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A study of neural-related microRNAs in the developing amphioxus

机译:发育中的两栖动物中神经相关microRNA的研究

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Background MicroRNAs are small noncoding RNAs regulating expression of protein coding genes at post-transcriptional level and controlling several biological processes. At present microRNAs have been identified in various metazoans and seem also to be involved in brain development, neuronal differentiation and subtypes specification. An approach to better understand the role of microRNAs in animal gene expression is to determine temporal and tissue-specific expression patterns of microRNAs in different model organisms. Therefore, we have investigated the expression of six neural related microRNAs in amphioxus, an organism having an important phylogenetic position in terms of understanding the origin and evolution of chordates. Results In amphioxus, all the microRNAs we examined are expressed in specific regions of the CNS, and some of them are correlated with specific cell types. In addition, miR-7, miR-137 and miR-184 are also expressed in endodermal and mesodermal tissues. Several potential targets expressed in the nervous system of amphioxus have been identified by computational prediction and some of them are coexpressed with one or more miRNAs. Conclusion We identified six miRNAs that are expressed in the nervous system of amphioxus in a variety of patterns. miR-124 is found in both differentiating and mature neurons, miR-9 in differentiated neurons, miR-7, miR-137 and miR-184 in restricted CNS regions, and miR-183 in cells of sensory organs. Therefore, such amphioxus miRNAs may play important roles in regional patterning and/or specification of neuronal cell types.
机译:背景技术MicroRNA是小的非编码RNA,在转录后水平调节蛋白质编码基因的表达并控制几种生物学过程。目前,microRNA已在各种后生动物中得到鉴定,似乎也参与了大脑发育,神经元分化和亚型规范。更好地了解microRNA在动物基因表达中的作用的一种方法是确定microRNA在不同模型生物中的时间和组织特异性表达模式。因此,我们已经研究了六种神经相关的microRNA在双歧杆菌中的表达。双歧杆菌是一种在理解和弦起源和进化方面具有重要系统发育地位的生物。结果在双歧杆菌中,我们检查的所有microRNA均在CNS的特定区域表达,其中一些与特定细胞类型相关。另外,miR-7,miR-137和miR-184也在内胚层和中胚层组织中表达。通过计算预测,已经确定了在两栖动物神经系统中表达的几个潜在靶标,其中一些与一种或多种miRNA共表达。结论我们鉴定了六种在文昌鱼的神经系统中表达的miRNA,其表达方式多种多样。在分化和成熟神经元中都发现了miR-124,在分化的神经元中发现了miR-9,在受限制的CNS区域中发现了miR-7,miR-137和miR-184,并在感觉器官的细胞中发现了miR-183。因此,这样的两栖类miRNA可能在神经元细胞类型的区域模式和/或规范中起重要作用。

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