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Long-range gap junctional signaling controls oncogene-mediated tumorigenesis in Xenopus laevis embryos

机译:远程间隙连接信号控制非洲爪蟾胚胎癌基因介导的肿瘤发生。

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摘要

In addition to the immediate microenvironment, long-range signaling may be an important component of cancer. Molecular-genetic analyses have implicated gap junctions—key mediators of cell-cell communication—in carcinogenesis. We recently showed that the resting voltage potential of distant cell groups is a key determinant of metastatic transformation and tumor induction. Here, we show in the Xenopus laevis model that gap junctional communication (GJC) is a modulator of the long-range bioelectric signaling that regulates tumor formation. Genetic disruption of GJC taking place within tumors, within remote host tissues, or between the host and tumors significantly lowers the incidence of tumors induced by KRAS mutations. The most pronounced suppression of tumor incidence was observed upon GJC disruption taking place farther away from oncogene-expressing cells, revealing a role for GJC in distant cells in the control of tumor growth. In contrast, enhanced GJC communication through the overexpression of wild-type connexin Cx26 increased tumor incidence. Our data confirm a role for GJC in tumorigenesis, and reveal that this effect is non-local. Based on these results and on published data on movement of ions through GJs, we present a quantitative model linking the GJC coupling and bioelectrical state of cells to the ability of oncogenes to initiate tumorigenesis. When integrated with data on endogenous bioelectric signaling during left-right patterning, the model predicts differential tumor incidence outcomes depending on the spatial configurations of gap junction paths relative to tumor location and major anatomical body axes. Testing these predictions, we found that the strongest influence of GJ modulation on tumor suppression by hyperpolarization occurred along the embryonic left-right axis. Together, these data reveal new, long-range aspects of cancer control by the host's physiological parameters.
机译:除了直接的微环境,远程信号传导可能是癌症的重要组成部分。分子遗传学分析表明,在癌变过程中,间隙连接是细胞间通讯的关键介质。我们最近表明,远处细胞群的静息电位是转移转化和肿瘤诱导的关键决定因素。在这里,我们在非洲爪蟾(Xenopus laevis)模型中显示,间隙连接通讯(GJC)是调节肿瘤形成的远程生物电信号的调节剂。 GJC的遗传破坏发生在肿瘤内,远端宿主组织内或宿主与肿瘤之间,大大降低了KRAS突变诱导的肿瘤发生率。当GJC破坏发生在距表达癌基因的细胞较远的地方时,观察到最显着的肿瘤发生抑制,揭示了GJC在远处细胞中在控制肿瘤生长中的作用。相比之下,通过野生型连接蛋白Cx26的过表达来增强GJC通讯会增加肿瘤发生率。我们的数据证实了GJC在肿瘤发生中的作用,并揭示了这种作用是非局部的。基于这些结果和已发表的有关离子通过GJ的运动的数据,我们提出了定量模型,该模型将GJC偶联和细胞的生物电状态与癌基因启动肿瘤发生的能力联系起来。当在左右构图过程中与内源性生物电信号的数据集成时,该模型将根据间隙连接路径相对于肿瘤位置和主要解剖体轴的空间配置预测不同的肿瘤发生率。测试这些预测,我们发现GJ调制对超极化抑制肿瘤的最强影响发生在胚胎的左右轴上。这些数据一起揭示了通过宿主的生理参数控制癌症的新的,长期的方面。

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