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在存在神经纤毛蛋白-1的情况下,血管内皮生长因子(VEGF)亚型与VEGF受体2的差异结合:一种计算模型

Differential binding of VEGF isoforms to VEGF receptor 2 in the presence of neuropilin-1: a computational model.

作者信息

Mac Gabhann Feilim, Popel Aleksander S

机构信息

Dept. of Biomedical Engineering, Johns Hopkins Univ. School of Medicine, 720 Rutland Ave., #611 Traylor, Baltimore, MD 21205, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2005 Jun;288(6):H2851-60. doi: 10.1152/ajpheart.01218.2004. Epub 2005 Feb 11.

Abstract

A comprehensive, biophysically accurate, computational model of vascular endothelial growth factor (VEGF) family member interactions with endothelial cell surface receptors was developed to study angiogenesis. Neuropilin-1 (NRP1) and the signaling VEGF receptor, VEGFR2, do not interact directly but are bridged by one VEGF isoform, VEGF(165). Using the model and published experimental data, we estimated the kinetic rate of this VEGFR2-NRP1 coupling in vitro. With the use of this rate, our model gives predictions in good quantitative agreement with several independent in vitro experiments involving VEGF(121) and VEGF(165) isoforms, confirming that VEGFR2-NRP1 coupling through VEGF(165) can fully explain the observed differences in receptor binding and phosphorylation in response to these isoforms. Model predictions also determine the mechanism of action of a commonly used NRP1 antibody and predict the results of potential future experiments. This is the first model to include VEGF isoforms or NRPs, and it is a necessary step toward a quantitative molecular level description of VEGF that can be extended to in vivo situations. The model has applications for both proangiogenic and antiangiogenic therapies, such as for heart disease and cancer, as well as in tissue engineering.

摘要

为了研究血管生成,我们构建了一个全面的、生物物理精确的计算模型,用于模拟血管内皮生长因子(VEGF)家族成员与内皮细胞表面受体的相互作用。神经纤毛蛋白-1(NRP1)与信号传导VEGF受体VEGFR2不直接相互作用,而是由一种VEGF异构体VEGF(165)介导连接。利用该模型和已发表的实验数据,我们估算了体外这种VEGFR2-NRP1偶联的动力学速率。利用这一速率,我们的模型给出的预测结果与涉及VEGF(121)和VEGF(165)异构体的几个独立体外实验在定量上高度吻合,证实通过VEGF(165)的VEGFR2-NRP1偶联能够充分解释观察到的针对这些异构体的受体结合和磷酸化差异。模型预测还确定了一种常用NRP1抗体的作用机制,并预测了未来潜在实验的结果。这是首个包含VEGF异构体或NRP的模型,是迈向对VEGF进行定量分子水平描述的必要一步,该描述可扩展至体内情况。该模型在促血管生成和抗血管生成治疗中均有应用,如用于心脏病和癌症治疗,以及组织工程领域。

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