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β-catenin promotes endothelial survival by regulating eNOS activity and flow-dependent anti-apoptotic gene expression

机译:β-catenin通过调节enos活性和流动依赖性抗凋亡基因表达来促进内皮生存率

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Increased endothelial cell (EC) apoptosis is associated with the development of atherosclerotic plaques that develop predominantly at sites exposed to disturbed flow (DF). Strategies to promote EC survival may therefore represent a novel therapeutic approach in cardiovascular disease. Nitric oxide (NO) and β-catenin have both been shown to promote cell survival and they interact in ECs as we previously demonstrated. Here we investigated the physiological role of β-catenin as a mediator of NO-induced cell survival in ECs. We found that β-catenin depleted human umbilical vein ECs (HUVEC) stimulated with pharmacological activators of endothelial NO synthase (eNOS) showed a reduction in eNOS phosphorylation (Ser1177) as well as reduced intracellular cyclic guanosine monophosphate levels compared to control cells in static cultures. In addition, β-catenin depletion abrogated the protective effects of the NO donor, S-nitroso-N-acetylpenicillamine, during TNFα- and H2O2-induced apoptosis. Using an orbital shaker to generate shear stress, we confirmed eNOS and β-catenin interaction in HUVEC exposed to undisturbed flow and DF and showed that β-catenin depletion reduced eNOS phosphorylation. β-catenin depletion promoted apoptosis exclusively in HUVEC exposed to DF as did inhibition of soluble guanylate cyclase (sGC) or β-catenin transcriptional activity. The expression of the pro-survival genes, Bcl-2 and survivin was also reduced following inhibition of β-catenin transcriptional activity, as was the expression of eNOS. In conclusion, our data demonstrate that β-catenin is a positive regulator of eNOS activity and cell survival in human ECs. sGC activity and β-catenin-dependent transcription of Bcl-2, survivin, BIRC3 and eNOS are essential to maintain cell survival in ECs under DF.
机译:增加的内皮细胞(EC)细胞凋亡与动脉粥样硬化斑块的发育有关,这些斑块主要在暴露于干扰流动(DF)的位点。因此,促进EC生存的策略可能代表心血管疾病的新疗法方法。一直显示一氧化氮(NO)和β-连环蛋白,均显示促进细胞存活,并在我们之前证明的情况下在ECS中相互作用。在这里,我们研究了β-catenin作为ECS中无诱导的细胞存活的介质的生理作用。我们发现与内皮的药理活化剂的β-连环蛋白耗尽的人脐静脉ECS(HUVEC)与内皮的药理活化剂(eNOS)刺激,表明,与静态培养物中的对照细胞相比,细胞内环状鸟苷一单磷酸含量减少。此外,β-catenin耗尽废除了No供体,S-亚硝基-N-乙酰戊基甲酰胺的保护作用,在TNFα-和H2O2诱导的细胞凋亡中。使用轨道振动器产生剪切应力,我们确认了eNOS和β-catenin在Huvec暴露于未受干扰的流动和DF中的相互作用,并显示β-catenin耗尽降低的enos磷酸化。 β-catenin耗尽专门促进暴露于DF的Huvec的凋亡,如抑制可溶性的胍基环化酶(SGC)或β-连环蛋白转录活性。在β-连环蛋白转录活性的抑制后,还减少了促求生存基因,Bcl-2和Survivin的表达,如eNOS的表达。总之,我们的数据表明,β-catenin是人ECS中eNOS活性和细胞存活的正调节因子。 Bcl-2,Survivin,Birc3和enos的SGC活性和β-连环蛋白依赖性转录对于维持DF下的ECS中的细胞存活至关重要。

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