Establishment of angiogenic circuits that orchestrate blood vessel development and remodeling requires an exquisite balance between the activities of pro- and antiangiogenic factors. However, the logic that permits complex signal integration by vascular endothelium is poorly understood. We demonstrate that a "neuropeptide," neurokinin-B (NK-B), reversibly inhibits endothelial cell vascular network assembly and opposes angiogenesis in the chicken chorioallantoic membrane. Disruption of endogenous NK-B signaling promoted angiogenesis. Mechanistic analyses defined a multicomponent pathway in which NK-B signaling converges upon cellular processes essential for angiogenesis. NK-B-mediated ablation of Ca2+ oscillations and elevation of 3'-5' [corrected] cyclic adenosine monophosphate (cAMP) reduced cellular proliferation, migration, and vascular endothelial growth factor receptor expression and induced the antiangiogenic protein calreticulin. Whereas NK-B initiated certain responses, other activities required additional stimuli that increase cAMP. Although NK-B is a neurotransmitter/ neuromodulator and NK-B overexpression characterizes the pregnancy-associated disorder preeclampsia, NK-B had not been linked to vascular remodeling. These results establish a conserved mechanism in which NK-B instigates multiple activities that collectively oppose vascular remodeling.

译文

建立协调血管发育和重塑的血管生成回路需要在促血管生成因子和抗血管生成因子的活性之间取得完美的平衡。然而,允许血管内皮进行复杂信号整合的逻辑知之甚少。我们证明了 “神经肽”,即神经激肽-B (nk-b) 可逆地抑制了内皮细胞血管网络的组装并反对鸡绒毛膜尿囊膜中的血管生成。内源性NK-B信号的破坏促进了血管生成。机理分析定义了一种多组分途径,其中nk-b信号传导会聚在血管生成必不可少的细胞过程上。Nk-b介导的Ca2振荡消融和3 '-5' [校正] 环磷酸腺苷 (cAMP) 升高降低了细胞增殖,迁移和血管内皮生长因子受体表达,并诱导了抗血管生成蛋白钙网蛋白。NK-B发起了某些反应,而其他活动则需要增加cAMP的额外刺激。尽管nk-b是一种神经递质/神经调节剂,并且nk-b过表达是妊娠相关疾病先兆子痫的特征,但nk-b与血管重塑无关。这些结果建立了一个保守的机制,其中NK-B引发了共同反对血管重塑的多种活动。

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