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胶质母细胞瘤肿瘤分级与突变型 p53 相关的 parkin 缺失相关,其结果是 p53 转录活性的功能丧失。

Glioma tumor grade correlates with parkin depletion in mutant p53-linked tumors and results from loss of function of p53 transcriptional activity.

机构信息

Institut de Pharmacologie Moléculaire et Cellulaire, UMR7275 CNRS/UNSA, team labeled 'Fondation pour la Recherche Médicale' and 'Laboratory of Excellence (LABEX) Distalz', Valbonne, France.

AP-HP, Service de Neurologie 2-Mazarin, Groupe Hospitalier Pitié-Salpêtrière, Université Pierre & Marie Curie Paris VI, Centre de Recherche de l'Institut du Cerveau et de la Moelle Epinière, UMRS 975, Paris, France.

出版信息

Oncogene. 2014 Apr 3;33(14):1764-75. doi: 10.1038/onc.2013.124. Epub 2013 May 6.

Abstract

Gliomas represent the most frequent form of primary brain tumors in adults, the prognosis of which remains extremely poor. Inactivating mutations on the tumor suppressor TP53 were proposed as a key etiological trigger of glioma development. p53 has been recently identified as a transcriptional target of parkin. Interestingly, somatic mutations on parkin have also been linked to glioma genesis. We examined the possibility that a disruption of a functional interaction between p53 and parkin could contribute to glioma development in samples devoid of somatic parkin mutations or genetic allele deletion. We show here that parkin levels inversely correlate to brain tumor grade and p53 levels in oligodendrogliomas, mixed gliomas and glioblastomas. We demonstrate that p53 levels negatively and positively correlate to bax and Bcl2 respectively, underlying a loss of p53 transcriptional activity in all types of glial tumors. Using various cell models lacking p53 or harboring either transcriptionally inactive or dominant negative p53, as well as in p53 knockout mice brain, we establish that p53 controls parkin promoter transactivation, mRNA and protein levels. Furthermore, we document an increase of parkin expression in mice brain after p53-bearing viral infection. Finally, both cancer-related p53 inactivating mutations and deletion of a consensus p53 binding sequence located on parkin promoter abolish p53-mediated control of parkin transcription, demonstrating that p53 regulates parkin transcription via its DNA binding properties. In conclusion, our work delineates a functional interplay between mutated p53 and parkin in glioma genesis that is disrupted by cancer-linked pathogenic mutations. It also allows envisioning parkin as a novel biomarker of glioma biopsies enabling to follow the progression of this type of cancers.

摘要

神经胶质瘤是成年人原发性脑肿瘤中最常见的形式,其预后仍然极差。肿瘤抑制因子 TP53 的失活突变被认为是神经胶质瘤发展的关键病因触发因素。p53 最近被鉴定为 parkin 的转录靶标。有趣的是,parkin 的体细胞突变也与神经胶质瘤的发生有关。我们研究了在没有体细胞 parkin 突变或遗传等位基因缺失的样本中,p53 和 parkin 之间功能相互作用的破坏是否可能导致神经胶质瘤的发展。我们在这里表明,parkin 水平与少突胶质细胞瘤、混合性神经胶质瘤和胶质母细胞瘤的脑肿瘤分级和 p53 水平呈负相关。我们证明 p53 水平分别与 bax 和 Bcl2 呈负相关和正相关,表明所有类型的神经胶质瘤肿瘤中 p53 的转录活性丧失。使用各种缺乏 p53 或携带转录失活或显性负 p53 的细胞模型,以及在 p53 敲除小鼠的大脑中,我们确定 p53 控制 parkin 启动子的转录激活、mRNA 和蛋白质水平。此外,我们记录了在 p53 携带的病毒感染后小鼠大脑中 parkin 表达的增加。最后,癌症相关的 p53 失活突变和位于 parkin 启动子上的一个共识 p53 结合序列的缺失都消除了 p53 对 parkin 转录的调控,证明 p53 通过其 DNA 结合特性调节 parkin 转录。总之,我们的工作描绘了突变型 p53 和 parkin 在神经胶质瘤发生中的功能相互作用,这种作用被与癌症相关的致病突变所破坏。它还允许将 parkin 视为神经胶质瘤活检的一种新的生物标志物,能够跟踪这种类型癌症的进展。

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