Gene Expression Laboratory, Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA.
Gene Expression Laboratory, Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA.
Neuron. 2021 Oct 20;109(20):3252-3267.e6. doi: 10.1016/j.neuron.2021.07.028. Epub 2021 Aug 26.
Disruption of homeostatic microRNA (miRNA) expression levels is known to cause human neuropathology. However, the gene regulatory and phenotypic effects of altering a miRNA's in vivo abundance (rather than its binary gain or loss) are not well understood. By genetic combination, we generated an allelic series of mice expressing varying levels of miR-218, a motor neuron-selective gene regulator associated with motor neuron disease. Titration of miR-218 cellular dose unexpectedly revealed complex, non-ratiometric target mRNA dose responses and distinct gene network outputs. A non-linearly responsive regulon exhibited a steep miR-218 dose-dependent threshold in repression that, when crossed, resulted in severe motor neuron synaptic failure and death. This work demonstrates that a miRNA can govern distinct gene network outputs at different expression levels and that miRNA-dependent phenotypes emerge at particular dose ranges because of hidden regulatory inflection points of their underlying gene networks.
已知内稳态微小 RNA(miRNA)表达水平的破坏会导致人类神经病理学。然而,改变 miRNA 在体内丰度(而不是其二进制增益或损失)的基因调控和表型效应尚不清楚。通过遗传组合,我们生成了一系列表达不同水平 miR-218 的等位基因小鼠,miR-218 是一种与运动神经元疾病相关的运动神经元选择性基因调节剂。miR-218 细胞剂量的滴定出乎意料地揭示了复杂的、非比例的靶 mRNA 剂量反应和不同的基因网络输出。一个非线性反应调节子在抑制中表现出陡峭的 miR-218 剂量依赖性阈值,当交叉时,会导致严重的运动神经元突触故障和死亡。这项工作表明,miRNA 可以在不同的表达水平上控制不同的基因网络输出,并且 miRNA 依赖性表型会出现在特定的剂量范围内,因为其潜在基因网络的隐藏调节拐点。