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一种与表皮相关的损伤传感器协调. 中的三种核心环境应激反应。

A Damage Sensor Associated with the Cuticle Coordinates Three Core Environmental Stress Responses in .

机构信息

Department of Biology, University of Florida, Gainesville, Florida 32611.

Aix Marseille University, CNRS, INSERM, CIML, Marseille, France.

出版信息

Genetics. 2018 Apr;208(4):1467-1482. doi: 10.1534/genetics.118.300827. Epub 2018 Feb 27.

Abstract

Extracellular matrix barriers and inducible cytoprotective genes form successive lines of defense against chemical and microbial environmental stressors. The barrier in nematodes is a collagenous extracellular matrix called the cuticle. In , disruption of some cuticle collagen genes activates osmolyte and antimicrobial response genes. Physical damage to the epidermis also activates antimicrobial responses. Here, we assayed the effect of knocking down genes required for cuticle and epidermal integrity on diverse cellular stress responses. We found that disruption of specific bands of collagen, called annular furrows, coactivates detoxification, hyperosmotic, and antimicrobial response genes, but not other stress responses. Disruption of other cuticle structures and epidermal integrity does not have the same effect. Several transcription factors act downstream of furrow loss. SKN-1/Nrf and ELT-3/GATA are required for detoxification, SKN-1/Nrf is partially required for the osmolyte response, and STA-2/Stat and ELT-3/GATA for antimicrobial gene expression. Our results are consistent with a cuticle-associated damage sensor that coordinates detoxification, hyperosmotic, and antimicrobial responses through overlapping, but distinct, downstream signaling.

摘要

细胞外基质屏障和诱导型细胞保护基因构成了抵御化学和微生物环境应激原的连续防线。线虫的屏障是一种称为角质层的胶原细胞外基质。在这方面,破坏某些角质层胶原基因会激活渗透剂和抗菌反应基因。表皮的物理损伤也会激活抗菌反应。在这里,我们检测了破坏角质层和表皮完整性所需基因对多种细胞应激反应的影响。我们发现,破坏称为环状皱襞的特定胶原带会共同激活解毒、高渗和抗菌反应基因,但不会激活其他应激反应。破坏其他角质层结构和表皮完整性不会产生相同的效果。几个转录因子作用于皱襞缺失的下游。SKN-1/Nrf 和 ELT-3/GATA 是解毒所必需的,SKN-1/Nrf 部分是渗透反应所必需的,STA-2/Stat 和 ELT-3/GATA 是抗菌基因表达所必需的。我们的结果与一种与角质层相关的损伤传感器一致,该传感器通过重叠但不同的下游信号来协调解毒、高渗和抗菌反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2873/5887142/33a8f48ec30f/1467fig1.jpg

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