非编码rna的适应性意义:来自癌症生物学的见解。

IF 5.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular biology and evolution Pub Date : 2025-01-06 DOI:10.1093/molbev/msae269
John F McDonald
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引用次数: 0

摘要

适应性进化和癌症进展的分子基础都是复杂的过程,有许多惊人的相似之处。环境诱导的表观遗传变化的潜在适应性意义目前是进化和癌症生物学中非常感兴趣的领域。在癌症生物学领域,人们一直致力于研究应激诱导的非编码rna (ncRNAs)在激活与突变率升高和环境适应性性状获得相关的表观遗传变化中的作用。本文介绍了这一过程的例子,并结合最近的研究结果表明,应激诱导的ncrna可以从体细胞转移到种系细胞,从而导致获得性适应性性状的跨代遗传。事实上,ncRNAs与各种动植物对环境胁迫的短暂适应性反应有关,这与癌症生物学的发现是一致的。基于这些集体观察,我们提出了一个通用模型以及具体和可测试的假设,以说明瞬时ncrna介导的适应性反应如何促进癌症和进化中向长期生物适应的过渡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Adaptive Significance of Non-coding RNAs: Insights from Cancer Biology.

The molecular basis of adaptive evolution and cancer progression are both complex processes that share many striking similarities. The potential adaptive significance of environmentally-induced epigenetic changes is currently an area of great interest in both evolutionary and cancer biology. In the field of cancer biology intense effort has been focused on the contribution of stress-induced non-coding RNAs (ncRNAs) in the activation of epigenetic changes associated with elevated mutation rates and the acquisition of environmentally adaptive traits. Examples of this process are presented and combined with more recent findings demonstrating that stress-induced ncRNAs are transferable from somatic to germline cells leading to cross-generational inheritance of acquired adaptive traits. The fact that ncRNAs have been implicated in the transient adaptive response of various plants and animals to environmental stress is consistent with findings in cancer biology. Based on these collective observations, a general model as well as specific and testable hypotheses are proposed on how transient ncRNA-mediated adaptive responses may facilitate the transition to long-term biological adaptation in both cancer and evolution.

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来源期刊
Molecular biology and evolution
Molecular biology and evolution 生物-进化生物学
CiteScore
19.70
自引率
3.70%
发文量
257
审稿时长
1 months
期刊介绍: Molecular Biology and Evolution Journal Overview: Publishes research at the interface of molecular (including genomics) and evolutionary biology Considers manuscripts containing patterns, processes, and predictions at all levels of organization: population, taxonomic, functional, and phenotypic Interested in fundamental discoveries, new and improved methods, resources, technologies, and theories advancing evolutionary research Publishes balanced reviews of recent developments in genome evolution and forward-looking perspectives suggesting future directions in molecular evolution applications.
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