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Cell Fitness: More Than Push-Ups

机译:细胞健身:超过俯卧撑

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摘要

Cell competition (CC) is a feature that allows tumor cells to outcompete and eliminate adjacent cells that are deemed less fit. Studies of CC, first described in Drosophila melanogaster, reveal a diversity of underlying mechanisms. In this review, we will discuss three recent studies that expand our understanding of the molecular features governing CC. In particular, we will focus on a molecular fitness fingerprint, oncogenic pathways, and the importance of cell junction stability. A fitness fingerprint, mediated by flower (hFWE) protein isoforms, dictates that cells expressing the flower-win isoforms will outcompete adjacent flower-loss-expressing cells. The impact of the flower protein isoforms is seen in cancer progression and may have diagnostic potential. The yes-associated protein (YAP) and TAZ transcription factors, central mediators of the oncogenic Hippo pathway, elevate peritumoral fitness thereby protecting against tumor progression and provide a suppressive barrier. Similarly, COL17A1 is a key component in hemidesmosome stability, and its expression in epidermal stem cells contributes to fitness competition and aging characteristics. The contributions of these pathways to disease development and progression will help define how CC is hijacked to favor cancer growth. Understanding these features will also help frame the diagnostic and therapeutic possibilities that may place CC in the crosshairs of cancer therapeutics.
机译:细胞竞争(CC)是允许肿瘤细胞以不同的特征和消除被视为较少的相邻细胞。 CC的研究,首先在果蝇Melanogaster中描述,揭示了潜在机制的多样性。在本综述中,我们将讨论最近的三项研究,以扩大我们对CC的分子特征的理解。特别是,我们将专注于分子适应性指纹,致癌途径和细胞结稳定的重要性。由花(HFWE)蛋白质同种型介导的健身指纹,决定表达花卉赢得同种型的细胞将呈现相邻的花损失的细胞。在癌症进展中可以看到花蛋白质同种型的影响,并且可能具有诊断潜力。致癌河马途径的中央介质,致癌术,升高肿瘤进展并提供抑制屏障,致肿瘤进展并提供抑制屏障的肿瘤术蛋白(YAP)和TAZ转录因子。类似地,COL17A1是血液稳定性的关键组分,其表皮干细胞中的表达有助于适应性竞争和老化特征。这些途径对疾病发展和进展的贡献将有助于确定CC如何被劫持以支持癌症的增长。理解这些功能还将有助于框架可以在癌症治疗剂的十字准备中施加CC的诊断和治疗可能性。

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