首页> 美国卫生研究院文献>The EMBO Journal >Requirement of MAP kinase for differentiation of fibroblasts to adipocytes, for insulin activation of p90 S6 kinase and for insulin or serum stimulation of DNA synthesis.
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Requirement of MAP kinase for differentiation of fibroblasts to adipocytes, for insulin activation of p90 S6 kinase and for insulin or serum stimulation of DNA synthesis.

机译:MAP激酶对成纤维细胞向脂肪细胞的分化,p90 S6激酶的胰岛素激活以及胰岛素或血清刺激DNA合成的需求。

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摘要

A phosphorothioate-oligonucleotide-based antisense strategy for depleting MAP kinase was developed. The 17mer antisense probe, EAS 1, caused a potent and concentration-dependent decrease in the steady state expression of p42 and p44 MAP kinase in 3T3 L1 fibroblasts and adipocytes with submicromolar concentrations effective. Antisense EAS 1 elicited a dose-dependent inhibition of insulin- and serum-stimulated DNA synthesis. Elimination of p42 MAP kinase by > 95% and p44 MAP kinase to levels undetected blocked the ability of serum in 3T3 L1 fibroblasts and insulin in 3T3 L1 adipocytes to stimulate DNA synthesis by 87-95%. The differentiation of 3T3 L1 fibroblasts into adipocytes was prevented by 1 microM antisense EAS 1. The corresponding sense, scrambled or sense plus antisense EAS 1 phosphorothioate oligonucleotides did not deplete the p42 or p44 MAP kinase from either cell type, did not inhibit stimulation of DNA synthesis and did not interfere with differentiation. Two kinases on different MAP kinase activation pathways were not depleted by antisense EAS 1 whereas the ability of insulin to activate p90 S6 kinase was > 90% eliminated in 3T3 L1 adipocytes by 4.5 microM antisense EAS 1. In conclusion these results show that MAP kinase is required for insulin and serum stimulation of DNA synthesis, for insulin stimulation of p90 S6 kinase activity and for differentiation of 3T3 L1 cells. Moreover, the development of the antisense probe EAS 1 against a target sequence of p42 MAP kinase that is conserved in p44 MAP kinase and across a range of species provides a molecular tool of general applicability for further dissecting the precise targets and roles of MAP kinase.
机译:开发了一种基于磷酸硫寡核苷酸的反义策略来消除MAP激酶。 17聚体反义探针EAS 1导致3T3 L1成纤维细胞和脂肪细胞中p42和p44 MAP激酶稳态表达的有效且浓度依赖性降低,且亚微摩尔浓度有效。反义EAS 1引起剂量依赖性抑制胰岛素和血清刺激的DNA合成。将p42 MAP激酶消除> 95%和将p44 MAP激酶消除至未检测到的水平,可阻止3T3 L1成纤维细胞中的血清和3T3 L1脂肪细胞中的胰岛素刺激DNA合成的能力达到87-95%。 1 microM反义EAS 1阻止了3T3 L1成纤维细胞向脂肪细胞的分化。相应的有义,杂乱或有义加上反义EAS 1硫代磷酸酯寡核苷酸都不会耗尽任何一种细胞类型的p42或p44 MAP激酶,也不会抑制DNA的刺激合成且不干扰分化。反义EAS 1并没有耗尽不同MAP激酶激活途径上的两种激酶,而4.5 microM义义EAS 1在3T3 L1脂肪细胞中消除了胰岛素激活p90 S6激酶的能力> 90%。总而言之,这些结果表明MAP激酶是胰岛素和血清刺激DNA合成,胰岛素刺激p90 S6激酶活性以及分化3T3 L1细胞所需的蛋白质。而且,针对p44 MAP激酶中保守的p42 MAP激酶的靶序列以及跨一系列物种的反义探针EAS 1的开发提供了用于进一步剖析MAP激酶的精确靶标和作用的普遍适用的分子工具。

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