Bazzazi Hojjat, Isenberg Jeffery S, Popel Aleksander S
Department of Biomedical Engineering, School of Medicine, Johns Hopkins University Baltimore, MD, USA.
Division of Pulmonary, Allergy, and Critical Care Medicine, Department of Medicine, Heart, Lung, Blood, and Vascular Medicine Institute, University of Pittsburgh Pittsburgh, PA, USA.
Front Physiol. 2017 Feb 6;8:48. doi: 10.3389/fphys.2017.00048. eCollection 2017.
VEGF signaling through VEGFR2 is a central regulator of the angiogenic response. Inhibition of VEGF signaling by the stress-induced matricellular protein TSP1 plays a role in modulating the angiogenic response to VEGF in both health and disease. TSP1 binding to CD47 inhibits VEGFR2 activation. The full implications of this inhibitory interaction are unknown. We developed a detailed rule-based computational model to inquire if TSP1-CD47 signaling through VEGF had downstream effects upon ERK1/2 and calcium. Our Simulations suggest that enhanced degradation of VEGFR2 initiated by the binding of TSP1 to CD47 is sufficient to explain the inhibition of VEGFR2 phosphorylation, calcium elevation, and ERK1/2 activation downstream of VEGF. A complementary mechanism involving the recruitment of phosphatases to the VEGFR2 complex with consequent increase in the rate of receptor dephosphorylation may augment the inhibition of the VEGF signal. The model was then utilized to simulate the effect of inhibiting external TSP1 or the depletion of CD47 as potential therapeutic strategies in restoring VEGF signaling. Results suggest that depleting CD47 is a more efficient strategy in inhibiting the effects of TSP1/CD47 on VEGF signaling. Our results highlight the utility of investigations in elucidating and clarifying molecular mechanisms at the intersection of TSP1 and VEGF biology and in differentiating between competing pro-angiogenic therapeutic strategies relevant to peripheral arterial disease (PAD) and wound healing.
通过血管内皮生长因子受体2(VEGFR2)的血管内皮生长因子(VEGF)信号传导是血管生成反应的核心调节因子。应激诱导的基质细胞蛋白血小板反应蛋白1(TSP1)对VEGF信号传导的抑制在健康和疾病状态下调节对VEGF的血管生成反应中均发挥作用。TSP1与CD47结合会抑制VEGFR2激活。这种抑制性相互作用的全部影响尚不清楚。我们开发了一个详细的基于规则的计算模型,以探究通过VEGF的TSP1 - CD47信号传导是否对细胞外信号调节激酶1/2(ERK1/2)和钙有下游影响。我们的模拟结果表明,TSP1与CD47结合引发的VEGFR2降解增强足以解释VEGF下游的VEGFR2磷酸化抑制、钙升高和ERK1/2激活。一种涉及将磷酸酶募集到VEGFR2复合物并随之增加受体去磷酸化速率的互补机制可能会增强对VEGF信号的抑制。然后利用该模型模拟抑制细胞外TSP1或耗尽CD47作为恢复VEGF信号传导的潜在治疗策略的效果。结果表明,耗尽CD47是抑制TSP1/CD47对VEGF信号传导影响的更有效策略。我们的结果突出了相关研究在阐明和厘清TSP1与VEGF生物学交叉点的分子机制以及区分与外周动脉疾病(PAD)和伤口愈合相关的竞争性促血管生成治疗策略方面的效用。