Laboratory of Vascular Biology, Institute of Molecular MedicineChinese and Western Medicine, School of Basic Medical Sciences, Tasly Microcirculation Research Center, Peking University, Beijing 100871, China.
Proc Natl Acad Sci U S A. 2011 Feb 15;108(7):2957-62. doi: 10.1073/pnas.1009395108. Epub 2011 Jan 31.
The intracellular signaling mechanisms underlying postnatal angiogenesis are incompletely understood. Herein we show that Grb-2-associated binder 1 (Gab1) plays a critical role in ischemic and VEGF-induced angiogenesis. Endothelium-specific Gab1 KO (EGKO) mice displayed impaired angiogenesis in the ischemic hindlimb despite normal induction of VEGF expression. Matrigel plugs with VEGF implanted in EGKO mice induced fewer capillaries than those in control mice. The vessels and endothelial cells (ECs) derived from EGKO mice were defective in vascular sprouting and tube formation induced by VEGF. Biochemical analyses revealed a substantial reduction of endothelial NOS (eNOS) activation in Gab1-deficient vessels and ECs following VEGF stimulation. Interestingly, the phosphorylation of Akt, an enzyme known to promote VEGF-induced eNOS activation, was increased in Gab1-deficient vessels and ECs whereas protein kinase A (PKA) activity was significantly decreased. Introduction of an active form of PKA rescued VEGF-induced eNOS activation and tube formation in EGKO ECs. Reexpression of WT or mutant Gab1 molecules in EGKO ECs revealed requirement of Gab1/Shp2 association for the activation of PKA and eNOS. Taken together, these results identify Gab1 as a critical upstream signaling component in VEGF-induced eNOS activation and tube formation, which is dependent on PKA. Of note, this pathway is conserved in primary human ECs for VEGF-induced eNOS activation and tube formation, suggesting considerable potential in treatment of human ischemic diseases.
尚不完全清楚导致出生后血管生成的细胞内信号机制。在此,我们发现 Grb-2 相关结合蛋白 1(Gab1)在缺血和 VEGF 诱导的血管生成中起着关键作用。内皮细胞特异性 Gab1 敲除(EGKO)小鼠尽管 VEGF 表达正常诱导,但在缺血性后肢中表现出血管生成受损。在 EGKO 小鼠中植入 VEGF 的 Matrigel 塞子诱导的毛细血管比对照小鼠少。源自 EGKO 小鼠的血管和内皮细胞(ECs)在 VEGF 诱导的血管发芽和管形成方面存在缺陷。生化分析显示,在 VEGF 刺激后,Gab1 缺陷型血管和 ECs 中的内皮型一氧化氮合酶(eNOS)激活明显减少。有趣的是,已知促进 VEGF 诱导的 eNOS 激活的酶 Akt 的磷酸化在 Gab1 缺陷型血管和 ECs 中增加,而蛋白激酶 A(PKA)活性显著降低。PKA 的活性形式的引入挽救了 EGKO ECs 中 VEGF 诱导的 eNOS 激活和管形成。在 EGKO ECs 中重新表达 WT 或突变 Gab1 分子表明 Gab1/Shp2 缔合对于 PKA 和 eNOS 的激活是必需的。总之,这些结果表明 Gab1 是 VEGF 诱导的 eNOS 激活和管形成中的关键上游信号成分,其依赖于 PKA。值得注意的是,该途径在原发性人 ECs 中对于 VEGF 诱导的 eNOS 激活和管形成是保守的,这表明在治疗人类缺血性疾病方面具有相当大的潜力。