首页> 美国卫生研究院文献>Scientific Reports >A Designed Angiopoietin-1 Variant Dimeric CMP-Ang1 Activates Tie2 and Stimulates Angiogenesis and Vascular Stabilization in N-glycan Dependent Manner
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A Designed Angiopoietin-1 Variant Dimeric CMP-Ang1 Activates Tie2 and Stimulates Angiogenesis and Vascular Stabilization in N-glycan Dependent Manner

机译:设计的Angiopoietin-1变体二聚体CMP-Ang1激活Tie2并以N-糖依赖性方式刺激血管生成和血管稳定。

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摘要

Angiopoietin-1 (Ang1), a potential growth factor for therapeutic angiogenesis and vascular stabilization, is known to specifically cluster and activate Tie2 in high oligomeric forms, which is a unique and essential process in this ligand-receptor interaction. However, highly oligomeric native Ang1 and Ang1 variants are difficult to produce, purify, and store in a stable and active form. To overcome these limitations, we developed a simple and active dimeric CMP-Ang1 by replacing the N-terminal of native Ang1 with the coiled-coil domain of cartilage matrix protein (CMP) bearing mutations in its cysteine residues. This dimeric CMP-Ang1 effectively increased the migration, survival, and tube formation of endothelial cells via Tie2 activation. Furthermore, dimeric CMP-Ang1 induced angiogenesis and suppressed vascular leakage in vivo. Despite its dimeric structure, the potencies of such Tie2-activation-induced effects were comparable to those of a previously engineered protein, COMP-Ang1. We also revealed that these effects of dimeric CMP-Ang1 were affected by specified N-glycosylation in its fibrinogen-like domain. Taken together, our results indicate that dimeric CMP-Ang1 is capable of activating Tie2 and stimulating angiogenesis in N-glycan dependent manner.
机译:Angiopoietin-1(Ang1)是治疗性血管生成和血管稳定的潜在生长因子,已知以高寡聚形式特异性簇集并激活Tie2,这是这种配体-受体相互作用的独特且必不可少的过程。然而,高度寡聚的天然Ang1和Ang1变体难以以稳定和活性形式生产,纯化和储存。为了克服这些局限性,我们通过用半胱氨酸残基中携带突变的软骨基质蛋白(CMP)的卷曲螺旋结构域取代天然Ang1的N端,开发了一种简单而有效的二聚CMP-Ang1。这种二聚体CMP-Ang1通过Tie2激活有效地增加了内皮细胞的迁移,存活和管形成。此外,二聚体CMP-Ang1在体内诱导血管生成并抑制血管渗漏。尽管具有二聚体结构,但这种Tie2激活诱导效应的效力与以前工程化的蛋白质COMP-Ang1相当。我们还发现,二聚体CMP-Ang1的这些作用受其纤维蛋白原样结构域中指定的N-糖基化影响。两者合计,我们的结果表明,二聚体CMP-Ang1能够激活Tie2并以N-聚糖依赖性方式刺激血管生成。

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