Department of Molecular, Cell, and Developmental Biology, University of California Santa Cruz, Santa Cruz, CA 95064, USA.
Department of Cell and Developmental Biology, School of Biological Sciences, University of California San Diego, La Jolla, CA 92093, USA.
Development. 2023 May 15;150(10). doi: 10.1242/dev.201085. Epub 2023 May 22.
Nematode molting is a remarkable process where animals must repeatedly build a new apical extracellular matrix (aECM) beneath a previously built aECM that is subsequently shed. The nuclear hormone receptor NHR-23 (also known as NR1F1) is an important regulator of C. elegans molting. NHR-23 expression oscillates in the epidermal epithelium, and soma-specific NHR-23 depletion causes severe developmental delay and death. Tissue-specific RNAi suggests that nhr-23 acts primarily in seam and hypodermal cells. NHR-23 coordinates the expression of factors involved in molting, lipid transport/metabolism and remodeling of the aECM. NHR-23 depletion causes dampened expression of a nas-37 promoter reporter and a loss of reporter oscillation. The cuticle collagen ROL-6 and zona pellucida protein NOAH-1 display aberrant annular localization and severe disorganization over the seam cells after NHR-23 depletion, while the expression of the adult-specific cuticle collagen BLI-1 is diminished and frequently found in patches. Consistent with these localization defects, the cuticle barrier is severely compromised when NHR-23 is depleted. Together, this work provides insight into how NHR-23 acts in the seam and hypodermal cells to coordinate aECM regeneration during development.
线虫蜕皮是一个显著的过程,动物必须在先前构建的 ECM 下方重复构建新的顶端细胞外基质(aECM),随后将其去除。核激素受体 NHR-23(也称为 NR1F1)是秀丽隐杆线虫蜕皮的重要调节剂。NHR-23 在表皮上皮细胞中呈振荡表达,而体特异性 NHR-23 耗竭会导致严重的发育迟缓和死亡。组织特异性 RNAi 表明 nhr-23 主要在 seam 和 hypodermal 细胞中发挥作用。NHR-23 协调参与蜕皮、脂质运输/代谢和 aECM 重塑的因子的表达。NHR-23 耗竭会导致 nas-37 启动子报告基因的表达减弱,报告基因的振荡消失。胶原 ROL-6 和透明带蛋白 NOAH-1 的表达异常,在 seam 细胞中出现严重的排列紊乱,而成人特异性胶原 BLI-1 的表达减少,且经常呈斑块状。与这些定位缺陷一致,当 NHR-23 耗竭时,角质层屏障严重受损。总之,这项工作提供了关于 NHR-23 如何在 seam 和 hypodermal 细胞中发挥作用,以协调发育过程中 aECM 再生的见解。