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通过同步调节 microRNA 及其靶标来抑制表达振荡。

Dampening of expression oscillations by synchronous regulation of a microRNA and its target.

机构信息

1] Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA. [2] Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA. [3].

出版信息

Nat Genet. 2013 Nov;45(11):1337-44. doi: 10.1038/ng.2763. Epub 2013 Sep 15.

Abstract

The complexity of multicellular organisms requires precise spatiotemporal regulation of gene expression during development. We find that in the nematode Caenorhabditis elegans approximately 2,000 transcripts undergo expression oscillations synchronized with larval transitions while thousands of genes are expressed in temporal gradients, similar to known timing regulators. By counting transcripts in individual worms, we show that pulsatile expression of the microRNA (miRNA) lin-4 maintains the temporal gradient of its target lin-14 by dampening its expression oscillations. Our results demonstrate that this insulation is optimal when pulsatile expression of the miRNA and its target is synchronous. We propose that such a miRNA-mediated incoherent feed-forward loop is a potent filter that prevents the propagation of potentially deleterious fluctuations in gene expression during the development of an organism.

摘要

多细胞生物的复杂性要求在发育过程中精确地调控基因表达的时空特异性。我们发现,在秀丽隐杆线虫中,大约有 2000 个转录本的表达与幼虫过渡同步发生振荡,而数千个基因则以时间梯度的方式表达,类似于已知的时间调控因子。通过在单个蠕虫中计数转录本,我们表明微 RNA (miRNA) lin-4 的脉冲式表达通过抑制其表达振荡来维持其靶标 lin-14 的时间梯度。我们的结果表明,当 miRNA 和其靶标的脉冲式表达同步时,这种隔离是最佳的。我们提出,这种 miRNA 介导的非相干前馈回路是一种强大的滤波器,可以防止在生物体发育过程中基因表达中潜在有害波动的传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be8b/3812263/20adaed54712/nihms-518349-f0001.jpg

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