Iorio Marilena V, Piovan Claudia, Croce Carlo M
Molecular Targeting Unit, Experimental Oncology Department, Fondazione IRCCS Istituto Nazionale Tumori, Milan, Italy.
Biochim Biophys Acta. 2010 Oct-Dec;1799(10-12):694-701. doi: 10.1016/j.bbagrm.2010.05.005. Epub 2010 May 20.
microRNAs take their place into the epigenetic world revealing a complicated network of reciprocal interconnections: not only they are able to control gene expression at a post-transcriptional level, thus representing a new important class of regulatory molecules, but they are also directly connected to the epigenetic machinery through a regulatory loop. Indeed, if epigenetic modifications, such as DNA methylation or histone acetylation, have been demonstrated to affect microRNA expression, and to be potentially responsible for the aberrant miRNA regulation observed in cancer, the other side of the coin is represented by the capacity of microRNAs to control the epigenetic machinery directly targeting its enzymatic components. This review will analyze and describe the regulatory loop interconnecting microRNAs and epigenetics, describing either how epigenetics can affect the miRNome, as well as how epi-miRNAs can control the epigenome, particularly focusing on the alterations observed in human cancer.
微小RNA在表观遗传领域占据一席之地,揭示了一个复杂的相互关联网络:它们不仅能够在转录后水平控制基因表达,从而成为一类新的重要调节分子,而且还通过一个调节环直接与表观遗传机制相连。事实上,虽然已经证明DNA甲基化或组蛋白乙酰化等表观遗传修饰会影响微小RNA的表达,并可能是癌症中观察到的异常微小RNA调节的原因,但另一方面,微小RNA能够通过直接靶向其酶成分来控制表观遗传机制。本综述将分析和描述连接微小RNA和表观遗传学的调节环,阐述表观遗传学如何影响微小RNA组,以及表观微小RNA如何控制表观基因组,特别关注在人类癌症中观察到的改变。