首页> 外文会议>2011 IEEE 13th International Conference on e-Health Networking, Applications and Services >MicroRNA-mediated alteration of TET2 interaction network in myeloproliferative neoplasms
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MicroRNA-mediated alteration of TET2 interaction network in myeloproliferative neoplasms

机译:MicroRNA介导的骨髓增生性肿瘤中TET2相互作用网络的改变。

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Myeloproliferative neoplasms (MPNs) constitute a type of proliferative and dysplastic myeloid tumors, which are frequently found in the elderly people. Although some kinds of gene mutations in MPNs have been studied, the biological mechanisms behind this disease are still not very clear. Researchers have found that MPN patients with TET2 mutations have low level of 5hmC. However, they do not give reasons why there is also low level of 5hmC in patients with wild-type TET2. The aim of this study is to investigate into the role of TET2 and its interacting proteins in MPN under the repression by microRNAs. MicroRNAs are short, endogenous, non-coding RNA molecules, which regulate the target genes expression. We hypothesize that microRNAs lead to low level of 5hmC by down-regulating the expression of TET2 and other proteins interacting with TET2 in MPN patients with wild-type TET2, which is similar to the function of TET2 mutations. Bioinformatics tools were performed in this study. There were 11 databases considered, only 3 of which predicted microRNAs binding to TET2. Moreover, 10 proteins were found to be associated with TET2 according to STRING database and their targeting miRNA predictions was compared with that of TET2. The hypothesis can be supported by he predicted simultaneous repression of DNMT-1 and TET2 by miR-152.
机译:骨髓增生性肿瘤(MPN)构成了一种增生和发育异常的骨髓瘤,通常在老年人中发现。尽管已经研究了MPN中的某些基因突变,但该疾病背后的生物学机制仍然不是很清楚。研究人员发现,具有TET2突变的MPN患者的5hmC水平较低。但是,他们没有给出为什么野生型TET2患者的5hmC水平也较低的原因。这项研究的目的是调查microRNA抑制下TET2及其相互作用蛋白在MPN中的作用。 MicroRNA是短的,内源的非编码RNA分子,可调节靶基因的表达。我们假设在野生型TET2的MPN患者中,microRNAs通过下调TET2和与TET2相互作用的其他蛋白的表达而导致5hmC的低水平,这与TET2突变的功能相似。在这项研究中进行了生物信息学工具。考虑了11个数据库,其中只有3个预测了microRNA与TET2的结合。此外,根据STRING数据库,发现10种蛋白质与TET2相关,并将其靶向miRNA预测与TET2进行了比较。他预测miR-152会同时抑制DNMT-1和TET2,从而支持该假设。

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