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Building Bridges toward Invasion: Tumor Promoter Treatment Induces a Novel Protein Kinase C-Dependent Phenotype in MCF10A Mammary Cell Acini

机译:搭建通向入侵的桥梁:肿瘤启动子治疗在MCF10A乳腺细胞Acini中诱导新型蛋白激酶C依赖性表型

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摘要

The potent tumor promoter 12-O-tetradecanoylphorbol-13-acetate (TPA) alters many cellular processes through activation of its receptor protein kinase C (PKC), including gene expression, cell cycle, and the regulation of cell morphology, raising an important question for developing targeted methods to prevent cancer: which effects of TPA are crucial for carcinogenesis? To address this question, we studied TPA action in the 3-dimensional (3D) MCF10A human breast epithelial cell system, which models important features of in vivo epithelial tissue including growth constraints, structural organization of cells, and establishment of a basement membrane. MCF10A cells, which are immortalized but nontumorigenic, form hollow, spheroid structures in 3D culture referred to as acini. The development of normal acini requires the tight spatiotemporal regulation of cellular proliferation, polarization, apoptosis, and growth arrest. Treatment of MCF10A acini with TPA caused the appearance of multi-acinar structures. Surprisingly, this phenotype did not involve an increase in cell number or major changes in cell death, and polarization. Instead, live cell and confocal microscopy revealed that TPA stimulates MCF10A acini to aggregate. TPA induces the PKC-dependent production of actin-based protrusions, which leads to the formation of cellular bridges between acini, the clustering of acini, and allows cells to move into adjacent acini. During this process, the integrity of the laminin V basement membrane is disrupted, while E-cadherin-based cell-cell contacts remain intact. Altogether, our results show that under the biochemical and structural constraints of epithelial tissue, as modeled by the 3D MCF10A system, TPA induces a novel PKC-dependent phenotype that resembles local invasion. Of the many effects caused by TPA, these studies highlight the aggressive production of actin-based cellular protrusions as a potentially important event along the pathway to carcinogenesis.
机译:强大的肿瘤启动子12-O-十四烷酰phorbol-13-乙酸酯(TPA)通过激活其受体蛋白激酶C(PKC)改变许多细胞过程,包括基因表达,细胞周期和细胞形态调节,这引发了一个重要问题开发预防性癌症的靶向方法:TPA的哪些作用对于致癌作用至关重要?为了解决这个问题,我们研究了三维(3D)MCF10A人乳腺上皮细胞系统中的TPA作用,该系统模拟了体内上皮组织的重要特征,包括生长限制,细胞的结构组织和基底膜的建立。永生化但无致瘤性的MCF10A细胞在称为腺泡的3D培养中形成空心球体结构。正常痤疮的发展需要严格的时空调节细胞增殖,极化,凋亡和生长停滞。用TPA处理MCF10A痤疮会引起多腺结构的出现。令人惊讶的是,该表型不涉及细胞数量的增加或细胞死亡和极化的重大变化。相反,活细胞和共聚焦显微镜检查表明,TPA刺激MCF10A痤疮聚集。 TPA诱导基于PKC的基于肌动蛋白的突起的产生,从而导致在腺泡之间形成细胞桥,腺泡成簇,并使细胞进入邻近的腺泡。在此过程中,层粘连蛋白V基底膜的完整性被破坏,而基于E-钙粘着蛋白的细胞间接触保持完整。总而言之,我们的结果表明,在3D MCF10A系统建模的上皮组织的生物化学和结构约束下,TPA诱导了类似于局部侵袭的新型PKC依赖性表型。在TPA引起的许多影响中,这些研究强调了基于肌动蛋白的细胞突起的积极产生,这是沿致癌途径的潜在重要事件。

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