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3D Mammary Epithelial Cell Models: A Goldmine of DCIS Biomarkers and Morphogenetic Mechanisms

机译:3D乳腺上皮细胞模型:DCIS生物标志物和形态发生机制的金矿。

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摘要

Breast ductal carcinoma in situ (DCIS) has been typically recognized by pathologists on the basis of aberrant mammary duct morphology. Thus, there are increasing efforts to detect DCIS biomarkers and druggable targets. In this study we focused on the molecular mechanism involving Annexin A8 (ANXA8), a Ca2+ and phospholipid binding protein, which is regulated by all-trans Retinoic Acid (RA), and it is highly expressed in breast DCIS tissue samples relative to atypical ductal hyperplasia, and normal breast tissue. Using a panel of human mammary epithelial HME1 cell lines that share a common protein signature, and develop in vitro three dimensional (3D) “DCIS-like” amorphous structures, we identified by bioinformatics analysis protein-miRNA pairs, potentially involved in mammary morphogenetic mechanisms, including the ANXA8 mechanism. HME1 cells with genetic mutations hampering the physiological RA regulation of the RA receptor alpha (RARA) transcriptional function, but retain the RARA function controlling the PI3KCA-AKT signaling, develop 3D “DCIS-like” amorphous structures with upregulated ANXA8. Consistently, ectopic ANXA8 expression, by affecting the RARA transcriptional function, induced HME1 DCIS-like amorphous acini expressing phosphorylated AKT (P-AKT). Apparently, a RA-RARA-ANXA8 feedback loop fosters a vicious circle of aberrant morphogenesis. Interestingly, a few miRNAs regulated by RA are predicted to target ANXA8 mRNA. These miRNAs are candidate components of the RA-RARA-ANXA8 mechanism, and their deregulation might induce DCIS initiation.
机译:乳腺原位导管癌(DCIS)通常已根据异常的乳腺导管形态被病理学家认可。因此,越来越多的努力来检测DCIS生物标志物和可药用靶标。在这项研究中,我们集中于涉及膜联蛋白A8(ANXA8),Ca 2 + 和磷脂结合蛋白的分子机制,该蛋白受全反式维甲酸(RA)调控,并高度表达相对于非典型导管增生的乳腺DCIS组织样本和正常乳腺组织。使用一组具有共同蛋白质特征的人类乳腺上皮HME1细胞系,并开发体外三维(3D)“ DCIS样”无定形结构,我们通过生物信息学分析鉴定了可能与乳腺形态发生机制有关的蛋白质-miRNA对,包括ANXA8机制。具有基因突变的HME1细胞阻碍了RA受体alpha(RARA)转录功能的生理RA调控,但保留了控制PI3KCA-AKT信号传导的RARA功能,并通过上调ANXA8形成了3D“ DCIS样”无定形结构。一致地,异位ANXA8表达通过影响RARA转录功能,诱导了HME1 DCIS样非晶态腺泡表达磷酸化AKT(P-AKT)。显然,RA-RARA-ANXA8反馈回路助长了异常形态发生的恶性循环。有趣的是,预计RA调控的一些miRNA会靶向ANXA8 mRNA。这些miRNA是RA-RARA-ANXA8机制的候选组件,它们的放松调控可能诱导DCIS的启动。

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