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A Similar Speciation Process Relying on Cellular Stochasticity in Microbial and Cancer Cell Populations

机译:依赖于微生物和癌细胞群体细胞随机性的类似物种方法

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摘要

Similarities between microbial and cancer cells were noticed in recent years and serve as a basis for an atavism theory of cancer. Cancer cells would rely on the reactivation of an ancestral “genetic program” that would have been repressed in metazoan cells. Here we argue that cancer cells resemble unicellular organisms mainly in their similar way to exploit cellular stochasticity to produce cell specialization and maximize proliferation. Indeed, the relationship between low stochasticity, specialization, and quiescence found in normal differentiated metazoan cells is lost in cancer. On the contrary, low stochasticity and specialization are associated with high proliferation among cancer cells, as it is observed for the “specialist” cells in microbial populations that fully exploit nutritional resources to maximize proliferation. Thus, we propose a model where the appearance of cancer phenotypes can be solely due to an adaptation and a speciation process based on initial increase in cellular stochasticity.
机译:近年来注意到微生物和癌细胞之间的相似性,并作为癌症的阿特纳维主义理论的基础。癌细胞将依赖于在甲基细胞中被压抑的祖先“遗传计划”的再激活。在这里,我们认为癌细胞主要是单细胞生物,主要是它们类似的方式来利用细胞随机性产生细胞专业化并最大化增殖。实际上,在正常分化的美化细胞中发现的低随机性,专业化和静脉之间的关系在癌症中丧失。相反,低随机性和专业化与癌细胞中的高增殖相关,因为它被观察到微生物群体中的“专业”细胞,充分利用营养资源以最大化增殖。因此,我们提出了一种模型,其中癌症表型的外观可以完全是由于基于细胞随机性初始增加的适应性和物种过程。

著录项

  • 期刊名称 iScience
  • 作者单位
  • 年(卷),期 2020(23),9
  • 年度 2020
  • 页码 101531
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:生态学;进化生物学;癌症;

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