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功能和发育上不同的人类前列腺上皮细胞群体的差异基因表达谱分析。

Differential gene expression profiling of functionally and developmentally distinct human prostate epithelial populations.

作者信息

Liu Haibo, Cadaneanu Radu M, Lai Kevin, Zhang Baohui, Huo Lihong, An Dong Sun, Li Xinmin, Lewis Michael S, Garraway Isla P

机构信息

Department of Urology, David Geffen School of Medicine at UCLA, Los Angeles, California; Jonsson Comprehensive Cancer Center, UCLA, Los Angeles, California.

出版信息

Prostate. 2015 May;75(7):764-76. doi: 10.1002/pros.22959. Epub 2015 Feb 7.

Abstract

BACKGROUND

Human fetal prostate buds appear in the 10th gestational week as solid cords, which branch and form lumens in response to androgen 1. Previous in vivo analysis of prostate epithelia isolated from benign prostatectomy specimens indicated that Epcam⁺ CD44⁻ CD49f(Hi) basal cells possess efficient tubule initiation capability relative to other subpopulations 2. Stromal interactions and branching morphogenesis displayed by adult tubule-initiating cells (TIC) are reminiscent of fetal prostate development. In the current study, we evaluated in vivo tubule initiation by human fetal prostate cells and determined expression profiles of fetal and adult epithelial subpopulations in an effort to identify pathways used by TIC.

METHODS

Immunostaining and FACS analysis based on Epcam, CD44, and CD49f expression demonstrated the majority (99.9%) of fetal prostate epithelial cells (FC) were Epcam⁺ CD44⁻ with variable levels of CD49f expression. Fetal populations isolated via cell sorting were implanted into immunocompromised mice. Total RNA isolation from Epcam⁺ CD44⁻ CD49f(Hi) FC, adult Epcam⁺ CD44⁻ CD49f(Hi) TIC, Epcam⁺ CD44⁺ CD49f(Hi) basal cells (BC), and Epcam⁺ CD44⁻ CD49f(Lo) luminal cells (LC) was performed, followed by microarray analysis of 19 samples using the Affymetrix Gene Chip Human U133 Plus 2.0 Array. Data was analyzed using Partek Genomics Suite Version 6.4. Genes selected showed >2-fold difference in expression and P < 5.00E-2. Results were validated with RT-PCR.

RESULTS

Grafts retrieved from Epcam⁺ CD44⁻ fetal cell implants displayed tubule formation with differentiation into basal and luminal compartments, while only stromal outgrowths were recovered from Epcam- fetal cell implants. Hierarchical clustering revealed four distinct groups determined by antigenic profile (TIC, BC, LC) and developmental stage (FC). TIC and BC displayed basal gene expression profiles, while LC expressed secretory genes. FC had a unique profile with the most similarities to adult TIC. Functional, network, and canonical pathway identification using Ingenuity Pathway Analysis Version 7.6 compiled genes with the highest differential expression (TIC relative to BC or LC). Many of these genes were found to be significantly associated with prostate tumorigenesis.

CONCLUSIONS

Our results demonstrate clustering gene expression profiles of FC and adult TIC. Pathways associated with TIC are known to be deregulated in cancer, suggesting a cell-of-origin role for TIC versus re-emergence of pathways common to these cells in tumorigenesis.

摘要

背景

人胎儿前列腺芽在妊娠第10周时表现为实性索状结构,其会分支并在雄激素作用下形成管腔。先前对从良性前列腺切除标本中分离出的前列腺上皮进行的体内分析表明,相对于其他亚群,Epcam⁺ CD44⁻ CD49f(Hi) 基底细胞具有高效的小管起始能力。成年小管起始细胞(TIC)所表现出的基质相互作用和分支形态发生让人联想到胎儿前列腺的发育。在本研究中,我们评估了人胎儿前列腺细胞的体内小管起始情况,并确定了胎儿和成年上皮亚群的表达谱,以努力识别TIC所使用的途径。

方法

基于Epcam、CD44和CD49f表达的免疫染色和FACS分析表明,大多数(99.9%)胎儿前列腺上皮细胞(FC)为Epcam⁺ CD44⁻,CD49f表达水平各异。通过细胞分选分离出的胎儿群体被植入免疫缺陷小鼠体内。从Epcam⁺ CD44⁻ CD49f(Hi) FC、成年Epcam⁺ CD44⁻ CD49f(Hi) TIC、Epcam⁺ CD44⁺ CD49f(Hi) 基底细胞(BC)和Epcam⁺ CD44⁻ CD49f(Lo) 管腔细胞(LC)中提取总RNA,随后使用Affymetrix Gene Chip Human U133 Plus 2.0 Array对19个样本进行微阵列分析。使用Partek Genomics Suite Version 6.4对数据进行分析。所选基因的表达差异>2倍且P < 5.00E - 2。结果用RT - PCR进行验证。

结果

从Epcam⁺ CD44⁻ 胎儿细胞植入物中取出的移植物显示出小管形成,并分化为基底和管腔部分,而从Epcam⁻ 胎儿细胞植入物中仅回收了基质生长物。层次聚类揭示了由抗原谱(TIC、BC、LC)和发育阶段(FC)确定的四个不同组。TIC和BC表现出基底基因表达谱,而LC表达分泌基因。FC具有独特的谱,与成年TIC最为相似。使用Ingenuity Pathway Analysis Version 7.6进行功能、网络和经典途径鉴定,汇编了差异表达最高的基因(TIC相对于BC或LC)。发现其中许多基因与前列腺肿瘤发生显著相关。

结论

我们的结果证明了FC和成年TIC的聚类基因表达谱。已知与TIC相关的途径在癌症中失调,这表明TIC在肿瘤发生中具有细胞起源作用,而不是这些细胞共有的途径重新出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b35/4409819/3151646f0b31/pros0075-0764-f1.jpg

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