Department of Biological Sciences, Institute of Molecular Biology and Genetics, Seoul National University, Seoul 08826, Korea.
Research Institute, National Cancer Center, Goyang 10408, Korea.
G3 (Bethesda). 2022 Dec 1;12(12). doi: 10.1093/g3journal/jkac266.
Animals exhibit phenotypic plasticity through the interaction of genes with the environment, and little is known about the genetic factors that change synaptic function at different developmental stages. Here, we investigated the genetic determinants of how animal's sensitivity to drugs that alter synaptic activity is regulated at a specific developmental stage using the free-living nematode Caenorhabditis elegans. C. elegans enters the stress-resistant dauer larval stage under harsh conditions. Although dauer is known to have reduced permeability and increased resistance to most known exogenous chemicals, we discovered that dauer is hypersensitive to a cholinesterase inhibitor, aldicarb. To investigate genes regulating dauer-specific acetylcholine transduction, we first screened for aldicarb-resistant mutations in dauer and then performed a secondary screen to rule out aldicarb-resistant mutations that also affect adults. We isolated 2 different mutations of a single gene called cyp-34A4 or dach-1 encoding a cytochrome P450. In the nondauer stages, dach-1 is mainly expressed in the intestine, but its expression is robustly increased in the epidermis of dauers. By tissue-specific rescue experiments, we found that dach-1 modulates aldicarb sensitivity in a cell nonautonomous manner. In addition, dach-1 plays pleiotropic functions in dauers by regulating quiescence and surviving heat shock and hyperosmolar stress. Our study reveals novel functions of the cytochrome P450 in synaptic and physiological changes during the developmental plasticity.
动物通过基因与环境的相互作用表现出表型可塑性,而对于在不同发育阶段改变突触功能的遗传因素知之甚少。在这里,我们使用自由生活的线虫秀丽隐杆线虫研究了动物对改变突触活动的药物敏感性如何在特定发育阶段受到遗传决定的机制。线虫在恶劣条件下进入抗应激的 dauer 幼虫阶段。尽管 dauer 幼虫已知具有降低的通透性和增加的对外源化学物质的抗性,但我们发现 dauer 幼虫对乙酰胆碱酯酶抑制剂 aldicarb 高度敏感。为了研究调节 dauer 特异性乙酰胆碱转导的基因,我们首先在 dauer 中筛选 aldicarb 抗性突变,然后进行二次筛选以排除也影响成虫的 aldicarb 抗性突变。我们分离出一个称为 cyp-34A4 或 dach-1 的单个基因的 2 个不同突变,该基因编码细胞色素 P450。在非 dauer 阶段,dach-1 主要在肠道中表达,但在 dauer 的表皮中强烈增加表达。通过组织特异性拯救实验,我们发现 dach-1 以非细胞自主的方式调节 aldicarb 敏感性。此外,dach-1 通过调节静止、耐受热休克和高渗应激在 dauer 幼虫中发挥多效性功能。我们的研究揭示了细胞色素 P450 在发育可塑性过程中的突触和生理变化中的新功能。