Protein Interaction Between p53 and △113p53 Is Required for the Anti-Apoptotic Function of △113p53 |
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作者姓名: | Zhao Ou Le Yin Changqing Chang Jinrong Peng Jun Chen |
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作者单位: | [1]College of Life Sciences, Zhejiang University, Hangzhou 310058, China [2]College of Animal Sciences, Zhejiang University, Hangzhou 310058, China [3]College of Natural Resources and Environment, South China Agricultural University, Guangzhou 510650, China |
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基金项目: | ACKNOWLEDGEMENTS This work was supported by the International Science and Technology Cooperation Program of China (No. 2013DFG32910), the National Natural Science Foundation of China (Nos. 31371491 and 30971677), and Zhejiang Provincial Natural Science Foundation of China (No. LZ 13C 120001). |
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摘 要: | Zebrafish △113p53, an N-terminal truncated p53 isoform, is a p53-target gene that antagonises p53-mediated apoptotic activity. Interestingly, △113p53 does not act on p53 in a dominant-negative manner, but rather interferes with the p53 function by differentially modulating p53-target gene expression to protect cells from apoptosis. Previous studies showed that over-expressed △113p53 and p53 proteins formed a complex. However, it is not known whether endogenous p53 and △113p53 proteins also interact with each other, and if this interaction is required for △113p53 to inhibit the apoptotic activity of full-length p53. In this study, we used two available zebrafish p53 antibodies to address these questions. One, Zfp53-N, only recognises full-length p53, whereas the other, Zfp53-A7C10, detects both full-length p53 and △113p53. Using Zfp53-N for immunoprecipitation and Zfp53-A7C 10 for detection, we demonstrated that endogenous △113p53 and full-length p53 induced by a DNA-damaging drug formed a complex in vivo. Furthermore, of the six △113p53 mutants we generated with different point mutations in the oligomerisation domain, two failed to interact with p53 and lost the ability to modulate p53-target gene expression and inhibit p53-induced cell apoptosis. However, those △113p53 mutants that could interact with p53 retained the ability to antagonise the apoptotic activity of p53. Therefore, our data demonstrated that protein--protein interaction between △113p53 and p53 is essential for the anti-apoptotic function of △113p53. In addition, the two △113p53 mutants that failed to interact with p53 are also useful for the study of the mechanisms of other functions of △113p53.
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关 键 词: | p53基因 相互作用 抗凋亡 蛋白质 p53蛋白 细胞凋亡 DNA损伤 靶基因 |
收稿时间: | 2013-07-30 |
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