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对两个源自COMMA-Dβ的克隆进行微阵列和通路分析,揭示了与其发育能力相关的重要差异。

Microarray and pathway analysis of two COMMA-Dβ derived clones reveal important differences relevant to their developmental capacity .

作者信息

Johnson Jabril R, Boulanger Corinne A, Hudson Tamaro, Savage Evan, Smith Gilbert H

机构信息

Mammary Stem Cell Biology Section, Basic Research Laboratory, Center for Cancer Research, National Cancer Institute, Bethesda, MD 20892, USA.

Howard University Cancer Center, Washington, DC 20059, USA.

出版信息

Oncotarget. 2019 Mar 15;10(22):2118-2135. doi: 10.18632/oncotarget.26655.

Abstract

Microarray technologies were used to analyze transcriptomes from Comma-Dβ and clonal derivatives, SP3 (Lobule-competent) and NSP2 (Lobule-incompetent), during different mouse mammary growth phases: , 5-weeks, and 12-weeks. A differentially expressed gene (DEG) algorithm was used to enrich for genes associated with cellular proliferation, differentiation, cell cycle regulation, and carcinogenesis. A pairwise comparison analysis, of SP3 vs. NSP2 , revealed a total of 45 DEGs significantly up-regulated in SP3. Of the 45 DEGs, only Ccnd1 (Cyclin D1), Id2 (Inhibitor of DNA binding 2) and Sox9 (SRY Box 9) were identified to be associated with cellular proliferation, regulation of G1/S mitotic cell cycle, mammary gland and alveolar development in SP3. During the regenerative growth phase, 5-weeks, we identified a total of 545 DEGs. 308 DEGs, of the 545 DEGs, were significantly up-regulated and 237 DEGs were significantly down-regulated in SP3 vs. NSP2. In addition, we identified 9 DEGs significantly up-regulated, within SP3's cell cycle pathway and a persistent overexpression of Cyclin D1, Id2, and Sox9, consistent with our study. During the maintenance phase, 12-weeks, we identified 407 DEGs. Of these, 336 DEGs were up-regulated, and 71 were down-regulated in SP3 vs. NSP2. Our data shows 15 DEGs significantly up-regulated, simultaneously, affecting 8 signal transducing carcinogenic pathways. In conclusion, increased expression of Cyclin D1, Id2 and Sox9 appear to be important for lobular genesis in SP3. Also, 12 week displays increase expression of genes and pathways, involved in tumorigenesis.

摘要

利用微阵列技术分析了逗号-Dβ及其克隆衍生物SP3(具有小叶形成能力)和NSP2(不具有小叶形成能力)在小鼠乳腺不同生长阶段(5周和12周)的转录组。使用差异表达基因(DEG)算法来富集与细胞增殖、分化、细胞周期调控和致癌作用相关的基因。对SP3与NSP2进行的成对比较分析显示,共有45个差异表达基因在SP3中显著上调。在这45个差异表达基因中,只有Ccnd1(细胞周期蛋白D1)、Id2(DNA结合抑制因子2)和Sox9(SRY盒9)被确定与SP3中的细胞增殖、G1/S有丝分裂细胞周期调控、乳腺和肺泡发育相关。在再生生长阶段(5周),我们总共鉴定出545个差异表达基因。在这545个差异表达基因中,308个差异表达基因在SP3与NSP2比较中显著上调,237个差异表达基因显著下调。此外,我们在SP3的细胞周期途径中鉴定出9个显著上调的差异表达基因,以及细胞周期蛋白D1、Id2和Sox9的持续过表达,这与我们的研究一致。在维持阶段(12周),我们鉴定出407个差异表达基因。其中,336个差异表达基因上调,71个差异表达基因在SP3与NSP2比较中下调。我们的数据显示,有15个差异表达基因同时显著上调,影响8条信号转导致癌途径。总之,细胞周期蛋白D1、Id2和Sox9表达的增加似乎对SP3中的小叶发生很重要。此外,12周时显示出参与肿瘤发生的基因和途径的表达增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cd7/6481333/3cb46631181f/oncotarget-10-2118-g001.jpg

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