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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Unraveling the influence of endothelial cell density on VEGF-A signaling
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Unraveling the influence of endothelial cell density on VEGF-A signaling

机译:揭示内皮细胞密度对VEGF-A信号传导的影响

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摘要

Vascular endothelial growth factor-A (VEGF) is the master determinant for the activation of the angiogenic program leading to the formation of new blood vessels to sustain solid tumor growth and metastasis. VEGF specific binding to VEGF receptor-2 (VEGFR-2) triggers different signaling pathways, including phospholipase C-γ (PLC-γ) and Akt cascades, crucial for endothelial proliferation, permeability, and survival. By combining biologic experiments, theoretical insights, and mathematical modeling, we found that: (1) cell density influences VEGFR-2 protein level, as receptor number is 2-fold higher in long-confluent than in sparse cells; (2) cell density affects VEGFR-2 activation by reducing its affinity for VEGF in long-confluent cells; (3) despite reduced ligand-receptor affinity, high VEGF concentrations provide long-confluent cells with a larger amount of active receptors; (4) PLC-γ and Akt are not directly sensitive to cell density but simply transduce downstream the upstream difference in VEGFR-2 protein level and activation; and (5) the mathematical model correctly predicts the existence of at least one protein tyrosine phosphatase directly targeting PLC-γ and counteracting the receptor-mediated signal. Our databased mathematical model quantitatively describes VEGF signaling in quiescent and angiogenic endothelium and is suitable to identify new molecular determinants and therapeutic targets.
机译:血管内皮生长因子-A(VEGF)是激活血管生成程序的主要决定因素,该程序导致形成新的血管来维持实体瘤的生长和转移。 VEGF与VEGF受体2(VEGFR-2)的特异性结合触发了不同的信号传导途径,包括磷脂酶C-γ(PLC-γ)和Akt级联,这对于内皮细胞的增殖,通透性和存活至关重要。通过将生物学实验,理论见解和数学模型相结合,我们发现:(1)细胞密度影响VEGFR-2蛋白水平,因为长汇合的受体数量比稀疏细胞高2倍; (2)细胞密度通过降低长融合细胞中对VEGFR的亲和力来影响VEGFR-2的活化; (3)尽管配体-受体亲和力降低,但高浓度的VEGF为长融合细胞提供了更多的活性受体。 (4)PLC-γ和Akt对细胞密度不直接敏感,只是简单地向下游转导了VEGFR-2蛋白水平和激活的上游差异。 (5)该数学模型正确地预测了至少一种直接靶向PLC-γ并抵消受体介导的信号的蛋白酪氨酸磷酸酶的存在。我们的数据库数学模型定量描述了静止和血管生成内皮中的VEGF信号传导,适用于鉴定新的分子决定簇和治疗靶标。

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