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首页> 外文期刊>RNA biology >Abundant class of non-coding RNA regulates development in the social amoeba Dictyostelium discoideum
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Abundant class of non-coding RNA regulates development in the social amoeba Dictyostelium discoideum

机译:一类丰富的非编码RNA调节社交变形虫盘基网柄菌的发育

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摘要

Non-coding (nc)RNAs are important players in most biological processes. Although small RNAs such as microRNAs and small interfering RNAs have emerged as exceptionally important regulators of gene expression, great numbers of larger ncRNAs have also been identified. Many of these are abundant and differentially expressed but their functions have in most cases not been elucidated. The social amoeba Dictyostelium discoideum contain the ncRNAs commonly found in eukaryotes. In addition, we previously reported the identification of two novel classes of 42-65 nt long stemloop forming RNAs, Class I and Class II RNAs, with unknown function. In this study we have further characterized these abundant ncRNAs, which are downregulated during development. We have confirmed expression of 29 Class I RNAs and experimentally verified the formation of the computationally predicted short conserved stem structure. Furthermore, we have for the first time created knockout strains for several small ncRNA genes in D. discoideum and found that deletion of one of the Class I RNAs, DdR-21, results in aberrant development. In addition we have shown that this Class I RNA forms a complex with one or several proteins but do not appear to be associated with ribosomes or polysomes. In a pull down assay, several proteins interacting with DdR-21 were identified, one of these has two RNA recognition motifs (RRMs). The purified RRM containing protein was demonstrated to bind directly and specifically to DdR-21.
机译:在大多数生物学过程中,非编码(nc)RNA是重要的角色。尽管小RNA(如microRNA和小干扰RNA)已成为基因表达的异常重要调节剂,但也已鉴定出大量较大的ncRNA。其中许多功能丰富且差异表达,但在大多数情况下它们的功能尚未阐明。社会阿米巴盘基网柄菌含有真核生物中常见的ncRNA。此外,我们以前曾报道过鉴定功能未知的两类新的42-65 nt长茎环形成RNA,I类和II类RNA。在这项研究中,我们进一步表征了这些丰富的ncRNA,它们在发育过程中被下调。我们已经证实了29类I类RNA的表达,并通过实验验证了计算预测的短保守茎结构的形成。此外,我们首次为D. discoideum中的几个小ncRNA基因创建了敲除菌株,发现I类RNA之一DdR-21的缺失导致异常发育。另外,我们已经表明,该I类RNA与一种或几种蛋白质形成复合物,但似乎与核糖体或多核糖体不相关。在下拉分析中,鉴定了几种与DdR-21相互作用的蛋白质,其中一种具有两个RNA识别基序(RRM)。纯化的含有RRM的蛋白质被证明可以直接和特异性结合DdR-21。

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