He Yun, Luo Yan, Tang Shibo, Rajantie Iiro, Salven Petri, Heil Matthias, Zhang Rong, Luo Dianhong, Li Xianghong, Chi Hongbo, Yu Jun, Carmeliet Peter, Schaper Wolfgang, Sinusas Albert J, Sessa William C, Alitalo Kari, Min Wang
Interdepartmental Program in Vascular Biology and Transplantation, Yale University School of Medicine, New Haven, Connecticut 06510, USA.
J Clin Invest. 2006 Sep;116(9):2344-55. doi: 10.1172/JCI28123. Epub 2006 Aug 24.
Bmx/Etk non-receptor tyrosine protein kinase has been implicated in endothelial cell migration and tube formation in vitro. However, the role of Bmx in vivo is not known. Bmx is highly induced in the vasculature of ischemic hind limbs. We used both mice with a genetic deletion of Bmx (Bmx-KO mice) and transgenic mice expressing a constitutively active form of Bmx under the endothelial Tie-2 enhancer/promoter (Bmx-SK-Tg mice) to study the role of Bmx in ischemia-mediated arteriogenesis/angiogenesis. In response to ischemia, Bmx-KO mice had markedly reduced, whereas Bmx-SK-Tg mice had enhanced, clinical recovery, limb perfusion, and ischemic reserve capacity when compared with nontransgenic control mice. The functional outcomes in these mice were correlated with ischemia-initiated arteriogenesis, capillary formation, and vessel maturation as well as Bmx-dependent expression/activation of TNF receptor 2- and VEGFR2-mediated (TNFR2/VEGFR2-mediated) angiogenic signaling in both hind limb and bone marrow. More importantly, results of bone marrow transplantation studies showed that Bmx in bone marrow-derived cells plays a critical role in the early phase of ischemic tissue remodeling. Our study provides the first demonstration to our knowledge that Bmx in endothelium and bone marrow plays a critical role in arteriogenesis/angiogenesis in vivo and suggests that Bmx may be a novel target for the treatment of vascular diseases such as coronary artery disease and peripheral arterial disease.
Bmx/Etk非受体酪氨酸蛋白激酶已被证明在体外参与内皮细胞迁移和血管生成。然而,Bmx在体内的作用尚不清楚。Bmx在缺血后肢的血管中高度诱导表达。我们使用了Bmx基因缺失的小鼠(Bmx-KO小鼠)和在内皮细胞Tie-2增强子/启动子控制下表达组成型活性形式Bmx的转基因小鼠(Bmx-SK-Tg小鼠),以研究Bmx在缺血介导的动脉生成/血管生成中的作用。与非转基因对照小鼠相比,在缺血反应中,Bmx-KO小鼠的临床恢复、肢体灌注和缺血储备能力明显降低,而Bmx-SK-Tg小鼠则增强。这些小鼠的功能结果与缺血引发的动脉生成、毛细血管形成、血管成熟以及后肢和骨髓中TNF受体2和VEGFR2介导(TNFR2/VEGFR2介导)的血管生成信号的Bmx依赖性表达/激活相关。更重要的是,骨髓移植研究结果表明,骨髓来源细胞中的Bmx在缺血组织重塑的早期阶段起关键作用。据我们所知,我们的研究首次证明内皮细胞和骨髓中的Bmx在体内动脉生成/血管生成中起关键作用,并表明Bmx可能是治疗冠状动脉疾病和外周动脉疾病等血管疾病的新靶点。
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