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用于肿瘤学医学实践的非编码RNA

Non-coding RNAs for medical practice in oncology.

作者信息

Setoyama Tetsuro, Ling Hui, Natsugoe Shoji, Calin George A

机构信息

Department of Experimental Therapeutics, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.

出版信息

Keio J Med. 2011;60(4):106-13. doi: 10.2302/kjm.60.106.

Abstract

Alterations in microRNA (miRNA) and other short or long non-coding RNA (ncRNA) are involved in the initiation, progression, and metastasis of human cancer. The main molecular alterations result from variations in gene expression, which are usually minor but have consequences for a vast number of target protein-coding genes. The causes of the widespread differential expression of ncRNAs in malignant cells compared with normal cells can be explained by the location of these genes in genomic regions associated with cancer, by epigenetic mechanisms, and by alterations in the processing machinery. Expression profiling of human tumors based on the expression of miRNAs and other short or long ncRNAs has identified signatures associated with diagnosis, staging, progression, prognosis, and response to treatment. In addition, profiling has been exploited to identify ncRNAs that may represent downstream targets of activated oncogenic pathways or that target protein-coding genes involved in cancer. Recent studies found that miRNAs and non-coding ultraconserved genes are the main candidates for the elusive class of cancer-predisposing genes and that other types of ncRNAs participate in the genetic puzzle that gives rise to the malignant phenotype. These discoveries could be exploited for the development of useful markers for diagnosis and prognosis in cancer, as well as for the development of new RNA-based cancer therapies.

摘要

微小RNA(miRNA)以及其他短链或长链非编码RNA(ncRNA)的改变参与了人类癌症的发生、发展和转移。主要的分子改变源于基因表达的变化,这些变化通常较小,但会对大量靶蛋白编码基因产生影响。与正常细胞相比,恶性细胞中ncRNA广泛差异表达的原因可以通过这些基因在与癌症相关的基因组区域中的位置、表观遗传机制以及加工机制的改变来解释。基于miRNA和其他短链或长链ncRNA的表达对人类肿瘤进行表达谱分析,已确定了与诊断、分期、进展、预后和治疗反应相关的特征。此外,表达谱分析已被用于鉴定可能代表激活的致癌途径下游靶点或靶向参与癌症的蛋白编码基因的ncRNA。最近的研究发现,miRNA和非编码超保守基因是难以捉摸的癌症易感基因类别的主要候选者,其他类型的ncRNA也参与了导致恶性表型的遗传谜题。这些发现可用于开发癌症诊断和预后的有用标志物,以及开发新的基于RNA的癌症治疗方法。

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