Adams Brian D, Anastasiadou Eleni, Esteller Manel, He Lin, Slack Frank J
Cancer Res. 2015 Dec 15;75(24):5206-10. doi: 10.1158/0008-5472.CAN-15-1989.
This report summarizes information presented at the 2015 Keystone Symposium on "MicroRNAs and Noncoding RNAs in Cancer." Nearly two decades after the discovery of the first miRNA, the role of noncoding RNAs in developmental processes and the mechanisms behind their dysregulation in cancer has been steadily elucidated. Excitingly, miRNAs have begun making their way into the clinic to combat diseases such as hepatitis C and various forms of cancer. Therefore, at this Keystone meeting, novel findings were presented that enhance our view on how small and long noncoding RNAs control developmental timing and oncogenic processes. Recurring themes included (i) how miRNAs can be differentially processed, degraded, and regulated by ribonucleoprotein complexes, (ii) how particular miRNA genetic networks that control developmental process, when disrupted, can result in cancer disease, (iii) the technologies available to therapeutically deliver RNA to combat diseases such as cancer, and (iv) the elucidation of the mechanism of actions for long noncoding RNAs, currently a poorly understood class of noncoding RNA. During the meeting, there was an emphasis on presenting unpublished findings, and the breadth of topics covered reflected how inescapable the influence of noncoding RNAs is in development and cancer.
本报告总结了在2015年“癌症中的微小RNA和非编码RNA”凯斯通研讨会上所展示的信息。在首个微小RNA被发现近二十年后,非编码RNA在发育过程中的作用以及它们在癌症中失调背后的机制已逐步得以阐明。令人兴奋的是,微小RNA已开始进入临床,用于对抗诸如丙型肝炎和各种癌症等疾病。因此,在此次凯斯通会议上,展示了一些新发现,这些发现增进了我们对于小非编码RNA和长非编码RNA如何控制发育时间和致癌过程的认识。反复出现的主题包括:(i)微小RNA如何被核糖核蛋白复合物进行差异加工、降解和调控;(ii)控制发育过程的特定微小RNA基因网络在遭到破坏时如何导致癌症疾病;(iii)可用于治疗性递送RNA以对抗诸如癌症等疾病的技术;以及(iv)长非编码RNA作用机制的阐明,长非编码RNA是目前一类了解甚少的非编码RNA。会议期间,重点在于展示未发表的研究结果,所涵盖主题的广度反映出非编码RNA在发育和癌症中的影响是多么不可避免。