 and MAT-Ang2 weakly to moderately bind and activate Tie2. Although native Ang2 strongly binds to Tie2, it does not activate Tie2. Accordingly, COMP-Ang2 strongly promotes endothelial cell survival, migration, and tube formation in a Tie2-dependent manner, and the potency of COMP-Ang2 is almost identical to that of COMP-Ang1. Furthermore, the potency of COMP-Ang2-induced enhanced angiogenesis in the wound healing region is almost identical to the potency of COMP-Ang1-induced enhanced angiogenesis. Overall, there is no obvious difference between COMP-Ang2 and COMP-Ang1 in in vitro and in vivo angiogenesis. Our results provide compelling evidence that proper oligomerization of Ang2 is a critical determinant of its binding and activation of Tie2.
机译:尽管在血管生成和炎症方面,血管生成素2(Ang2)比血管生成素1(Ang1)产生更多的功能和动态功能,但仍不清楚这种差异的分子机制。为了定义Ang2寡聚化在其受体Tie2激活中的作用,我们设计并通过用衍生自GCN4的二聚,四聚和五聚短螺旋线圈结构域取代Ang2的氨基末端结构域来生成Ang2的不同寡聚形式,matrillin-1和COMP。 COMP-Ang2牢固结合并激活Tie2,而GCN4-Ang2和MAT-Ang2弱结合中度并激活Tie2。尽管天然Ang2与Tie2牢固结合,但它不激活Tie2。因此,COMP-Ang2以Tie2依赖性方式强烈促进内皮细胞的存活,迁移和管形成,并且COMP-Ang2的效力几乎与COMP-Ang1相同。此外,在伤口愈合区域中COMP-Ang2诱导的增强的血管新生的效力几乎与COMP-Ang1诱导的增强的血管新生的效力相同。总体而言,在体外和体内血管生成中,COMP-Ang2和COMP-Ang1之间没有明显差异。我们的结果提供了令人信服的证据,即Ang2的正确寡聚化是其与Tie2结合和激活的关键决定因素。

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