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泛神经元基因表达的稳健调控架构。

Robust regulatory architecture of pan-neuronal gene expression.

机构信息

Department of Biological Sciences, Columbia University, Howard Hughes Medical Institute, New York, NY, USA.

出版信息

Curr Biol. 2022 Apr 25;32(8):1715-1727.e8. doi: 10.1016/j.cub.2022.02.040. Epub 2022 Mar 7.

Abstract

Pan-neuronally expressed genes, such as genes involved in the synaptic vesicle cycle or in neuropeptide maturation, are critical for proper function of all neurons, but the transcriptional control mechanisms that direct such genes to all neurons of a nervous system remain poorly understood. We show here that six members of the CUT family of homeobox genes control pan-neuronal identity specification in Caenorhabditis elegans. Single CUT mutants show barely any effects on pan-neuronal gene expression or global nervous system function, but such effects become apparent and progressively worsen upon removal of additional CUT family members, indicating a critical role of gene dosage. Overexpression of each individual CUT gene rescued the phenotype of compound mutants, corroborating that gene dosage, rather than the activity of specific members of the gene family, is critical for CUT gene family function. Genome-wide binding profiles, as well as mutation of CUT homeodomain binding sites by CRISPR/Cas9 genome engineering show that CUT genes directly control the expression of pan-neuronal features. Moreover, CUT genes act in conjunction with neuron-type-specific transcription factors to control pan-neuronal gene expression. Our study, therefore, provides a previously missing key insight into how neuronal gene expression programs are specified and reveals a highly buffered and robust mechanism that controls the most critical functional features of all neuronal cell types.

摘要

全神经元表达的基因,如参与突触小泡循环或神经肽成熟的基因,对于所有神经元的正常功能至关重要,但指导这些基因进入神经系统所有神经元的转录控制机制仍知之甚少。我们在这里表明,秀丽隐杆线虫 CUT 基因家族的六个成员控制着全神经元身份的指定。单个 CUT 突变体对全神经元基因表达或整个神经系统功能几乎没有任何影响,但当去除额外的 CUT 家族成员时,这种影响变得明显并逐渐恶化,表明基因剂量的关键作用。每个单独的 CUT 基因的过表达挽救了复合突变体的表型,证实了基因剂量而不是基因家族特定成员的活性对于 CUT 基因家族功能至关重要。全基因组结合谱,以及通过 CRISPR/Cas9 基因组工程突变 CUT 同源域结合位点表明,CUT 基因直接控制全神经元特征的表达。此外,CUT 基因与神经元类型特异性转录因子一起作用以控制全神经元基因表达。因此,我们的研究提供了一个以前缺失的关键见解,即神经元基因表达程序是如何指定的,并揭示了一个高度缓冲和稳健的机制,该机制控制所有神经元细胞类型的最关键功能特征。

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