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首页> 外文期刊>Cancer biology & therapy >KLF4 and PCNA identify stages of tumor initiation in a conditional model of cutaneous squamous epithelial neoplasia.
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KLF4 and PCNA identify stages of tumor initiation in a conditional model of cutaneous squamous epithelial neoplasia.

机译:KLF4和PCNA在皮肤鳞状上皮瘤形成的条件模型中确定了肿瘤起始的阶段。

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KLF4 is induced upon growth-arrest in vitro and during epithelial maturation in vivo, and is essential for proper cell fate specification of post-mitotic cells. In spite of a normal role in post-mitotic cells, expression is upregulated and constitutive in certain tumor types. KLF4 functions as an oncogene in vitro, and enforced expression in basal cells of mouse skin rapidly induces lesions similar to hyperplasia, dysplasia and squamous cell carcinoma (SCC). Here we used conditional expression to characterize early steps in KLF4-mediated tumor initiation. In contrast to SCC-like lesions that result when using a conditional, keratin 14 promoter-dependent strategy, lower conditional expression achieved using a MMTV promoter induced only epidermal cycling within morphologically normal skin, a process we termed occult cell turnover. Surprisingly, KLF4-induced hyperplastic lesions showed increased transgene-derived mRNA and protein in maturing, PCNA-negative cells, a property of endogenous KLF4. In contrast, hyperplastic lesions induced by GLI1, a control, showed uniform transgene expression. In KLF4-induced dysplasia and SCC the complementarity of KLF4 and PCNA was replaced by concordance of the two proteins. These studies show that KLF4 transcripts are normally suppressed in cycling cells in a promoter-independent fashion, consistent with a post-transcriptional control, and reveal loss of this control in the transition from hyperplasia to dysplasia. Like the mouse tumors, human cutaneous SCCs and adjacent dysplasias frequently showed maturation-independence of KLF4, with co-expression of KLF4 and PCNA. A smaller subset of human SCCs showed complementarity of KLF4 and PCNA, similar to hyperplastic mouse skin. The results identify parallels between a mouse model and human primary tumors, and show that successive increases of KLF4 in the nuclei of basal keratinocytes leads to occult cell turnover followed by hyperplasia, dysplasia, and invasive SCC.
机译:KLF4在体外生长抑制和体内上皮成熟过程中被诱导,对于有丝分裂后细胞的正确细胞命运规格至关重要。尽管在有丝分裂后细胞中发挥正常作用,但在某些肿瘤类型中表达仍被上调和组成。 KLF4在体外起癌基因的作用,并且在小鼠皮肤基底细胞中的强制表达会迅速诱导类似于增生,异型增生和鳞状细胞癌(SCC)的损伤。在这里,我们使用条件表达来表征KLF4介导的肿瘤起始的早期步骤。与使用条件性角蛋白14启动子依赖性策略导致的SCC样损伤相反,使用MMTV启动子实现的较低条件表达仅诱导形态正常皮肤内的表皮循环,我们称此为隐性细胞更新。出乎意料的是,KLF4诱导的增生性病变在成熟的PCNA阴性细胞中显示出转基因衍生的mRNA和蛋白质增加,这是内源性KLF4的一种特性。相反,由对照GLI1诱导的增生性病变显示出均匀的转基因表达。在KLF4诱导的发育异常和SCC中,KLF4和PCNA的互补性被这两种蛋白的一致性所取代。这些研究表明,KLF4转录本通常在循环细胞中以不依赖启动子的方式被抑制,与转录后的控制一致,并揭示了从增生到发育不良的过渡过程中这种控制的丧失。像小鼠肿瘤一样,人皮肤SCC和邻近的异型增生经常表现出KLF4的成熟独立性,并与KLF4和PCNA共同表达。一小部分人SCC显示出KLF4和PCNA的互补性,类似于增生性小鼠皮肤。结果确定了小鼠模型与人类原发性肿瘤之间的相似性,并表明在基底角质形成细胞核中KLF4的连续增加导致隐性细胞更新,继而出现增生,发育异常和浸润性SCC。

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