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MicroRNA transcriptome analysis identifies miR-365 as a novel negative regulator of cell proliferation in Zmpste24-deficient mouse embryonic fibroblasts

机译:MicroRNA转录组分析确定miR-365是Zmpste24缺陷型小鼠胚胎成纤维细胞中细胞增殖的新型负调控因子

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摘要

Zmpste24 is a metalloproteinase responsible for the posttranslational processing and cleavage of prelamin A into mature laminA. Zmpste24-/- mice display a range of progeroid phenotypes overlapping with mice expressing progerin, an altered version of lamin A associated with Hutchinson-Gilford progeria syndrome (HGPS). Increasing evidence has demonstrated that miRNAs contribute to the regulation of normal aging process, but their roles in progeroid disorders remain poorly understood. Here we report the miRNA transcriptomes of mouse embryonic fibroblasts (MEFs) established from wild type (WT) and Zmpste24-/- progeroid mice using a massively parallel sequencing technology. With data from 19.5 ×106 reads from WT MEFs and 16.5 × 106 reads from Zmpste24-/- MEFs, we discovered a total of 306 known miRNAs expressed in MEFs with a wide dynamic range of read counts ranging from 10 to over 1 million. A total of 8 miRNAs were found to be significantly down-regulated, with only 2 miRNAs upregulated, in Zmpste24-/- MEFs as compared to WT MEFs. Functional studies revealed that miR-365, a significantly down-regulated miRNA in Zmpste24-/- MEFs, modulates cellular growth phenotypes in MEFs. Overexpression of miR-365 in Zmpste24-/- MEFs increased cellular proliferation and decreased the percentage of SA-β-gal-positive cells, while inhibition of miR-365 function led to an increase of SA-β-gal-positive cells in WT MEFs. Furthermore, we identified Rasd1, a member of the Ras superfamily of small GTPases, as a functional target of miR-365. While expression of miR-365 suppressed Rasd1 3′UTR luciferase-reporter activity, this effect was lost with mutations in the putative 3′UTR target-site. Consistently, expression levels of miR-365 were found to inversely correlate with endogenous Rasd1 levels. These findings suggest that miR-365 is down-regulated in Zmpste24-/- MEFs and acts as a novel negative regulator of Rasd1. Our comprehensive miRNA data provide a resource to study gene regulatory networks in MEFs.
机译:Zmpste24是一种金属蛋白酶,负责翻译前加工和将前蛋白A切割成成熟的laminA。 Zmpste24 -/-小鼠与表达progerin(一种与Hutchinson-Gilford早衰综合症(HGPS)相关的层粘连蛋白A的变体)的小鼠重叠,显示出一系列早衰表型。越来越多的证据表明,miRNA有助于正常衰老过程的调节,但其在早衰症中的作用仍然知之甚少。在这里,我们报告使用大规模并行测序技术从野生型(WT)和Zmpste24 -/-早衰小鼠建立的小鼠胚胎成纤维细胞(MEF)的miRNA转录组。利用来自WT MEF的19.5×10 6 读取的数据和来自Zmpste24 -//- MEF的16.5×10 6 读取的数据,我们总共发现了在MEF中表达的306种已知miRNA具有广泛的动态读取范围,范围从10到超过一百万。与WT MEF相比,在Zmpste24 -/- MEF中发现总共有8个miRNA显着下调,而只有2个miRNA被上调。功能研究表明,miR-365是Zmpste24 -/- MEF中显着下调的miRNA,可调节MEF中的细胞生长表型。在Zmpste24 -/- MEF中过表达miR-365增加细胞增殖并降低SA-β-gal阳性细胞的百分比,而对miR-365功能的抑制导致SA-β的增加WT MEF中的-gal阳性细胞。此外,我们确定了小GTP酶Ras超家族成员Rasd1作为miR-365的功能靶标。尽管miR-365的表达抑制了Rasd1 3'UTR荧光素酶报道分子的活性,但这种作用因3'UTR靶位点的突变而丧失。一致地,发现miR-365的表达水平与内源性Rasd1水平成反比。这些发现表明,miR-365在Zmpste24 -/- MEF中被下调,并充当Rasd1的新型负调节剂。我们全面的miRNA数据为研究MEF中的基因调控网络提供了资源。

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