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MicroRNA Drop in the Bloodstream and MicroRNA Boost in the Tumour Caused by Treatment with Ribonuclease A Leads to an Attenuation of Tumour Malignancy

机译:核糖核酸酶A治疗导致血液中的MicroRNA下降和肿瘤中的MicroRNA增强导致肿瘤恶性程度降低

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摘要

Novel data showing an important role of microRNAs in mediating tumour progression opened a new field of possible molecular targets for cytotoxic ribonucleases. Recently, antitumour and antimetastatic activities of pancreatic ribonuclease A were demonstrated and here genome-wide profiles of microRNAs in the tumour and blood of mice bearing Lewis lung carcinoma after treatment with RNase A were analysed by high-throughput Sequencing by Oligonucleotide Ligation and Detection (SOLiD™) sequencing technology. Sequencing data showed that RNase A therapy resulted in the boost of 116 microRNAs in tumour tissue and a significant drop of 137 microRNAs in the bloodstream that were confirmed by qPCR. The microRNA boost in the tumour was accompanied by the overexpression of microRNA processing genes: RNASEN (Drosha), xpo5, dicer1, and eif2c2 (Ago2). Ribonuclease activity of RNase A was shown to be crucial for the activation of both microRNA synthesis and expression of the microRNA processing genes. In the tumour tissue, RNase A caused the upregulation of both oncomirs and tumour-suppressor microRNAs, including microRNAs of the let-7 family, known to negatively regulate tumour progression. Our results suggest that the alteration of microRNA signature caused by RNase A treatment leads to the attenuation of tumour malignancy.
机译:显示微RNA在介导肿瘤进展中起重要作用的新数据为细胞毒性核糖核酸酶的可能分子靶标开辟了新领域。最近,已证明了胰腺核糖核酸酶A的抗肿瘤和抗转移活性,这里通过寡核苷酸连接和检测(SOLiD)高通量测序分析了RNase A处理后的Lewis肺癌小鼠的肿瘤和血液中microRNA的全基因组分布。 ™)测序技术。测序数据显示,通过qPCR证实,RNase A治疗可增强肿瘤组织中的116个microRNA,并显着降低血液中的137个microRNA。肿瘤中的microRNA增强伴随着microRNA加工基因的过度表达:RNASEN(Drosha),xpo5,dicer1和eif2c2(Ago2)。已显示RNase A的核糖核酸酶活性对于激活微小RNA合成和微小RNA加工基因的表达至关重要。在肿瘤组织中,RNase A引起上皮癌和抑癌微RNA(包括let-7家族的微RNA)的上调,已知它们会负调控肿瘤的进展。我们的结果表明,RNase A治疗引起的microRNA标记改变导致肿瘤恶性程度降低。

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