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p53基因第4内含子中一个自然发生的4碱基对缺失产生了一系列具有抗凋亡功能的新型p53异构体。

A naturally occurring 4-bp deletion in the intron 4 of p53 creates a spectrum of novel p53 isoforms with anti-apoptosis function.

作者信息

Shi Hui, Tao Ting, Huang Delai, Ou Zhao, Chen Jun, Peng Jinrong

机构信息

MOE Key Laboratory for Molecular Animal Nutrition, College of Animal Sciences, Zhejiang University, 866 Yu Hang Tang Road, Hangzhou 310058, China.

College of Life Sciences, Zhejiang University, 866 Yu Hang Tang Road, Hangzhou 310058, China.

出版信息

Nucleic Acids Res. 2015 Jan;43(2):1035-43. doi: 10.1093/nar/gku1359. Epub 2014 Dec 29.

Abstract

p53 functions as a tumor suppressor by transcriptionally regulating the expression of genes involved in controlling cell proliferation or apoptosis. p53 and its isoform Δ133p53/Δ113p53 form a negative regulation loop in that p53 activates the expression of Δ133p53/Δ113p53 while Δ133p53/Δ113p53 specifically antagonizes p53 apoptotic activity. This pathway is especially important to safeguard the process of embryogenesis because sudden activation of p53 by DNA damage signals or developmental stress is detrimental to a developing embryo. Here we report the identification of five novel p53 isoforms. p53β is generated due to alternative splicing of the intron 8 of p53 while the other four, namely, TA2p53, TA3p53, TA4p53 and TA5p53, result from the combination of alternative splicing of intron 1 (within intron 4 of the p53 gene) of the Δ113p53 gene and a naturally occurring CATT 4 bp deletion within the alternative splicing product in zebrafish. The CATT 4 bp deletion creates four translation start codons which are in-frame to the open reading frame of Δ113p53. We also show that TAp53 shares the same promoter with Δ113p53 and functions to antagonize p53 apoptotic activity. The identification of Δ113p53/TA2/3/4/5p53 reveals a pro-survival mechanism which operates robustly during embryogenesis in response to the DNA-damage condition.

摘要

p53通过转录调控参与控制细胞增殖或凋亡的基因表达来发挥肿瘤抑制作用。p53及其异构体Δ133p53/Δ113p53形成一个负调控环,即p53激活Δ133p53/Δ113p53的表达,而Δ133p53/Δ113p53则特异性拮抗p53的凋亡活性。这一途径对于保障胚胎发育过程尤为重要,因为DNA损伤信号或发育应激导致的p53突然激活对发育中的胚胎是有害的。在此,我们报告鉴定出五种新的p53异构体。p53β是由于p53第8内含子的可变剪接产生的,而另外四种,即TA2p53、TA3p53、TA4p53和TA5p53,则是由Δ113p53基因第1内含子(在p53基因的第4内含子内)的可变剪接与斑马鱼可变剪接产物中自然发生的CATT 4 bp缺失相结合产生的。CATT 4 bp缺失产生了四个与Δ113p53开放阅读框读框一致的翻译起始密码子。我们还表明,TAp53与Δ113p53共享相同的启动子,并发挥拮抗p53凋亡活性的作用。Δ113p53/TA2/3/4/5p53的鉴定揭示了一种在胚胎发育过程中对DNA损伤状况作出强烈反应的促生存机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7568/4333405/073564f911ca/gku1359fig1.jpg

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