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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >MicroRNA-130a-mediated down-regulation of Smad4 contributes to reduced sensitivity to TGF-beta1 stimulation in granulocytic precursors.
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MicroRNA-130a-mediated down-regulation of Smad4 contributes to reduced sensitivity to TGF-beta1 stimulation in granulocytic precursors.

机译:MicroRNA-130a介导的Smad4下调有助于降低对粒细胞前体中TGF-β1刺激的敏感性。

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Smad4 is important in the TGF-beta pathway and required for transcriptional activation and inhibition of cell growth after TGF-beta1 stimulation. We demonstrate that miR-130a is differentially expressed during granulopoiesis and targets Smad4 mRNA. The transcript for Smad4 is present throughout neutrophil maturation, but Smad4 protein is undetectable in the most immature cells, where miR-130a is highly expressed. Two miR-130a binding sites were identified in the 3'-untranslated region of the Smad4 mRNA. Overexpression of miR-130a in HEK293, A549, and 32Dcl3 cells repressed synthesis of Smad4 protein without affecting Smad4 mRNA level. Repression of Smad4 synthesis in a granulocytic cell line by miR-130a reduced its sensitivity to TGF-beta1-induced growth inhibition. This effect was reversed by inhibiting the activity of miR-130a with an antisense probe or by expressing a Smad4 mRNA lacking miR-130a binding sites. High endogenous miR-130a and Smad4 mRNA levels and low expression of Smad4 protein were found in the t(8;21)(q22;q22) acute myelogenous leukemia-derived cell line Kasumi-1. When miR-130a was inhibited by an antisense RNA, the amount of Smad4 protein increased in Kasumi-1 cells and rendered it susceptible for TGF-beta1-mediated cell growth inhibition. Our data indicate that miR-130a is involved in cell cycle regulation of granulocytic cells through engagement of Smad4 in the TGF-beta pathway.
机译:Smad4在TGF-β途径中很重要,并且是TGF-β1刺激后转录激活和细胞生长抑制所必需的。我们证明,miR-130a在粒细胞生成过程中差异表达并靶向Smad4 mRNA。在整个中性粒细胞成熟过程中都存在Smad4的转录本,但是在高度表达miR-130a的大多数未成熟细胞中均无法检测到Smad4蛋白。在Smad4 mRNA的3'-非翻译区中发现了两个miR-130a结合位点。 miR-130a在HEK293,A549和32Dcl3细胞中的过表达抑制了Smad4蛋白的合成,而不会影响Smad4 mRNA的水平。 miR-130a抑制粒细胞细胞系中Smad4合成降低了其对TGF-β1诱导的生长抑制的敏感性。通过使用反义探针抑制miR-130a的活性或表达缺乏miR-130a结合位点的Smad4 mRNA,可以逆转这种作用。在t(8; 21)(q22; q22)急性骨髓性白血病衍生的细胞系Kasumi-1中发现高内源性miR-130a和Smad4 mRNA水平以及Smad4蛋白的低表达。当miR-130a被反义RNA抑制时,Kasumi-1细胞中Smad4蛋白的量增加,并使其易于受到TGF-β1介导的细胞生长抑制的影响。我们的数据表明,miR-130a通过Smad4参与TGF-β途径参与了粒细胞的细胞周期调控。

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