Rethinking cancer initiation: The role of large-scale mutational events

IF 3.1 2区 医学 Q2 GENETICS & HEREDITY Genes, Chromosomes & Cancer Pub Date : 2023-11-11 DOI:10.1002/gcc.23213
Amil Shah MDCM
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Abstract

Cancer initiation is revisited in light of recent discoveries in cancer pathogenesis. Of note is the detection of mutated cancer genes in benign conditions. More significantly, somatic clones, which harbor mutations in cancer genes, arise in normal tissues from early development through adulthood, but seldom do they transform into cancer. Further, clustered mutational events—kataegis, chromothripsis and chromoplexy—are widespread in cancer, generating point mutations and chromosomal rearrangements in a single cellular catastrophe. These observations are contrary to the prevailing somatic mutation theory, which states that a cancer is caused by the gradual accumulation of mutations over time. A different perspective is proposed within the framework of Waddington's epigenetic landscape wherein tumorigenesis is viewed primarily as a disruption of cell development. Cell types are defined by their specific gene-expression profiles, determined by the gene regulatory network, and can be regarded as attractor states of the network dynamics: they represent specific, self-stabilizing patterns of gene activities across the genome. However, large-scale mutational events reshape the landscape topology, creating abnormal “unphysiological” attractors. This is the crux of the process of initiation. Initiation primes the cell for conversion into a tumor phenotype by oncogenes and tumor suppressor genes, which drive cell proliferation and clonal diversification. This view of tumorigenesis calls for a different approach to therapy.

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重新思考癌症的起源:大规模突变事件的作用。
癌症起始是重新审视在癌症发病机制的最新发现。值得注意的是在良性条件下检测突变的癌基因。更重要的是,包含癌症基因突变的体细胞克隆,从早期发育到成年,在正常组织中出现,但很少转化为癌症。此外,聚集性突变事件,如kataegis, chromothripsis和chromoplexys,在癌症中广泛存在,在单个细胞突变中产生点突变和染色体重排。这些观察结果与流行的体细胞突变理论相反,该理论认为癌症是由突变随着时间的推移逐渐积累引起的。在Waddington的表观遗传景观框架内提出了不同的观点,其中肿瘤发生主要被视为细胞发育的破坏。细胞类型由其特定的基因表达谱定义,由基因调控网络决定,并且可以被视为网络动力学的吸引子状态:它们代表了整个基因组中特定的、自我稳定的基因活动模式。然而,大规模的突变事件重塑了景观拓扑结构,创造了异常的“非生理”吸引子。这是入会过程的关键。起始起始使细胞通过癌基因和肿瘤抑制基因转化为肿瘤表型,从而驱动细胞增殖和克隆多样化。这种肿瘤发生的观点需要一种不同的治疗方法。
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来源期刊
Genes, Chromosomes & Cancer
Genes, Chromosomes & Cancer 医学-遗传学
CiteScore
7.00
自引率
8.10%
发文量
94
审稿时长
4-8 weeks
期刊介绍: Genes, Chromosomes & Cancer will offer rapid publication of original full-length research articles, perspectives, reviews and letters to the editors on genetic analysis as related to the study of neoplasia. The main scope of the journal is to communicate new insights into the etiology and/or pathogenesis of neoplasia, as well as molecular and cellular findings of relevance for the management of cancer patients. While preference will be given to research utilizing analytical and functional approaches, descriptive studies and case reports will also be welcomed when they offer insights regarding basic biological mechanisms or the clinical management of neoplastic disorders.
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