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首页> 外文期刊>American Journal of Physiology >Protein kinase D1 mediates class IIa histone deacetylase phosphorylation and nuclear extrusion in intestinal epithelial cells: role in mitogenic signaling
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Protein kinase D1 mediates class IIa histone deacetylase phosphorylation and nuclear extrusion in intestinal epithelial cells: role in mitogenic signaling

机译:蛋白激酶D1介导IIA类组蛋白脱乙酰化酶磷酸化和核挤出在肠上皮细胞中:在促丝膜信号传导中的作用

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摘要

We examined whether class IIa histone deacetylases (HDACs) play a role in mitogenic signaling mediated by protein kinase D1 (PKD1) in IEC-18 intestinal epithelial cells. Our results show that class IIa HDAC4, HDAC5, and HDAC7 are prominently expressed in these cells. Stimulation with ANG II, a potent mitogen for IEC-18 cells, induced a striking increase in phosphorylation of HDAC4 at Ser~(246) and Ser~(632), HDAC5 at Ser~(259) and Ser~(498), and HDAC7 at Ser~(155). Treatment with the PKD family inhibitors kb NB 142-70 and CRT0066101 or small interfering RNA-mediated knockdown of PKD1 prevented ANG II-induced phosphorylation of HDAC4, HDAC5, and HDAC7. A variety of PKD1 activators in IEC-18 cells, including vasopressin, lysophosphatidic acid, and phorbol esters, also induced HDAC4, HDAC5, and HDAC7 phosphorylation. Using endogenously and ectopically expressed HDAC5, we show that PKD1-mediated phosphorylation of HDAC5 induces its nuclear extrusion into the cytoplasm. In contrast, HDAC5 with Ser~(259) and Ser~(498) mutated to Ala was localized to the nucleus in unstimulated and stimulated cells. Treatment of IEC-18 cells with specific inhibitors of class IIa HDACs, including MC1568 and TMP269, prevented cell cycle progression, DNA synthesis, and proliferation induced in response to G protein-coupled receptor/PKD1 activation. The PKD1-class IIa HDAC axis also functions in intestinal epithelial cells in vivo, since an increase in phosphorylation of HDAC4/5 and HDAC7 was demonstrated in lysates of crypt cells from PKD1 transgenic mice compared with matched nontransgenic littermates. Collectively, our results reveal a PKD1-class IIa HDAC axis in intestinal epithelial cells leading to mitogenic signaling.
机译:我们检查了IIA类甲蛋白酶脱乙酰酶(HDACs)是否在IEC-18肠上皮细胞中由蛋白激酶D1(PKD1)介导的促致毒性信号传导中的作用。我们的结果表明,IIA类HDAC4,HDAC5和HDAC7突出地在这些细胞中表达。用Ang II的刺激,IEC-18细胞的有效丝分裂剂,诱导Ser〜(246)和Ser〜(259)和Ser〜(498)的Ser〜(632),HDAC5的HDAC4的HDAC4的磷酸化增加。 HDAC7在Ser〜(155)。用PKD家族抑制剂治疗KB NB 142-70和CRT0066101或小干扰RNA介导的PKD1敲击,防止了HDAC4,HDAC5和HDAC7的Ang II诱导的磷酸化。 IEC-18细胞中的各种PKD1活化剂,包括血管加压素,透明磷脂酸和磷酸酯,也诱导HDAC4,HDAC5和HDAC7磷酸化。使用内源性和异位表达的HDAC5,我们表明PKD1介导的HDAC5的磷酸化诱导其核挤出到细胞质中。相反,具有与ALA突变的Ser〜(259)和Ser〜(498)的HDAC5在未刺激和刺激的细胞中局部化为核。治疗IIA HDAC类特异性抑制剂的IEC-18细胞,包括MC1568和TMP269,预防细胞周期进展,DNA合成和响应于G蛋白偶联受体/ PKD1活化的增殖。 PKD1类IIA HDAC轴还在体内的肠上皮细胞中起作用,因为与PKD1转基因小鼠的隐窝细胞的裂解物中对HDAC4 / 5和HDAC7的磷酸化的增加,与匹配的非致癌凋落物相比,在PKD1转基因小鼠的裂解物中对。统称,我们的结果揭示了肠上皮细胞中的PKD1类IIA HDAC轴,导致有丝发菌信号传导。

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