Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724, USA.
Institut Curie, Université PSL, Sorbonne Université, CNRS UMR168 Laboratoire Physico Chimie Curie, Paris 75005, France.
Dev Cell. 2023 Nov 20;58(22):2563-2579.e8. doi: 10.1016/j.devcel.2023.08.006. Epub 2023 Aug 28.
Development relies on the exquisite control of both the timing and the levels of gene expression to achieve robust developmental transitions. How cis- and trans-acting factors control both aspects simultaneously is unclear. We show that transcriptional pulses of the temporal patterning microRNA (miRNA) lin-4 are generated by two nuclear hormone receptors (NHRs) in C. elegans, NHR-85 and NHR-23, whose mammalian orthologs, Rev-Erb and ROR, function in the circadian clock. Although Rev-Erb and ROR antagonize each other to control once-daily transcription in mammals, NHR-85/NHR-23 heterodimers bind cooperatively to lin-4 regulatory elements to induce a single pulse of expression during each larval stage. Each pulse's timing, amplitude, and duration are dictated by the phased expression of these NHRs and the C. elegans Period ortholog, LIN-42, that binds to and represses NHR-85. Therefore, during nematode temporal patterning, an evolutionary rewiring of circadian clock components couples the timing of gene expression to the control of transcriptional dosage.
发育依赖于基因表达的时间和水平的精确控制,以实现稳健的发育转变。顺式和反式作用因子如何同时控制这两个方面尚不清楚。我们表明,线虫中两个核激素受体(NHR)NHR-85 和 NHR-23 产生了时间模式 microRNA(miRNA)lin-4 的转录脉冲,其哺乳动物同源物 Rev-Erb 和 ROR 在生物钟中起作用。尽管 Rev-Erb 和 ROR 相互拮抗以控制哺乳动物的每日一次转录,但 NHR-85/NHR-23 异二聚体协同结合到 lin-4 调控元件上,在每个幼虫阶段诱导一个表达脉冲。每个脉冲的时间、幅度和持续时间由这些 NHR 和线虫 Period 同源物 LIN-42 的相控表达决定,LIN-42 结合并抑制 NHR-85。因此,在线虫的时间模式形成过程中,生物钟成分的进化重布线将基因表达的时间与转录剂量的控制联系起来。