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Long Non-coding RNA Expression in Anaplastic Thyroid Carcinomas

机译:长型甲状腺癌中的长期非编码RNA表达

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Long non-coding RNAs (lncRNAs) participate in transcription and in epigenetic or post-transcriptional regulation of gene expression. They also have roles in epithelial to mesenchymal transition and in carcinogenesis. Because lncRNAs may also have a role in thyroid cancer progression, we examined a group of thyroid tumors which included papillary thyroid carcinomas and anaplastic thyroid carcinomas to determine the specific lncRNAs that were upregulated during thyroid tumor progression. An RT2 Profiler PCR Array Human Cancer Pathway Finder consisting of 84 lncRNAs (Qiagen) and fresh tissues of normal thyroid, PTCs, and ATCs with gene expression profiling was used to determine genes upregulated and downregulated in ATCs. Two of the most highly upregulated genes, prostate cancer antigen 3 (PCA3) and HOX antisense intergenic RNA myeloid 1 (HOTAIRM1 or HAM-1), were selected for further studies using a thyroid tissue microarray(TMA) with formalin-fixed paraffin-embedded tissues of normal thyroid (NT, n = 10), nodular goiters (NG, n = 10), follicular adenoma (FA, n = 32), follicular carcinoma (FCA, n = 28), papillary thyroid carcinoma (PTC, n = 28), follicular variant of papillary thyroid carcinoma (FVPTC, n = 28), and anaplastic thyroid carcinoma (ATC, n = 10). TMA sections were analyzed by in situ hybridization (ISH) using RNAscope technology. The results of ISH analyses were imaged with Vectra imaging technology and quantified with Nuance (R) and in Form (R) software. The TMA analysis was validated by qRT-PCR using FFPE tissues for RNA preparation. Cultured thyroid carcinoma cell lines (n = 7) were also used to analyze for lncRNAs by qRT-PCR. The results showed 11 lncRNAs upregulated and 7 downregulated lncRNAs more than twofold in the ATCS compared with PTCs. Two of the upregulated lncRNAs, PCA3 and HAM-1, were analyzed on a thyroid carcinoma TMA. There was increased expression of both lncRNAs in ATCs and PTCs compared with NT after TMA analysis. qRT-PCR analyses showed increased expression of both lncRNAs in ATCs compared with NT and PTCs. Analyses of these lncRNAs from cultured thyroid carcinoma cell lines by qRT-PCR showed the highest levels of lncRNA expression in ATCs. TGF-beta treatment of cultured PTC and ATC cells for 21 days led to increased expression of PCA3 lncRNA in both cell lines by day 14. These results show that the lncRNAs PCA3 and HAM-1 are upregulated during thyroid tumor development and progression and may function as oncogenes during tumor progression.
机译:长期非编码RNA(LNCRNA)参与转录和表观遗传或转录后的基因表达调控。它们还具有在上皮细胞间充质转变和致癌中的作用。由于LNCRNA也可能在甲状腺癌进展中具有作用,因此我们研究了一组包含乳头状甲状腺癌和芳香族甲状腺癌的一组甲状腺肿瘤,以确定在甲状腺肿瘤进展期间上调的特异性LNCRNA。使用由84克朗(QIAGEN)和具有基因表达分析的84个LNCRNA(QIAGEN)和新鲜组织组成的RT2分析仪PCR阵列人癌途径发现者,以及具有基因表达分析的ATC的新鲜组织,以确定在ATC中上调和下调基因。选择两种最高度上调的基因,前列腺癌抗原3(PCA3)和HOX反义的代读性亚霉菌RNA骨髓1(Hotism1或Ham-1),用于使用甲状腺组织微阵列(TMA)进行福尔马林固定的石蜡包埋的进一步研究正常甲状腺组织(NT,N = 10),结节孔剂(NG,N = 10),滤泡腺瘤(FA,N = 32),滤泡癌(FCA,N = 28),乳头状甲状腺癌(PTC,N = 28),乳头状甲状腺癌(FVPTC,N = 28)的滤泡变体和血吸虫甲状腺癌(ATC,N = 10)。通过使用Rnascope技术的原位杂交(ISH)分析TMA部分。 ISH分析结果与Vectra成像技术成像,并用Nuance(R)和形式(R)软件量化。使用FFPE组织进行RNA制剂,通过QRT-PCR验证TMA分析。培养的甲状腺癌细胞系(N = 7)也用于通过QRT-PCR分析LNCRNA。结果表明,与PTC相比,在ATC中升​​高了11个LNCRNA上调,7个下调的LNCRNA多于双重的。在甲状腺癌TMA上分析了两种上调的LNCRNA,PCA3和HAM-1。与TMA分析后NT相比,ATC和PTC中的LNCRNA和PTC中的表达增加了。与NT和PTC相比,QRT-PCR分析显示出ATC中的LNCRNA的表达增加。通过QRT-PCR从培养的甲状腺癌细胞系中分析这些LNCRNA在ATC的最高水平的LNCRNA表达。 TGF-β对培养的PTC和ATC细胞进行21天的治疗导致在14天的细胞系中增加了PCA3 LNCRNA的表达。这些结果表明,在甲状腺肿瘤发育和进展期间,LNCRNA3和HAM-1在甲状腺发育和进展期间上调作为肿瘤进展期间的癌素。

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