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Hyperglycemia alters PI3k and Akt signaling and leads to endothelial cell proliferative dysfunction

机译:高血糖会改变PI3k和Akt信号传导并导致内皮细胞增殖功能障碍

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摘要

Diabetes mellitus is a major risk factor for the development of vascular complications. We hypothesized that hyperglycemia decreases endothelial cell (EC) proliferation and survival via phosphatidylinositol 3-kinase (PI3k) and Akt signaling pathways. We cultured human umbilical vein ECs (HUVEC) in 5, 20, or 40 mM d-glucose. Cells grown in 5, 20, and 40 mM mannitol served as a control for osmotic effects. We measured EC proliferation for up to 15 days. We assessed apoptosis by annexin V and propidium iodide staining and flow cytometry, analyzed cell lysates obtained on culture day 8 for total and phosphorylated PI3k and Akt by Western blot analysis, and measured Akt kinase activity using a GSK fusion protein. HUVEC proliferation was also tested in the presence of pharmacological inhibitors of PI3k-Akt (wortmannin and ) and after transfection with a constitutively active Akt mutant. ECs in media containing 5 mM d-glucose (control) exhibited log-phase growth on days 7–10. d-Glucose at 20 and 40 mM significantly decreased proliferation versus control (P < 0.05 for both), whereas mannitol did not impair EC proliferation. Apoptosis increased significantly in HUVEC exposed to 40 mM d-glucose. dGlucose at 40 mM significantly decreased tyrosine-phosphorylated PI3k, threonine 308-phosphorylated-Akt, and Akt activity relative to control 5 mM d-glucose. Pharmacological inhibition of PI3k-Akt resulted in a dose-dependent decrease in EC proliferation. Transfection with a constitutively active Akt mutant protected ECs by enhancing proliferation when grown in 20 and 40 mM d-glucose. We conclude that d-glucose regulates Akt signaling through threonine phosphorylation of Akt and that hyperglycemia-impaired PI3k-Akt signaling may promote EC proliferative dysfunction in diabetes.
机译:糖尿病是发展血管并发症的主要危险因素。我们假设高血糖症通过磷脂酰肌醇3激酶(PI3k)和Akt信号通路降低内皮细胞(EC)的增殖和生存。我们在5、20或40 mM d-葡萄糖中培养人脐静脉EC(HUVEC)。在5、20和40 mM甘露醇中生长的细胞可作为渗透作用的对照。我们测量了长达15天的EC增殖。我们通过膜联蛋白V和碘化丙啶染色和流式细胞术评估了细胞凋亡,通过Western blot分析了在培养第8天获得的细胞裂解物的总和磷酸化的PI3k和Akt,并使用GSK融合蛋白测量了Akt激酶活性。还在存在PI3k-Akt的药理学抑制剂(渥曼青霉素和)的情况下以及用组成型活性Akt突变体转染后测试了HUVEC增殖。含有5 mM d-葡萄糖(对照)的培养基中的EC在第7-10天表现出对数期生长。与对照组相比,20和40 mM的d-葡萄糖显着降低了增殖(两者P均<0.05),而甘露醇不损害EC增殖。在暴露于40 mM d-葡萄糖的HUVEC中,凋亡明显增加。相对于5 mM d-葡萄糖,40 mM的d葡萄糖显着降低了酪氨酸磷酸化的PI3k,苏氨酸308磷酸化的Akt和Akt活性。 PI3k-Akt的药理抑制作用导致EC增殖呈剂量依赖性降低。当在20和40 mM d-葡萄糖中生长时,组成型活性Akt突变体的转染通过增强增殖来保护EC。我们得出的结论是,d-葡萄糖通过苏氨酸磷酸化Akt来调节Akt信号传导,而高血糖受损的PI3k-Akt信号传导可能会促进糖尿病患者的EC增殖功能障碍。

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