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Enhanced metastasis in RNF13 knockout mice is mediated by a reduction in GM-CSF levels

机译:RNF13基因敲除小鼠中转移的增强是由GM-CSF水平的降低介导的

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RING finger protein 13 (RNF13) is a novel E3 ubiquitin ligase whose expression is associated with cancer development. However, its specific role in cancer progression and metastasis remains unclear. Here, a B16F10/LLC experimental pulmonary metastatic model was developed to examine the formation of metastatic foci in the lung. A greater number of tumor colonies were observed in the lungs of RNF13-knockout (KO) mice than in their wild-type (WT) littermates, whereas no significant differences in tumor size were observed between the two groups. In short-term experiments, the number of fluorescently-labeled B16F10 cells increased remarkably in RNF13-KO lungs at early time points, whereas clearance of tumor cells from the blood was not affected. These results indicated that RNF13 may inhibit the colonization of B16F10 cells in the lung. Assessment of the concentration of various cytokines in tumor bearing lungs and blood did not detect significant differences between the blood of RNF13-KO and WT mice; however the levels of GM-CSF were significantly reduced in RNF13-KO tumor bearing lungs, which may have guided more B16F10 cells to migrate to the lungs. This was confirmed by lower GM-CSF concentrations in conditioned media from the culture of RNF13-KO lung slices. Collectively, our results suggest that host RNF13 affects the concentration of GM-CSF in tumor-bearing lungs, leading to a reduction in the colonization of metastatic tumor cells in the lung
机译:RING手指蛋白13(RNF13)是一种新型E3泛素连接酶,其表达与癌症的发展有关。然而,其在癌症进展和转移中的具体作用仍不清楚。在这里,B16F10 / LLC实验性肺转移模型被开发来检查肺中转移灶的形成。与野生型(WT)同窝仔相比,RNF13基因敲除(KO)小鼠的肺中观察到更多的肿瘤菌落,而两组之间的肿瘤大小没有显着差异。在短期实验中,在早期时间点,RNF13-KO肺中荧光标记的B16F10细胞数量显着增加,而从血液中清除肿瘤细胞不受影响。这些结果表明RNF13可能抑制B16F10细胞在肺中的定殖。评估携带肿瘤的肺和血液中各种细胞因子的浓度并没有发现RNF13-KO和WT小鼠血液之间的显着差异。然而,带有RNF13-KO肿瘤的肺中GM-CSF的水平显着降低,这可能已经指导了更多的B16F10细胞迁移到肺中。通过RNF13-KO肺切片培养物中条件培养基中较低的GM-CSF浓度可以证实这一点。总体而言,我们的研究结果表明宿主RNF13影响携带肿瘤的肺中GM-CSF的浓度,从而导致转移性肿瘤细胞在肺中的定殖减少

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