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Biochemical and functional analysis of highly phosphorylated forms of c‐Jun protein

机译:c-Jun蛋白高度磷酸化形式的生化和功能分析

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We report here that, upon UV irradiation or growth stimulation, endogenous c-Jun (40 kDa) in chicken embryo fibroblasts (CEF) is converted into several forms with apparently higher molecular weights in SDS-polyacrylamide gel electrophoresis (45, 44, 42 kDa). Two of the bands (44 and 45 kDa) were transient after growth stimulation, but were much more persistent after UV irradiation. In both cases, the drastic mobility shifts were accompanied with the activation of endogenous JNK activity but not of MAPK activity, and the bands were shown to represent different phosphorylation states of c-Jun rather than ubiquitinated c-Jun. Biochemical analysis indicated that phosphorylation at Ser 63 and Ser 73 was not sufficient to produce these drastic mobility shifts, which additionally required phosphorylation at Thr 91 and Thr 93 . Substitution of both Ser 63 and Ser 73 with either Ala or Asp had no significant effect on the transforming activity of c-Jun, but the mutants failed to show drastic mobility shifts even after UV irradiation. These results indicate that Ser 63 and Ser 73 are essential for the drastic mobility shifts and further suggest that the highly phosphorylated forms of c-Jun are not directly involved in cellular transformation.
机译:我们在这里报告说,在紫外线照射或生长刺激下,鸡胚成纤维细胞(CEF)中的内源性c-Jun(40 kDa)在SDS-聚丙烯酰胺凝胶电泳(45,44,42 kDa)中转化为具有明显更高分子量的几种形式。其中两个条带(44 和 45 kDa)在生长刺激后是短暂的,但在紫外线照射后更持久。在这两种情况下,剧烈的迁移率变化都伴随着内源性JNK活性的激活,而不是MAPK活性的激活,并且条带被证明代表c-Jun而不是泛素化的c-Jun的不同磷酸化状态。生化分析表明,Ser 63 和 Ser 73 的磷酸化不足以产生这些剧烈的迁移率变化,这还需要 Thr 91 和 Thr 93 的磷酸化。用Ala或Asp取代Ser 63和Ser 73对c-Jun的转化活性没有显著影响,但即使在紫外线照射后,突变体也未能表现出剧烈的迁移率变化。这些结果表明,Ser 63 和 Ser 73 对于剧烈的迁移转变至关重要,并进一步表明高度磷酸化的 c-Jun 形式不直接参与细胞转化。

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