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首页> 外文期刊>American Journal of Physiology >TIMAP promotes angiogenesis by suppressing PTEN-mediated Akt inhibition in human glomerular endothelial cells
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TIMAP promotes angiogenesis by suppressing PTEN-mediated Akt inhibition in human glomerular endothelial cells

机译:TIMAP通过抑制人肾小球内皮细胞中PTEN介导的AKT抑制来促进血管生成

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The function of TIMAP, an endothelial cell (EC)-predominant protein phosphatase 1-regulatory subunit, is poorly understood. We explored the potential role of TIMAP in the Akt-dependent regulation of glomerular EC proliferation, survival, and in vitro angiogenesis. To deplete TIMAP, the EC were transfected with TIMAP-specific or nonspecific small interfering (si) RNA. The rate of electrical impedance development across subconfluent EC monolayers, a measure of the time-dependent increase in EC number, was 93 ± 2% lower in TIMAP-depleted than in control EC. This effect on cell proliferation was associated with reduced DNA synthesis and increased apoptosis: TIMAP silencing reduced 5-ethynyl-2'-deoxyuridine incorporation by 38 ± 2% during the exponential phase of EC proliferation, and cleaved caspase 3 as well as caspase 3 activity increased in TIMAP-depleted relative to control cells. Furthermore, TIMAP depletion inhibited the formation of angiogenic sprouts by glomerular EC in three-dimensional culture. TIMAP depletion strongly diminished growth factor-stimulated Akt phosphorylation without altering ERK1/2 phosphorylation, suggesting a specific effect on the PI3K/ Akt/PTEN pathway. Endogenous TIMAP and PTEN colocalized in EC and coimmunoprecipitated from EC lysates. The inhibitory PTEN phosphorylation on S370 was significantly reduced in TIMAP-depleted compared with control EC, while phosphorylation of PTEN on the S380/T382/T383 cluster remained unchanged. Finally, the PTEN inhibitor bpV(phen) fully reversed the suppressive effect of TIMAP depletion on Akt phosphorylation. The data indicate that in growing EC, TIMAP is necessary for Akt-dependent EC proliferation, survival, and angiogenic sprout formation and that this effect of TIMAP is mediated by inhibition of the tumor suppressor PTEN.
机译:TINAP的功能是内皮细胞(EC)-PREDOMINANT蛋白磷酸酶1-调节亚基,理解得很差。我们探讨了TINAP在AKT依赖性肾小球增殖,生存和体外血管生成的潜在作用。为了耗尽TiMap,通过TiMap特异性或非特异性小干扰(Si)RNA转染EC。副氟代欧单层的电阻抗发育速率,测量EC数量的时间依赖性增加,比对照EC在SINAP耗尽中较低为93±2%。这种对细胞增殖的影响与DNA合成和增加的细胞凋亡增加相关:在EC增殖的指数阶段期间,SINAP沉默在均匀阶段期间减少了5-乙炔基-2'-脱氧尿苷掺入,并裂开了Caspase 3以及Caspase 3活性在相对于对照细胞中耗尽的时间增加。此外,TINAP耗竭通过三维培养中的肾小球EC抑制血管生成芽的形成。 TINAP耗竭强烈减少生长因子刺激的AKT磷酸化而不改变ERK1 / 2磷酸化,表明对PI3K / AKT / PTEN途径的特异性效果。内源性STINAP和PTEN在EC和EC裂解物中COIMMUNOPPIPIPIPIP化。与对照EC相比,S370的S370上的抑制PTEN磷酸化显着降低,而PTEN在S380 / T382 / T383簇上的磷酸化保持不变。最后,PTEN抑制剂BPV(Phen)完全逆转了TINAP耗尽对AKT磷酸化的抑制作用。数据表明,在生长的EC中,TINAP对于Akt依赖性的EC增殖,存活和血管生成芽形成是必要的,并且TINAP的这种效果是通过抑制肿瘤抑制PTEN介导的。

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