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Δ160p53 蛋白的保守双翻译起始位点提示其在哺乳动物生理学中的关键作用。

Conserved Double Translation Initiation Site for Δ160p53 Protein Hints at Isoform's Key Role in Mammalian Physiology.

机构信息

MaRCU-Molecular and RNA Cancer Unit, Kyoto 606-8501, Japan.

Graduate School of Medicine, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Int J Mol Sci. 2022 Dec 13;23(24):15844. doi: 10.3390/ijms232415844.

Abstract

is the most commonly mutated gene in human cancers. Two fundamental reasons for this are its long protein isoforms protect from cancer, while its shorter C-terminal isoforms can support cancer and metastasis. Previously, we have shown that the Δ160p53 protein isoform enhances survival and the invasive character of cancer cells. Here, we identified a translation initiation site nine codons downstream of codon 160-the known initiation codon for the translation of Δ160p53-that is recognized by the translation machinery. When translation failed to initiate from AUG160 due to mutation, it initiated from AUG169 instead, producing similar levels of a similar protein, Δ169p53, which promoted cell survival as efficiently as Δ160p53 following DNA damage. Interestingly, almost all mammalian species with an orthologue to human AUG160 also possess one for AUG169, while none of the non-mammalian species lacking AUG160 have AUG169, even if that region of the gene is well conserved. In view of our findings, we do not believe that Δ169p53 acts as a different p53 protein isoform; instead, we propose that the double translation initiation site strengthens the translation of these products with a critical role in cell homeostasis. Future studies will help verify if this is a more general mechanism for the expression of essential proteins in mammals.

摘要

p53 基因是人类癌症中最常发生突变的基因。造成这种情况的两个基本原因是,其长的蛋白异构体能保护机体免受癌症的侵害,而其较短的 C 端异构体则能促进癌症和转移。以前,我们已经证明 Δ160p53 蛋白异构体增强了癌细胞的存活和侵袭特性。在这里,我们确定了一个翻译起始位点,该位点位于密码子 160 下游的 9 个密码子处,即已知的 Δ160p53 翻译的起始密码子,该位点被翻译机制所识别。当由于突变导致 AUG160 无法起始翻译时,它会从 AUG169 起始,产生类似水平的类似蛋白 Δ169p53,在 DNA 损伤后,它像 Δ160p53 一样有效地促进细胞存活。有趣的是,几乎所有具有与人 AUG160 同源物的哺乳动物物种都拥有一个 AUG169,而所有缺乏 AUG160 的非哺乳动物物种都没有 AUG169,即使该基因的这一区域得到了很好的保守。鉴于我们的发现,我们不认为 Δ169p53 作为一种不同的 p53 蛋白异构体发挥作用;相反,我们提出双翻译起始位点加强了这些产物的翻译,在细胞内稳态中具有关键作用。未来的研究将有助于验证这是否是哺乳动物中表达必需蛋白的更普遍机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ada/9779343/905035456224/ijms-23-15844-g001.jpg

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