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MicroRNA-17-3p is a prostate tumor suppressor in vitro and in vivo, and is decreased in high grade prostate tumors analyzed by laser capture microdissection

机译:MicroRNA-17-3p是体内和体外的前列腺肿瘤抑制因子,在通过激光捕获显微切割术分析的高级前列腺肿瘤中有所降低

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摘要

MicroRNAs (miRs) are a novel class of RNAs with important roles in regulating gene expression. To identify miRs controlling prostate tumor progression, we utilized unique human prostate sublines derived from the parental P69 cell line, which differ in their tumorigenic properties in vivo. Grown embedded in laminin-rich extracellular matrix (lrECM) gels these genetically-related sublines displayed drastically different morphologies correlating with their behaviour in vivo. The non-tumorigenic P69 subline grew as multicellular acini with a defined lumen and basal/polar expression of relevant marker proteins. M12, a highly tumorigenic, metastatic derivative, grew as a disorganized mass of cells with no polarization, whereas the F6 subline, a weakly tumorigenic, non-metastatic M12 variant, reverted to acini formation akin to the P69 cell line. These sublines also differed in expression of vimentin, which was high in M12, but low in F6 and P69 sublines. Analysis of vimentin’s conserved 3′-UTR suggested several miRs that could regulate vimentin expression. The lack of miR-17-3p expression correlated with an increase in vimentin synthesis and tumorigenicity. Stable expression of miR-17-3p in the M12 subline reduced vimentin levels 85% and reverted growth to organized, polarized acini in lrECM gels. In vitro motility and invasion assays suggested a decrease in tumorigenic behaviour, confirmed by reduced tumor growth in male athymic, nude mice dependent on miR-17-3p expression. Analysis of LCM-purified clinical human prostatectomy specimens confirmed that miR-17-3p levels were reduced in tumor cells. These results suggest that miR-17-3p functions as a tumor suppressor, representing a novel target to block prostate tumor progression.
机译:MicroRNA(miRs)是一类新颖的RNA,在调节基因表达中起重要作用。为了鉴定控制前列腺肿瘤进展的miR,我们利用了源自亲本P69细胞系的独特人类前列腺亚系,它们在体内的致瘤特性不同。这些与遗传相关的亚系生长在富含层粘连蛋白的细胞外基质(lrECM)凝胶中,其表现出与它们在体内的行为密切相关的形态。非致瘤性P69子系以多细胞腺泡生长,具有明确的内腔和相关标记蛋白的基础/极性表达。 M12是一种高度致瘤性的转移性衍生物,以无极性的细胞杂乱无章的形式生长,而F6子系(致癌性弱,非转移性的M12变体)则恢复为类似于P69细胞系的痤疮形成。这些亚线的波形蛋白表达也不同,在M12中高,但在F6和P69亚线中低。对波形蛋白的保守3'-UTR的分析表明,有几种miR可以调节波形蛋白的表达。 miR-17-3p表达的缺乏与波形蛋白合成和致瘤性的增加有关。 miR-17-3p在M12亚系中的稳定表达使lrECM凝胶中的波形蛋白水平降低了85%,并使生长恢复为有组织的极化腺泡。体外运动和侵袭试验表明,致瘤性行为减少,这通过依赖miR-17-3p表达的雄性无胸腺裸鼠的肿瘤生长减少而证实。对LCM纯化的临床人类前列腺切除术标本的分析证实,肿瘤细胞中的miR-17-3p水平降低。这些结果表明,miR-17-3p起到抑癌作用,代表阻断前列腺肿瘤进展的新靶标。

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