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Nicotinic acid affects cytoskeleton remodeling via increasing the activity of gelsolin

机译:烟酸通过增加凝溶胶素的活性影响细胞骨架重塑

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Abstract Our previous research has demonstrated that nicotinic acid (NA) might suppress the angiogenesis by modulating the expression of angiogenesis factors and promoting the cytoskeleton remodeling. However, the underlying mechanism need to be further elucidated. The intracellular Ca 2+ concentration was measured by a [Ca 2+ ] detection kit. The F‐actin depolymerization was shown by immunofluorescence staining. The protein levels of F‐actin and G‐actin were determined by Western blot. The effects of NA treatment on the gelsolin‐PI3Kα (p110α) interaction were investigated by co‐immunoprecipitation (Co‐IP). NA treatment caused an initial drop and then induced a significant increase in [Ca 2+ ] with a time and dose dependent manner. In addition, NA promoted the depolymerization of F‐actin and knockdown of gelsolin substantially rescued the effects caused by NA treatment. NA treatment significantly inhibited the interaction between phosphoinositide 3‐kinase (PI3K) α (p110α) and gelsolin and addition of phosphatidylinositol (3,4,5)‐triphosphate (PIP3) increased the protein level of F‐actin and rescued the F/G‐actin ratio. In conclusion, our results indicated NA treatment could interfere with the ability of PI3Kα (p110α) to inhibit the activity of gelsolin by decomposing PIP2 to produce PIP3, thereby increasing the activity of gelsolin, which ultimately acted on the remodeling of the cytoskeleton and exerted an inhibitory effect on angiogenesis.
机译:摘要我们以前的研究表明,烟酸(NA)可以通过调节血管生成因子的表达和促进细胞骨架重塑来抑制血管生成。但是,需要进一步阐明潜在的机制。通过[Ca 2+]检测试剂盒测量细胞内Ca 2+浓度。通过免疫荧光染色显示F-actin解聚。 F-actin和G-Actin的蛋白质水平通过Western印迹测定。通过共免疫沉淀(CO-IP)研究了Na治疗对露珠蛋白-PI3Kα(P110α)相互作用的影响。 Na治疗引起初始下降,然后用时间和剂量依赖性方式诱导[Ca 2+]显着增加。此外,Na促进F-actin的解聚并且凝溶胶蛋白的敲低基本上拯救了Na治疗引起的效果。 Na治疗显着抑制磷酸阳性3-激酶(P110α)和凝胶蛋白之间的相互作用,并加入磷脂酰肌醇(3,4,5) - 三磷酸(PIP3)增加F-Actin的蛋白质水平并拯救了F / g -Actin比率。总之,我们的结果表明Na治疗可能会干扰PI3Kα(P110α)通过分解PIP 2产生露珠蛋白的活性以产生PIP3,从而增加戈尔洛林的活性,这最终在细胞骨架的重塑上作用并施加了一种抑制对血管生成的影响。

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