首页> 外文期刊>Journal of Biophysical and Biochemical Cytology >Suppression of integrin α3β1 by α9β1 in the epidermis controls the paracrine resolution of wound angiogenesis
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Suppression of integrin α3β1 by α9β1 in the epidermis controls the paracrine resolution of wound angiogenesis

机译:表皮中α9β1对整联蛋白α3β1的抑制控制伤口血管生成的旁分泌分辨率

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Development of wound therapies is hindered by poor understanding of combinatorial integrin function in the epidermis. In this study, we generated mice with epidermis-specific deletion of α3β1, α9β1, or both integrins as well as keratinocyte lines expressing these integrin combinations. Consistent with proangiogenic roles for α3β1, α3-null keratinocytes showed reduced paracrine stimulation of endothelial cell migration and survival, and wounds of epidermis-specific α3 knockout mice displayed impaired angiogenesis. Interestingly, α9β1 in keratinocytes suppressed α3β1-mediated stimulation of endothelial cells, and wounds of epidermis-specific α9 knockout mice displayed delayed vascular normalization and reduced endothelial apoptosis, indicating that α9β1 cross-suppresses α3β1 proangiogenic functions. Moreover, α9β1 inhibited α3β1 signaling downstream of focal adhesion kinase (FAK) autoactivation at the point of Src-mediated phosphorylation of FAK Y861/Y925. Finally, α9β1 cross-suppressed many α3β1-dependent genes, including the gene that encodes MMP-9, which we implicated as a regulator of integrin-dependent cross talk to endothelial cells. Our findings identify a novel physiological context for combinatorial integrin signaling, laying the foundation for therapeutic strategies that manipulate α9β1 and/or α3β1 during wound healing.
机译:对表皮组合整联蛋白功能的了解不足,阻碍了伤口疗法的发展。在这项研究中,我们生成了具有表皮特异性缺失α3β1,α9β1或两种整合素以及表达这些整合素组合的角质形成细胞系的小鼠。与α3β1的促血管生成作用一致,α3无效的角质形成细胞显示旁分泌刺激内皮细胞迁移和存活减少,表皮特异性α3基因敲除小鼠的伤口显示出血管生成受损。有趣的是,角质形成细胞中的α9β1抑制了α3β1介导的内皮细胞刺激,表皮特异性α9基因敲除小鼠的伤口表现出延迟的血管正常化和减少的内皮细胞凋亡,表明α9β1交叉抑制α3β1的促血管生成功能。此外,在Src介导的FAK Y861 / Y925的磷酸化点,α9β1抑制了粘着斑激酶(FAK)自激活下游的α3β1信号传导。最后,α9β1交叉抑制了许多α3β1依赖性基因,包括编码MMP-9的基因,我们将其暗示为整合素依赖性内皮细胞串扰的调节因子。我们的发现确定了整合整联蛋白信号传导的新型生理环境,为在伤口愈合过程中操纵α9β1和/或α3β1的治疗策略奠定了基础。

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