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p53及其同源物p63和p73通过使NF-Y转录因子失活来诱导复制性衰老。

p53 and its homologues, p63 and p73, induce a replicative senescence through inactivation of NF-Y transcription factor.

作者信息

Jung M S, Yun J, Chae H D, Kim J M, Kim S C, Choi T S, Shin D Y

机构信息

National Research Laboratory for Cell Cycle Regulation, Department of Microbiology, Dankook University College of Medicine, Chonan, 330-714, Korea.

出版信息

Oncogene. 2001 Sep 13;20(41):5818-25. doi: 10.1038/sj.onc.1204748.


DOI:10.1038/sj.onc.1204748
PMID:11593387
Abstract

Recent studies have identified two p53 homologues, p63 and p73. They activate p53-responsive promoters and induce apoptosis when overexpressed in certain human tumors. Here, we report that p63, like p53 and p73, induces replicative senescence when expressed in a tetracycline-regulated manner in EJ cells lacking a functional p53. In addition to transcription activation of p53-responsive genes, we found that p63 and p73 repress transcription of the cdk1 and cyclin B genes, both of which are irreversibly repressed in senescent human fibroblast. In transient transfection assay, p63 and p73 repress the cdk1 promoter regardless of the presence of a dominant negative mutant form of p53. Furthermore, we found that DNA binding activity of NF-Y transcription factor, which is essential for transcription of the cdk1 and cyclin B genes and inactivated in senescent fibroblast, is significantly decreased by expression of either of p53, p63, or p73. Since NF-Y binds to many promoters besides the cdk1 and cyclin B promoters, inactivation of NF-Y by p53 family genes may be a general mechanism for transcription repression in replicative senescence.

摘要

最近的研究鉴定出了两种p53同源物,即p63和p73。它们在某些人类肿瘤中过表达时可激活p53反应性启动子并诱导细胞凋亡。在此,我们报告,与p53和p73一样,p63在缺乏功能性p53的EJ细胞中以四环素调控的方式表达时会诱导复制性衰老。除了激活p53反应性基因的转录外,我们发现p63和p73还会抑制cdk1和细胞周期蛋白B基因的转录,这两个基因在衰老的人类成纤维细胞中均被不可逆地抑制。在瞬时转染实验中,无论是否存在p53的显性负突变形式,p63和p73都会抑制cdk1启动子。此外,我们发现,cdk1和细胞周期蛋白B基因转录所必需且在衰老成纤维细胞中失活的NF-Y转录因子的DNA结合活性,会因p53、p63或p73的表达而显著降低。由于NF-Y除了与cdk1和细胞周期蛋白B启动子结合外,还与许多启动子结合,因此p53家族基因使NF-Y失活可能是复制性衰老中转录抑制的普遍机制。

相似文献

[1]
p53 and its homologues, p63 and p73, induce a replicative senescence through inactivation of NF-Y transcription factor.

Oncogene. 2001-9-13

[2]
P63 and P73: P53 mimics, menaces and more.

Nat Rev Mol Cell Biol. 2000-12

[3]
The p53-family members p63 and p73 inhibit insulin-like growth factor-I receptor gene expression in colon cancer cells.

Growth Horm IGF Res. 2005-12

[4]
The p53 family member genes are involved in the Notch signal pathway.

J Biol Chem. 2002-1-4

[5]
TAp63gamma (p51A) and dNp63alpha (p73L), two major isoforms of the p63 gene, exert opposite effects on the vascular endothelial growth factor (VEGF) gene expression.

Oncogene. 2002-4-11

[6]
p53 family update: p73 and p63 develop their own identities.

Cell Growth Differ. 2001-7

[7]
Tumor-specific p73 up-regulation mediates p63 dependence in squamous cell carcinoma.

Cancer Res. 2006-10-1

[8]
p63 and p73 are not required for the development and p53-dependent apoptosis of T cells.

Cancer Cell. 2004-7

[9]
Expression profiles and functional implications of p53-like transcription factors in thymic epithelial cell subtypes.

Int Immunol. 2004-6

[10]
Expression of cyclin-dependent kinase subunit 1 (Cks1) is regulated during the cell cycle by a CDE/CHR tandem element and is downregulated by p53 but not by p63 or p73.

Cell Cycle. 2007-4-1

引用本文的文献

[1]
p63: A Master Regulator at the Crossroads Between Development, Senescence, Aging, and Cancer.

Cells. 2025-1-3

[2]
The p53 family member p73 in the regulation of cell stress response.

Biol Direct. 2021-11-8

[3]
Identification of Age-Specific and Common Key Regulatory Mechanisms Governing Eggshell Strength in Chicken Using Random Forests.

Genes (Basel). 2020-4-24

[4]
p53-Related Transcription Targets of TAp73 in Cancer Cells-Bona Fide or Distorted Reality?

Int J Mol Sci. 2020-2-17

[5]
An LTR retrotransposon-derived lncRNA interacts with RNF169 to promote homologous recombination.

EMBO Rep. 2019-9-5

[6]
Activating p53 family member TAp63: A novel therapeutic strategy for targeting p53-altered tumors.

Cancer. 2019-4-23

[7]
The Roles of P53 and Its Family Proteins, P63 and P73, in the DNA Damage Stress Response in Organogenesis-Stage Mouse Embryos.

Toxicol Sci. 2018-4-1

[8]
Foxp3 is a key downstream regulator of p53-mediated cellular senescence.

Oncogene. 2016-5-30

[9]
p73 is required for endothelial cell differentiation, migration and the formation of vascular networks regulating VEGF and TGFβ signaling.

Cell Death Differ. 2015-8

[10]
Analysis of the p53/CEP-1 regulated non-coding transcriptome in C. elegans by an NSR-seq strategy.

Protein Cell. 2014-10

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