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p53是角蛋白17的直接转录抑制因子:来自放射性皮炎大鼠模型的经验教训。

p53 Is a Direct Transcriptional Repressor of Keratin 17: Lessons from a Rat Model of Radiation Dermatitis.

作者信息

Liao Chunyan, Xie Guojiang, Zhu Liyan, Chen Xi, Li Xiaobo, Lu Haijie, Xu Benhua, Ramot Yuval, Paus Ralf, Yue Zhicao

机构信息

Institute of Life Sciences, Fuzhou University, Fuzhou, Fujian, China.

Department of Radiation Oncology, Union Hospital of Fujian Medical University, Fuzhou, Fujian, China.

出版信息

J Invest Dermatol. 2016 Mar;136(3):680-689. doi: 10.1016/j.jid.2015.12.021. Epub 2015 Dec 30.

Abstract

The intermediate filament protein keratin 17 (Krt17) shows highly dynamic and inducible expression in skin physiology and pathology. Because Krt17 exerts physiologically important functions beyond providing structural stability to keratinocytes whereas abnormal Krt17 expression is a key feature of dermatoses such as psoriasis and pachyonychia congenita, the currently unclear regulation of Krt17 expression needs to be better understood. Using a rat model of radiation dermatitis, we report here that Krt17 expression initially is down-regulated but later is strongly up-regulated by ionizing radiation. The early down-regulation correlates with the activation of p53 signaling. Deletion of p53 abolishes the initial down-regulation but not its subsequent up-regulation, suggesting that p53 represses Krt17 transcription. Because previous work reported up-regulation of Krt17 by ultraviolet irradiation, which also activates p53 signaling, the effect of ultraviolet radiation was reexamined. This revealed that the initial down-regulation of Krt17 is conserved, but the up-regulation comes much faster. Chromatin immunoprecipitation analysis in vivo and electromobility shift assay in vitro identified two p53-binding sites in the promoter region of Krt17. Thus, p53 operates as a direct Krt17 repressor, which invites therapeutic targeting in dermatoses characterized by excessive Krt17 expression.

摘要

中间丝蛋白角蛋白17(Krt17)在皮肤生理和病理过程中表现出高度动态且可诱导的表达。由于Krt17除了为角质形成细胞提供结构稳定性外还发挥着重要的生理功能,而Krt17的异常表达是诸如银屑病和先天性厚甲症等皮肤病的关键特征,因此目前尚不清楚的Krt17表达调控机制需要得到更好的理解。利用放射性皮炎大鼠模型,我们在此报告,Krt17的表达最初被下调,但随后因电离辐射而强烈上调。早期下调与p53信号通路的激活相关。p53的缺失消除了最初的下调,但并未消除随后的上调,这表明p53抑制Krt17转录。由于先前的研究报道紫外线照射可上调Krt17,而紫外线照射也会激活p53信号通路,因此我们重新研究了紫外线辐射的影响。结果表明,Krt17的最初下调是保守的,但上调来得更快。体内染色质免疫沉淀分析和体外电泳迁移率变动分析确定了Krt17启动子区域的两个p53结合位点。因此,p53作为Krt17的直接抑制因子,这为以Krt17表达过多为特征的皮肤病的治疗靶向提供了可能。

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