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Glioma microvesicles carry selectively packaged coding and noncoding RNAs which alter gene expression in recipient cells

机译:胶质瘤微泡带有选择性包装的编码和非编码RNA,可改变受体细胞中的基因表达

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Interactions between glioma cells and their local environment are critical determinants of brain tumor growth, infiltration and neovascularisation. Communication with host cells and stroma via microvesicles represents one pathway by which tumors can modify their surroundings to achieve a tumor-permissive environment. Here we have taken an unbiased approach to identifying RNAs in glioma-derived microvesicles, and explored their potential to regulate gene expression in recipient cells. We find that glioma microvesicles are predominantly of exosomal origin and contain complex populations of coding and noncoding RNAs in proportions that are distinct from those in the cells from which they are derived. Microvesicles show a relative depletion in microRNA compared with their cells of origin, and are enriched in unusual or novel noncoding RNAs, most of which have no known function. Short-term exposure of brain microvascular endothelial cells to glioma microvesicles results in many gene expression changes in the endothelial cells, most of which cannot be explained by direct delivery of transcripts. Our data suggest that the scope of potential actions of tumor-derived microvesicles is much broader and more complex than previously supposed, and highlight a number of new classes of small RNA that remain to be characterized.
机译:胶质瘤细胞与其局部环境之间的相互作用是脑肿瘤生长,浸润和新血管形成的关键决定因素。经由微囊泡与宿主细胞和基质的通讯代表了一种途径,肿瘤可以通过该途径改变其周围环境,从而达到允许肿瘤的环境。在这里,我们采用了一种无偏见的方法来鉴定神经胶质瘤来源的微泡中的RNA,并探讨了它们调节受体细胞中基因表达的潜力。我们发现神经胶质瘤微囊泡主要来自外泌体,并包含复杂的编码和非编码RNA群体,其比例不同于其来源细胞中的比例。与它们的起源细胞相比,微泡在microRNA中显示出相对耗竭,并富含不寻常或新颖的非编码RNA,其中大多数都不具有已知功能。脑微血管内皮细胞对神经胶质瘤微泡的短期暴露导致内皮细胞中许多基因表达的改变,其中大部分不能通过直接传递转录本来解释。我们的数据表明,肿瘤微泡的潜在作用范围比以前设想的要广得多,也更复杂,并突出了许多尚待表征的新型小RNA。

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