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秀丽隐杆线虫蜕皮需要 Grainyhead/LSF 转录因子 GRH-1 的节律性积累。

C. elegans molting requires rhythmic accumulation of the Grainyhead/LSF transcription factor GRH-1.

机构信息

Friedrich Miescher Institute for Biomedical Research (FMI), Basel, Switzerland.

University of Basel, Basel, Switzerland.

出版信息

EMBO J. 2023 Feb 15;42(4):e111895. doi: 10.15252/embj.2022111895. Epub 2023 Jan 23.

Abstract

C. elegans develops through four larval stages that are rhythmically terminated by molts, that is, the synthesis and shedding of a cuticular exoskeleton. Each larval cycle involves rhythmic accumulation of thousands of transcripts, which we show here relies on rhythmic transcription. To uncover the responsible gene regulatory networks (GRNs), we screened for transcription factors that promote progression through the larval stages and identified GRH-1, BLMP-1, NHR-23, NHR-25, MYRF-1, and BED-3. We further characterize GRH-1, a Grainyhead/LSF transcription factor, whose orthologues in other animals are key epithelial cell-fate regulators. We find that GRH-1 depletion extends molt durations, impairs cuticle integrity and shedding, and causes larval death. GRH-1 is required for, and accumulates prior to, each molt, and preferentially binds to the promoters of genes expressed during this time window. Binding to the promoters of additional genes identified in our screen furthermore suggests that we have identified components of a core molting-clock GRN. Since the mammalian orthologues of GRH-1, BLMP-1 and NHR-23, have been implicated in rhythmic homeostatic skin regeneration in mouse, the mechanisms underlying rhythmic C. elegans molting may apply beyond nematodes.

摘要

秀丽隐杆线虫通过四个幼虫阶段发育,这些阶段通过蜕皮周期性终止,即角质层外骨骼的合成和脱落。每个幼虫周期都涉及数千个转录本的周期性积累,我们在这里表明这依赖于有节奏的转录。为了揭示负责的基因调控网络(GRN),我们筛选了促进幼虫阶段进展的转录因子,并鉴定了 GRH-1、BLMP-1、NHR-23、NHR-25、MYRF-1 和 BED-3。我们进一步表征了 GRH-1,一种 Grainyhead/LSF 转录因子,其在其他动物中的同源物是关键的上皮细胞命运调节剂。我们发现,GRH-1 的耗竭会延长蜕皮持续时间,损害角质层的完整性和脱落,并导致幼虫死亡。GRH-1 是必需的,并在每个蜕皮期之前积累,并且优先结合在此时间段表达的基因的启动子。结合我们筛选中鉴定的其他基因的启动子进一步表明,我们已经鉴定出核心蜕皮时钟 GRN 的组成部分。由于 GRH-1、BLMP-1 和 NHR-23 的哺乳动物同源物已被牵连到小鼠有节奏的稳态皮肤再生中,因此线虫中周期性蜕皮的机制可能适用于线虫以外的生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b8e/9929640/e753dbde49eb/EMBJ-42-e111895-g003.jpg

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