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从遗传镶嵌到间接遗传效应导致的肿瘤发生。

From genetic mosaicism to tumorigenesis through indirect genetic effects.

机构信息

Toulouse Biotechnology Institute, INSA/University of Toulouse, CNRS, INRAE, Toulouse, France.

Institute of Environmental Radioactivity, Fukushima University, Kanayagawa, Fukushima, Japan.

出版信息

Bioessays. 2024 Jul;46(7):e2300238. doi: 10.1002/bies.202300238. Epub 2024 May 12.

Abstract

Genetic mosaicism has long been linked to aging, and several hypotheses have been proposed to explain the potential connections between mosaicism and susceptibility to cancer. It has been proposed that mosaicism may disrupt tissue homeostasis by affecting intercellular communications and releasing microenvironmental constraints within tissues. The underlying mechanisms driving these tissue-level influences remain unidentified, however. Here, we present an evolutionary perspective on the interplay between mosaicism and cancer, suggesting that the tissue-level impacts of genetic mosaicism can be attributed to Indirect Genetic Effects (IGEs). IGEs can increase the level of cellular stochasticity and phenotypic instability among adjacent cells, thereby elevating the risk of cancer development within the tissue. Moreover, as cells experience phenotypic changes in response to challenging microenvironmental conditions, these changes can initiate a cascade of nongenetic alterations, referred to as Indirect non-Genetic Effects (InGEs), which in turn catalyze IGEs among surrounding cells. We argue that incorporating both InGEs and IGEs into our understanding of the process of oncogenic transformation could trigger a major paradigm shift in cancer research with far-reaching implications for practical applications.

摘要

遗传嵌合现象长期以来一直与衰老有关,并且已经提出了几种假设来解释嵌合体与癌症易感性之间的潜在联系。有人提出,嵌合体可能通过影响细胞间通讯和释放组织内的微环境限制来破坏组织稳态。然而,驱动这些组织水平影响的潜在机制仍未确定。在这里,我们从进化的角度探讨了嵌合体和癌症之间的相互作用,提出遗传嵌合体的组织水平影响可以归因于间接遗传效应(IGE)。IGE 可以增加相邻细胞中细胞随机性和表型不稳定性的水平,从而增加组织内癌症发展的风险。此外,随着细胞对挑战性微环境条件做出表型变化,这些变化可以引发一系列非遗传改变,称为间接非遗传效应(InGE),进而在周围细胞中催化 IGE。我们认为,将 InGE 和 IGE 纳入我们对致癌转化过程的理解中,可能会引发癌症研究的重大范式转变,对实际应用产生深远影响。

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