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首页> 外文期刊>Journal of proteome research >MicroRNA Regulatory Mechanisms Play Different Roles in Arabidopsis
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MicroRNA Regulatory Mechanisms Play Different Roles in Arabidopsis

机译:MicroRNA调控机制在拟南芥中发挥不同的作用。

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Plant microRNAs (miRNAs) operate by guiding the cleavage or translational inhibition of mRNA targets. They act as key gene regulators for development and environmental adaptation, and Dicer-partnering proteins DRB1 and DRB2 govern which form of regulation plays the dominant role. Mutation of Drb1 impairs transcript cleavage, whereas mutation of Drb2 ablates translational inhibition. Regulation of gene expression by miRNA-guided cleavage has been extensively studied, but there is much less information about genes regulated through miRNA-mediated translation inhibition. Here, we compared the proteomes of drb1 and drb2 mutants to gain insight into the indirect effect of the different miRNA regulatory mechanisms in Arabidopsis thaliana. Our results show that miRNAs operating through transcript cleavage regulate a broad spectrum of processes, including catabolism and anabolism, and this was particularly obvious in the fatty acid degradation pathway. Enzymes catalyzing each step of this pathway were upregulated in drb1. In contrast, DRB2-associated translational inhibition appears to be less ubiquitous and specifically aimed toward responses against abiotic or biotic stimuli.
机译:植物microRNA(miRNA)通过指导mRNA靶标的切割或翻译抑制来发挥作用。它们充当开发和环境适应的关键基因调节剂,与切酶有关的蛋白DRB1和DRB2决定哪种调节形式起主导作用。 Drb1的突变会损害转录物的切割,而Drb2的突变会消除翻译抑制。通过miRNA指导的切割对基因表达的调控已得到广泛研究,但是关于通过miRNA介导的翻译抑制调控的基因的信息却很少。在这里,我们比较了drb1和drb2突变体的蛋白质组,以深入了解拟南芥中不同miRNA调控机制的间接作用。我们的结果表明,通过转录物切割操作的miRNA调控着广泛的过程,包括分解代谢和合成代谢,这在脂肪酸降解途径中尤为明显。在drb1中,上调该途径每一步的酶。相反,DRB2相关的翻译抑制作用似乎不那么普遍,并且特别针对针对非生物或生物刺激的反应。

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