首页> 外文期刊>The Journal of biological chemistry >The Antagonistic Action of B56-containing Protein Phosphatase 2As and Casein Kinase 2 Controls the Phosphorylation and Gli Turnover Function of Daz Interacting Protein 1
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The Antagonistic Action of B56-containing Protein Phosphatase 2As and Casein Kinase 2 Controls the Phosphorylation and Gli Turnover Function of Daz Interacting Protein 1

机译:B56蛋白磷酸酶2As和酪蛋白激酶2的拮抗作用对Daz相互作用蛋白1的磷酸化和Gli周转功能

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The Hedgehog (Hh) pathway is evolutionarily conserved and plays critical roles during embryonic development and adult tissue homeostasis. Defective Hh signaling has been linked to a wide range of birth defects and cancers. Hh family proteins regulate the expression of their downstream target genes through the control of proteolytic processing and the transcriptional activation function of Gli transcription factors. Although Hh-dependent regulation of Gli has been studied extensively, other Gli regulatory mechanisms remain relatively unappreciated. Here we report our identification of a novel signaling cascade that controls the stability of Gli proteins. This cascade consists of Daz interacting protein 1 (Dzip1), casein kinase 2 (CK2), and B56 containing protein phosphatase 2As (PP2As). We provide evidence that Dzip1 is involved in a novel Gli turnover pathway. We show that CK2 directly phosphorylates Dzip1 at four serine residues, Ser-664/665/706/714. B56-containing PP2As, through binding to a domain located between amino acid residue 474 and 550 of Dzip1, dephosphorylate Dzip1 on these CK2 sites. Our mutagenesis analysis further demonstrates that the unphosphorylatable form of Dzip1 is more potent in promoting Gli turnover. Consistently, we found that the stability of Gli proteins was decreased upon CK2 inhibition and increased by inhibition of B56-containing PP2As. Thus, reversible phosphorylation of Dzip1, which is controlled by the antagonistic action of CK2 and B56-containing PP2As, has an important impact on the stability of Gli transcription factors and Hh signaling.
机译:刺猬(HH)途径在胚胎发育和成人组织稳态期间进化地保守并发挥着关键作用。有缺陷的HH信号与各种出生缺陷和癌症有关。 HH系列蛋白通过控制蛋白水解加工和Gli转录因子的转录激活功能来调节其下游靶基因的表达。尽管广泛研究了HH依赖性调节,但其他GLI监管机制仍然不受批准。在这里,我们报告了我们对控制Gli蛋白稳定性的新型信号级联的识别。该级联由DAZ相互作用蛋白1(DZIP1),酪蛋白激酶2(CK2)和B56含有蛋白质磷酸酶2as(PP2As)组成。我们提供DZIP1参与新型GLI营业额途径的证据。我们表明CK2在四个丝氨酸残基,SER-664/665 / 706/714中直接磷酸化DZIP1。 B56的PP2As,通过与位于DzIP1的氨基酸残基474和550之间的域的结合,在这些CK2位点上的去磷酸盐酸酯DZIP1。我们的诱变分析进一步表明,在促进GLI营业额时,DZIP1的不磷酸化形式更有效。始终如一,我们发现在CK2抑制时降低Gli蛋白的稳定性,并通过抑制含B56的PP2As而增加。因此,由CK2和含B56的PP2As的拮抗作用控制的DZIP1的可逆磷酸化对GLI转录因子和HH信号传导的稳定性产生了重要影响。

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