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p53介导的人多囊肾病-1启动子抑制机制。

Mechanisms of p53-mediated repression of the human polycystic kidney disease-1 promoter.

作者信息

van Bodegom Diederik, Roessingh Wijnand, Pridjian Andrew, El Dahr Samir S

机构信息

Department of Pediatrics, Section of Pediatric Nephrology, Tulane University Health Sciences Center, New Orleans, LA 70112, USA.

出版信息

Biochim Biophys Acta. 2010 Jul;1799(7):502-9. doi: 10.1016/j.bbagrm.2010.04.001. Epub 2010 Apr 11.

Abstract

We previously reported that the tumor suppressor protein p53 participates in a negative feedback loop to fine-tune PKD1 gene expression. This physiological pathway is believed to prevent polycystin-1 overexpression and thus renal cysts. The present study examined the mechanisms of p53-mediated repression of PKD1. The 5'-upstream region of the human PKD1 gene is TATA-less, GC-rich, and contains four consensus p53 binding sites at positions -2.7 kb (BS4), -1.2 kb (BS3), -0.8 kb (BS2), and -0.2 kb (BS1), respectively. PKD1BS1-4 are bound to endogenous p53 in vivo and in vitro. Transient transfection assays in inner medullary collecting duct cells revealed that disruption of PKD1BS1 enhances baseline PKD1 promoter activity; in contrast, disruption of PKD1BS4 suppressed PKD1 transcription. PKD1BS1 confers p53-mediated repression when substituted for the p53 enhancer element in the bradykinin B2 receptor gene, indicating that PKD1BS1 is a bona fide p53 repressor element. Moreover, PKD1BS1 requires intact BS2-4 and cellular histone deacetylase activity for full functional activity. Indeed, the PKD1BS1/4 regions are occupied by a complex containing HDAC1/2 and mSin3. These findings suggest a model whereby p53 exerts a biphasic control on PKD1 gene transcription, depending on cellular context and the cognate cis-acting element.

摘要

我们之前报道过,肿瘤抑制蛋白p53参与一个负反馈环以微调PKD1基因的表达。据信这一生理途径可防止多囊蛋白-1的过度表达,从而预防肾囊肿。本研究检测了p53介导的对PKD1的抑制机制。人PKD1基因的5'-上游区域无TATA盒,富含GC,并且分别在-2.7 kb(BS4)、-1.2 kb(BS3)、-0.8 kb(BS2)和-0.2 kb(BS1)位置含有四个共有p53结合位点。PKD1BS1-4在体内和体外均与内源性p53结合。在内髓集合管细胞中进行的瞬时转染试验显示,破坏PKD1BS1可增强PKD1启动子的基础活性;相反,破坏PKD1BS4则抑制PKD1转录。当用PKD1BS1替代缓激肽B2受体基因中的p53增强子元件时,PKD1BS1可赋予p53介导的抑制作用,这表明PKD1BS1是一个真正的p53抑制元件。此外,PKD1BS1需要完整的BS2-4和细胞组蛋白去乙酰化酶活性才能发挥全部功能活性。实际上,PKD1BS1/4区域被一个包含HDAC1/2和mSin3的复合物占据。这些发现提示了一个模型,即p53根据细胞环境和相关顺式作用元件对PKD1基因转录发挥双相调控作用。

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本文引用的文献

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Retinoic acid-dependent activation of the polycystic kidney disease-1 (PKD1) promoter.
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10

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