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首页> 外文期刊>Molecular biology of the cell >Cellular context-mediated Akt dynamics regulates MAP kinase signaling thresholds during angiogenesis
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Cellular context-mediated Akt dynamics regulates MAP kinase signaling thresholds during angiogenesis

机译:细胞上下文介导的Akt动态调节血管生成过程中的MAP激酶信号阈值。

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The formation of new blood vessels by sprouting angiogenesis is tightly regulated by contextual cues that affect angiogeneic growth factor signaling. Both constitutive activation and loss of Akt kinase activity in endothelial cells impair angiogenesis, suggesting that Akt dynamics mediates contextual microenvironmental regulation. We explored the temporal regulation of Akt in endothelial cells during formation of capillary-like networks induced by cell-cell contact with vascular smooth muscle cells (vSMCs) and vSMC-associated VEGF. Expression of constitutively active Akt1 strongly inhibited network formation, whereas hemiphosphorylated Akt1 epi-alleles with reduced kinase activity had an intermediate inhibitory effect. Conversely, inhibition of Akt signaling did not affect endothelial cell migration or morphogenesis in vSMC cocultures that generate capillary-like structures. We found that endothelial Akt activity is transiently blocked by proteasomal degradation in the presence of SMCs during the initial phase of capillary-like structure formation. Suppressed Akt activity corresponded to the increased endothelial MAP kinase signaling that was required for angiogenic endothelial morphogenesis. These results reveal a regulatory principle by which cellular context regulates Akt protein dynamics, which determines MAP kinase signaling thresholds necessary drive a morphogenetic program during angiogenesis.
机译:影响血管生成生长因子信号转导的上下文提示紧密地调节了通过萌发血管生成而形成的新血管。内皮细胞的组成性激活和Akt激酶活性的丧失均损害血管生成,表明Akt动态介导上下文微环境调节。我们探索了由细胞与血管平滑肌细胞(vSMCs)和vSMC相关的VEGF接触引起的毛细血管样网络形成过程中内皮细胞Akt的时间调控。组成性活性Akt1的表达强烈抑制网络的形成,而激酶活性降低的半磷酸化Akt1表位等位基因则具有中等抑制作用。相反,在产生毛细血管样结构的vSMC共培养中,抑制Akt信号传导不会影响内皮细胞迁移或形态发生。我们发现,在毛细血管样结构形成的初始阶段,在SMC存在下,蛋白酶体降解会暂时阻断内皮细胞的Akt活性。抑制的Akt活性对应于血管生成内皮形态发生所需的增加的内皮MAP激酶信号传导。这些结果揭示了一种调节原理,细胞环境通过该调节原理调节Akt蛋白质动力学,从而确定了在血管生成过程中驱动形态发生程序所必需的MAP激酶信号传导阈值。

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