Age and the means of bypassing stasis influence the intrinsic subtype of immortalized human mammary epithelial cells.

Frontiers in Cell and Developmental Biology Pub Date : 2015-03-11 eCollection Date: 2015-01-01 DOI:10.3389/fcell.2015.00013
Jonathan K Lee, James C Garbe, Lukas Vrba, Masaru Miyano, Bernard W Futscher, Martha R Stampfer, Mark A LaBarge
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引用次数: 30

Abstract

Based on molecular features, breast cancers are grouped into intrinsic subtypes that have different prognoses and therapeutic response profiles. With increasing age, breast cancer incidence increases, with hormone receptor-positive and other luminal-like subtype tumors comprising a majority of cases. It is not known at what stage of tumor progression subtype specification occurs, nor how the process of aging affects the intrinsic subtype. We examined subtype markers in immortalized human mammary epithelial cell lines established following exposure of primary cultured cell strains to a two-step immortalization protocol that targets the two main barriers to immortality: stasis (stress-associated senescence) and replicative senescence. Cell lines derived from epithelial cells obtained from non-tumorous pre- and post-menopausal breast surgery tissues were compared. Additionally, comparisons were made between lines generated using two different genetic interventions to bypass stasis: transduction of either an shRNA that down-regulated p16(INK4A), or overexpressed constitutive active cyclin D1/CDK2. In all cases, the replicative senescence barrier was bypassed by transduction of c-Myc. Cells from all resulting immortal lines exhibited normal karyotypes. Immunofluorescence, flow cytometry, and gene expression analyses of lineage-specific markers were used to categorize the intrinsic subtypes of the immortalized lines. Bypassing stasis with p16 shRNA in young strains generated cell lines that were invariably basal-like, but the lines examined from older strains exhibited some luminal features such as keratin 19 and estrogen receptor expression. Overexpression of cyclin D1/CDK2 resulted in keratin 19 positive, luminal-like cell lines from both young and old strains, and the lines examined from older strains exhibited estrogen receptor expression. Thus age and the method of bypassing stasis independently influence the subtype of immortalized human mammary epithelial cells.

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年龄和绕过停滞的方法影响永生化人乳腺上皮细胞的内在亚型。
基于分子特征,乳腺癌被分为具有不同预后和治疗反应概况的内在亚型。随着年龄的增长,乳腺癌发病率增加,激素受体阳性和其他发光样亚型肿瘤占大多数。目前尚不清楚在肿瘤进展的哪个阶段发生亚型规范,也不知道衰老过程如何影响内在亚型。我们检测了永生化人乳腺上皮细胞系的亚型标记,这些细胞系是在原代培养细胞株暴露于两步永生化方案后建立的,该方案针对永生化的两个主要障碍:停滞(压力相关衰老)和复制衰老。从非肿瘤的绝经前和绝经后乳房手术组织中获得的上皮细胞衍生的细胞系进行了比较。此外,研究人员还对使用两种不同的遗传干预来绕过停滞的细胞系进行了比较:转导下调p16(INK4A)的shRNA,或过度表达构成型活性细胞周期蛋白D1/CDK2。在所有病例中,c-Myc的转导绕过了复制性衰老屏障。所有永生系的细胞都表现出正常的核型。利用免疫荧光、流式细胞术和谱系特异性标记的基因表达分析对永生化系的内在亚型进行分类。在年轻菌株中,用p16 shRNA绕过停滞期产生的细胞系总是基底样的,但从老年菌株中检测的细胞系显示出一些腔内特征,如角蛋白19和雌激素受体的表达。细胞周期蛋白D1/CDK2的过表达导致角蛋白19阳性,发光样细胞株从年轻和老年菌株,并检查从老年菌株的细胞株显示雌激素受体的表达。因此,年龄和旁路停滞的方法独立影响永生化人乳腺上皮细胞的亚型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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