Molecular and Cell Biology, Taiwan International Graduate Program, Academia Sinica and Graduate Institute of Life Sciences, National Defense Medical Center, Taipei 11529, Taiwan.
Institute of Molecular Biology, Academia Sinica, Taipei 11529, Taiwan.
Nat Commun. 2017 Mar 24;8:14685. doi: 10.1038/ncomms14685.
The initial rostrocaudal patterning of the neural tube leads to differential expression of Hox genes that contribute to the specification of motor neuron (MN) subtype identity. Although several 3' Hox mRNAs are expressed in progenitors in a noisy manner, these Hox proteins are not expressed in the progenitors and only become detectable in postmitotic MNs. MicroRNA biogenesis impairment leads to precocious expression and propagates the noise of Hoxa5 at the protein level, resulting in an imprecise Hoxa5-Hoxc8 boundary. Here we uncover, using in silico simulation, two feed-forward Hox-miRNA loops accounting for the precocious and noisy Hoxa5 expression, as well as an ill-defined boundary phenotype in Dicer mutants. Finally, we identify mir-27 as a major regulator coordinating the temporal delay and spatial boundary of Hox protein expression. Our results provide a novel trans Hox-miRNA circuit filtering transcription noise and controlling the timing of protein expression to confer robust individual MN identity.
神经管的初始头尾模式导致 Hox 基因的差异表达,这些基因有助于运动神经元 (MN) 亚型身份的特化。尽管几个 3' Hox mRNAs 以嘈杂的方式在祖细胞中表达,但这些 Hox 蛋白不在祖细胞中表达,只有在有丝分裂后的 MN 中才能检测到。microRNA 生物发生的损伤导致 Hoxa5 在蛋白质水平上过早表达和传播噪音,导致 Hoxa5-Hoxc8 边界不明确。在这里,我们使用计算机模拟发现了两个前馈 Hox-miRNA 环,它们解释了 Hoxa5 的过早和嘈杂表达,以及 Dicer 突变体中不明确的边界表型。最后,我们确定 mir-27 是一个主要的调节因子,它协调了 Hox 蛋白表达的时间延迟和空间边界,以赋予稳健的个体 MN 身份。
我们的结果提供了一个新的跨 Hox-miRNA 电路,过滤转录噪声并控制蛋白质表达的时间,以赋予稳健的个体 MN 身份。