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长寿的弓头鲸中的DNA修复与抗癌机制。

DNA repair and anti-cancer mechanisms in the long-lived bowhead whale.

作者信息

Firsanov Denis, Zacher Max, Tian Xiao, Sformo Todd L, Zhao Yang, Tombline Greg, Lu J Yuyang, Zheng Zhizhong, Perelli Luigi, Gurreri Enrico, Zhang Li, Guo Jing, Korotkov Anatoly, Volobaev Valentin, Biashad Seyed Ali, Zhang Zhihui, Heid Johanna, Maslov Alex, Sun Shixiang, Wu Zhuoer, Gigas Jonathan, Hillpot Eric, Martinez John, Lee Minseon, Williams Alyssa, Gilman Abbey, Hamilton Nicholas, Haseljic Ena, Patel Avnee, Straight Maggie, Miller Nalani, Ablaeva Julia, Tam Lok Ming, Couderc Chloé, Hoopman Michael, Moritz Robert, Fujii Shingo, Hayman Dan J, Liu Hongrui, Cai Yuxuan, Leung Anthony K L, Simons Mirre J P, Zhang Zhengdong, Nelson C Bradley, Abegglen Lisa M, Schiffman Joshua D, Gladyshev Vadim N, Modesti Mauro, Genovese Giannicola, Vijg Jan, Seluanov Andrei, Gorbunova Vera

机构信息

Department of Biology, University of Rochester, Rochester, NY, USA.

Department of Wildlife Management, North Slope Borough, Utqiaġvik (Barrow), AK 99723, USA.

出版信息

bioRxiv. 2024 Nov 5:2023.05.07.539748. doi: 10.1101/2023.05.07.539748.

Abstract

At over 200 years, the maximum lifespan of the bowhead whale exceeds that of all other mammals. The bowhead is also the second-largest animal on Earth, reaching over 80,000 kg. Despite its very large number of cells and long lifespan, the bowhead is not highly cancer-prone, an incongruity termed Peto's Paradox. This phenomenon has been explained by the evolution of additional tumor suppressor genes in other larger animals, supported by research on elephants demonstrating expansion of the p53 gene. Here we show that bowhead whale fibroblasts undergo oncogenic transformation after disruption of fewer tumor suppressors than required for human fibroblasts. However, analysis of DNA repair revealed that bowhead cells repair double strand breaks (DSBs) and mismatches with uniquely high efficiency and accuracy compared to other mammals. The protein CIRBP, implicated in protection from genotoxic stress, was present in very high abundance in the bowhead whale relative to other mammals. We show that CIRBP and its downstream protein RPA2, also present at high levels in bowhead cells, increase the efficiency and fidelity of DNA repair in human cells. These results indicate that rather than possessing additional tumor suppressor genes as barriers to oncogenesis, the bowhead whale relies on more accurate and efficient DNA repair to preserve genome integrity. This strategy which does not eliminate damaged cells but repairs them may be critical for the long and cancer-free lifespan of the bowhead whale.

摘要

弓头鲸的最长寿命超过200年,超过了所有其他哺乳动物。弓头鲸也是地球上第二大动物,体重超过8万千克。尽管其细胞数量众多且寿命很长,但弓头鲸并不容易患癌症,这种不一致性被称为佩托悖论。对大象的研究表明p53基因发生了扩增,支持了其他大型动物中额外肿瘤抑制基因的进化这一观点,从而解释了这一现象。在这里,我们表明,与人类成纤维细胞相比,弓头鲸成纤维细胞在较少的肿瘤抑制因子被破坏后就会发生致癌转化。然而,对DNA修复的分析表明,与其他哺乳动物相比,弓头鲸细胞修复双链断裂(DSB)和错配的效率和准确性极高。与其他哺乳动物相比,与保护免受基因毒性应激有关的蛋白质CIRBP在弓头鲸中的含量非常高。我们表明,CIRBP及其下游蛋白RPA2在弓头鲸细胞中也高水平存在,它们提高了人类细胞中DNA修复的效率和保真度。这些结果表明,弓头鲸并非拥有额外的肿瘤抑制基因作为肿瘤发生的障碍,而是依靠更准确、高效的DNA修复来保持基因组完整性。这种不消除受损细胞而是修复它们的策略可能是弓头鲸长寿且无癌的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee04/11580846/1adf37d558a1/nihpp-2023.05.07.539748v3-f0006.jpg

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