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p38 MAPKs regulate the expression of genes in the dopamine synthesis pathway through phosphorylation of NR4A nuclear receptors.

机译:p38 MAPK通过NR4A核受体的磷酸化来调节多巴胺合成途径中基因的表达。

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摘要

In Drosophila, the melanization reaction is an important defense mechanism against injury and invasion of microorganisms. Drosophila tyrosine hydroxylase (TH, also known as Pale) and dopa decarboxylase (Ddc), key enzymes in the dopamine synthesis pathway, underlie the melanin synthesis by providing the melanin precursors dopa and dopamine, respectively. It has been shown that expression of Drosophila TH and Ddc is induced in various physiological and pathological conditions, including bacterial challenge; however, the mechanism involved has not been fully elucidated. Here, we show that ectopic activation of p38 MAPK induces TH and Ddc expression, leading to upregulation of melanization in the Drosophila cuticle. This p38-dependent melanization was attenuated by knockdown of TH and Ddc, as well as by that of Drosophila HR38, a member of the NR4A family of nuclear receptors. In mammalian cells, p38 phosphorylated mammalian NR4As and Drosophila HR38 and potentiated these NR4As to transactivate a promoter containing NR4A-binding elements, with this transactivation being, at least in part, dependent on the phosphorylation. This suggests an evolutionarily conserved role for p38 MAPKs in the regulation of NR4As. Thus, p38-regulated gene induction through NR4As appears to function in the dopamine synthesis pathway and may be involved in immune and stress responses.
机译:在果蝇中,黑色素化反应是抵抗微生物损伤和入侵的重要防御机制。果蝇酪氨酸羟化酶(TH,也称为Pale)和多巴脱羧酶(Ddc),即多巴胺合成途径中的关键酶,通过分别提供黑色素前体多巴和多巴胺而成为黑色素合成的基础。研究表明果蝇TH和Ddc的表达在多种生理和病理条件下被诱导,包括细菌攻击。但是,所涉及的机制尚未完全阐明。在这里,我们显示异位激活p38 MAPK诱导TH和Ddc表达,从而导致果蝇角质层黑色素的上调。 TH和Ddc的敲低以及果蝇HR38(NR4A核受体家族的成员)的敲低减弱了这种p38依赖的黑色素化作用。在哺乳动物细胞中,p38磷酸化了哺乳动物NR4A和果蝇HR38,并增强了这些NR4A的功能,以激活含有NR4A结合元件的启动子,而这种激活至少部分取决于磷酸化作用。这表明p38 MAPK在NR4As调控中的进化保守作用。因此,通过NR4A的p38调控的基因诱导似乎在多巴胺合成途径中起作用,并且可能参与免疫和应激反应。

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