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首页> 外文期刊>Future oncology >Low-fidelity compensatory backup alternative DNA repair pathways may unify current carcinogenesis theories
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Low-fidelity compensatory backup alternative DNA repair pathways may unify current carcinogenesis theories

机译:低保真的补偿性备用DNA修复途径可能会统一当前的致癌理论

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摘要

The somatic mutation carcinogenesis theory has dominated for decades. The alternative theory, tissue organization field theory, argues that the development of cancer is determined by the surrounding microenvironment. However, neither theory can explain all features of cancer. As cancers share the features of uncontrolled proliferation and genomic instability, they are likely to have the same pathogenesis. It has been found that various DNA repair pathways within a cell crosstalk with one another, forming a DNA repair network. When one DNA repair pathways is defective, the others may work as compensatory backups. The latter pathways are explored for synthetic lethal anticancer therapy. In this article, we extend the concept of compensatory alternative DNA repair to unify the theories. We propose that the microenvironmental stress can activate low-fidelity compensatory alternative DNA repair, causing mutations. If the mutation occurs to a DNA repair gene, this secondarily mutated gene can lead to even more mutated genes, including those related to other DNA repair pathways, eventually destabilizing the genome. Therefore, the low-fidelity compensatory alternative DNA repair may mediate microenvironment-dependent carcinogenesis. The proposal seems consistent with the view of evolution: the environmental stress causes mutations to adapt to the changing environment.
机译:几十年来,体细胞突变致癌理论一直占据主导地位。替代理论,组织组织场论认为,癌症的发展是由周围的微环境决定的。但是,这两种理论都不能解释癌症的所有特征。由于癌症具有不受控制的增殖和基因组不稳定的特征,因此它们可能具有相同的发病机理。已经发现,细胞内的各种DNA修复途径相互串扰,形成DNA修复网络。当一种DNA修复途径有缺陷时,其他途径可以作为补偿性后备。探索了用于合成致死抗癌治疗的后一种途径。在本文中,我们扩展了代偿性DNA修复的概念,以统一理论。我们建议,微环境压力可以激活低保真性替代性DNA修复,引起突变。如果DNA修复基因发生突变,则该第二次突变的基因可能导致更多的突变基因,包括与其他DNA修复途径相关的基因,最终使基因组不稳定。因此,低保真性替代性DNA修复可能介导微环境依赖的致癌作用。该提议似乎与进化论观点一致:环境压力导致突变以适应不断变化的环境。

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