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Absence of keratins 8 and 18 expression in rodent epithelial cell lines associates with keratin gene mutation and DNA methylation: cell line selective effects on cell invasion

机译:啮齿动物上皮细胞系中缺乏角蛋白8和18的表达与角蛋白基因突变和DNA甲基化有关:细胞系对细胞侵袭的选择性作用

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摘要

Epithelial-mesenchymal transition (EMT) in carcinoma is associated with dramatic up-regulation of vimentin and down-regulation of the simple-type keratins 8 and 18 (K8/K18), but the mechanisms of these changes are poorly understood. We demonstrate that two commonly-studied murine (CT26) and rat (IEC-6) intestinal cell lines have negligible K8/K18 but high vimentin protein expression. Proteasome inhibition led to a limited increase in K18 but not K8 stabilization, thereby indicating that K8/K18 absence is not due, in large part, to increased protein turnover. CT26 and IEC-6 cells had <10% of normal K8/K18 mRNA and exhibited decreased mRNA stability, with K8 being higher in IEC-6 versus CT26 and K18 being higher in CT26 versus IEC-6 cells. Keratin gene sequencing showed that KRT8 in CT26 cells had a 21-nucleotide deletion while K18 in IEC-6 cells had a 9-amino acid in-frame insertion. Furthermore, the KRT8 promoter in CT26 and the KRT18 promoter in IEC-6 are hypermethylated. Inhibition of DNA methylation using 5-azacytidine increased K8 or K18 in some but all the tested rodent epithelial cell lines. Restoring K8 and K18 by lentiviral transduction reduced CT26 but not IEC-6 cell matrigel invasion. K8/K18 re-introduction also decreased E-cadherin expression in IEC-6 but not CT26 cells, suggesting that the effect of keratin expression on epithelial to mesenchymal transition is cell-line dependent. Therefore, some commonly utilized rodent epithelial cell lines, unexpectedly, manifest barely detectable keratin expression but have high levels of vimentin. In the CT26 and IEC-6 intestinal cell lines, keratin expression correlates with keratin gene insertion or deletion and with promoter methylation, which likely suppress keratin transcription or mRNA stability.
机译:癌中的上皮-间质转化(EMT)与波形蛋白的急剧上调和简单型角蛋白8和18(K8 / K18)的下调相关,但对这些变化的机制了解甚少。我们证明,两个经常研究的小鼠(CT26)和大鼠(IEC-6)肠细胞系的K8 / K18可以忽略不计,但是波形蛋白的表达却很高。蛋白酶体抑制导致K18的有限增加,但不引起K8稳定,因此表明K8 / K18的缺乏在很大程度上不是由于蛋白质更新增加。 CT26和IEC-6细胞的正常K8 / K18 mRNA低于<10%,并且mRNA稳定性下降,其中IEC-6中的K8高于CT26,CT26中的K18高于IEC-6。角蛋白基因测序表明,CT26细胞中的KRT8具有21个核苷酸的缺失,而IEC-6细胞中的K18具有9个氨基酸的框内插入。此外,CT26中的KRT8启动子和IEC-6中的KRT18启动子是高甲基化的。使用5-氮杂胞苷抑制DNA甲基化可在部分但所有测试的啮齿动物上皮细胞系中增加K8或K18。通过慢病毒转导恢复K8和K18可以减少CT26,但不能降低IEC-6细胞基质胶的侵袭。 K8 / K18的重新引入也降低了IEC-6细胞中E-cadherin的表达,但不降低CT26细胞,这表明角蛋白表达对上皮到间充质转化的作用是细胞系依赖性的。因此,出乎意料地,一些常用的啮齿动物上皮细胞系表现出几乎检测不到的角蛋白表达,但是具有高水平的波形蛋白。在CT26和IEC-6肠细胞系中,角蛋白的表达与角蛋白基因的插入或缺失以及启动子甲基化有关,后者可能会抑制角蛋白的转录或mRNA的稳定性。

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