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Activation of PKCdelta and p38delta MAPK during okadaic acid dependent keratinocyte apoptosis.

机译:冈田酸依赖性角质形成细胞凋亡期间PKCdelta和p38delta MAPK的激活。

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There is substantial interest in identifying agents that differentially activate keratinocyte differentiation versus apoptosis. Okadaic acid (OA) is a tumor promoter in mouse skin that also stimulates apoptosis of murine keratinocytes. OA also enhances human keratinocyte differentiation; however, the impact of OA treatment on apoptosis in these cells has not been examined. We show that OA promotes normal human keratinocyte apoptosis as evidenced by increased accumulation of cells having sub-G1/S DNA content, decreased mitochondrial integrity, increased annexin V binding, increased cytoplasmic cytochrome c level, and increased procaspase 3 and PARP cleavage. Cyclin A, cyclin D1, cdk2, cdk4, p53 and p21 levels are reduced. These changes are associated with release of the PKCdelta catalytic domain and increased phosphorylation of PKCdelta-T(505)-responses consistent with PKCdelta activation. In contrast, phosphorylation of PKCdelta-Y(311) is not increased. The apoptotic response is enhanced in OA treated cells in the presence of p38delta, a PKCdelta target. OA treatment selectively activated p38delta, and OA-dependent apoptosis is not inhibited by treatment with the p38alpha/beta inhibitor, SB203580. These findings are consistent with the idea that the response is mediated by p38delta. Our data indicate that OA is an agent that regulates both keratinocyte differentiation and apoptosis, and that this regulation is mediated via activation of a PKCdelta/p38delta signaling cascade.
机译:对于鉴定差异激活角质形成细胞分化与凋亡的试剂,存在着很大的兴趣。冈田酸(OA)是小鼠皮肤中的肿瘤启动子,它还刺激鼠角质形成细胞的凋亡。 OA还可以增强人类角质形成细胞的分化。然而,尚未研究OA处理对这些细胞凋亡的影响。我们显示,OA可以促进正常的人类角质形成细胞凋亡,其表现为具有亚G1 / S DNA含量的细胞积累增加,线粒体完整性降低,膜联蛋白V结合增加,细胞质细胞色素C水平增加以及蛋白酶3和PARP裂解增加。细胞周期蛋白A,细胞周期蛋白D1,cdk2,cdk4,p53和p21的水平降低。这些变化与PKCdelta催化域的释放和与PKCdelta激活一致的PKCdelta-T(505)-响应的磷酸化增加有关。相反,PKCdelta-Y(311)的磷酸化没有增加。在p38delta(一种PKCdelta靶标)的存在下,OA处理细胞的凋亡反应增强。 OA处理可选择性激活p38delta,而p38alpha / beta抑制剂SB203580不会抑制OA依赖性细胞凋亡。这些发现与该反应是由p38δ介导的想法一致。我们的数据表明,OA是一种调节角质形成细胞分化和凋亡的药物,并且该调节是通过激活PKCdelta / p38delta信号级联来介导的。

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