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同源结构域蛋白Dlx3诱导磷酸化依赖性p63降解。

Homeodomain protein Dlx3 induces phosphorylation-dependent p63 degradation.

作者信息

Di Costanzo Antonella, Festa Luisa, Duverger Olivier, Vivo Maria, Guerrini Luisa, La Mantia Girolama, Morasso Maria I, Calabrò Viola

机构信息

Department of Structural and Molecular Biology, University of Naples, Naples, Italy.

出版信息

Cell Cycle. 2009 Apr 15;8(8):1185-95. doi: 10.4161/cc.8.8.8202. Epub 2009 Apr 16.

Abstract

The epidermis is a stratified epithelium which develops depending on the transcription factor p63, a member of the p53 family of transcription factors. p63 is strongly expressed in the innermost basal layer where highly proliferative epithelial cells reside. p63 functions as a molecular switch that initiates epithelial stratification or cell fate determination while regulating proliferation and differentiation of developmentally mature keratinocytes. p63 acts upstream of Dlx3 homeobox gene in a transcriptional regulatory pathway relevant to ectodermal dysplasia. Here we show that Dlx3 triggers p63 protein degradation by a proteasome-dependent pathway. Mutant DeltaNp63alpha in which Threonine397 and Serine383 were replaced with Alanine as well as C-terminal truncated versions of DeltaNp63alpha are resistant to Dlx3-mediated degradation. Transient expression of Dlx3 is associated with Raf1 phosphorylation. Dlx3 is unable to promote p63 degradation in Raf1 depleted MEF cells or upon pharmacological knockdown of Raf1. Our data support a previously unrecognized role for Dlx3 in posttranslational regulation of DeltaNp63alpha protein level, a mechanism that may contribute to reduce the abundance of DeltaNp63alpha during differentiation of stratified epithelia.

摘要

表皮是一种复层上皮组织,其发育依赖于转录因子p63,p63是p53转录因子家族的成员之一。p63在最内层的基底层中强烈表达,高度增殖的上皮细胞位于该层。p63作为一种分子开关,启动上皮分层或细胞命运决定,同时调节发育成熟的角质形成细胞的增殖和分化。在与外胚层发育异常相关的转录调控途径中,p63在Dlx3同源框基因的上游起作用。在此我们表明,Dlx3通过蛋白酶体依赖性途径触发p63蛋白降解。将苏氨酸397和丝氨酸383替换为丙氨酸的突变型DeltaNp63alpha以及DeltaNp63alpha的C末端截短版本对Dlx3介导的降解具有抗性。Dlx3的瞬时表达与Raf1磷酸化相关。在Raf1缺失的MEF细胞中或在Raf1的药理学敲低后,Dlx3无法促进p63降解。我们的数据支持Dlx3在DeltaNp63alpha蛋白水平的翻译后调控中具有先前未被认识的作用,这一机制可能有助于在复层上皮分化过程中降低DeltaNp63alpha的丰度。

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本文引用的文献

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