Department of Biology, University of Fribourg, 1700 Fribourg, Switzerland.
Genetics. 2023 May 4;224(1). doi: 10.1093/genetics/iyad047.
The detection and avoidance of harmful stimuli are essential animal capabilities. The molecular and cellular mechanisms controlling nociception and its plasticity are conserved, genetically controlled processes of broad biomedical interest given their relevance to understand and treat pain conditions that represent a major health burden. Recent genome-wide association studies (GWAS) have identified a rich set of polymorphisms related to different pain conditions and pointed to many human pain gene candidates, whose connection to the pain pathways is however often poorly understood. Here, we used a computer-assisted Caenorhabditis elegans thermal avoidance analysis pipeline to screen for behavioral defects in a set of 109 mutants for genes orthologous to human pain-related genes. We measured heat-evoked reversal thermosensitivity profiles, as well as spontaneous reversal rate, and compared naïve animals with adapted animals submitted to a series of repeated noxious heat stimuli, which in wild type causes a progressive habituation. Mutations affecting 28 genes displayed defects in at least one of the considered parameters and could be clustered based on specific phenotypic footprints, such as high-sensitivity mutants, nonadapting mutants, or mutants combining multiple defects. Collectively, our data reveal the functional architecture of a network of conserved pain-related genes in C. elegans and offer novel entry points for the characterization of poorly understood human pain genes in this genetic model.
检测和避免有害刺激是动物的基本能力。控制伤害感受及其可塑性的分子和细胞机制是保守的,具有广泛的生物医学意义,因为它们与理解和治疗疼痛状况有关,而疼痛状况是一个主要的健康负担。最近的全基因组关联研究(GWAS)已经确定了与不同疼痛状况相关的丰富多态性,并指出了许多人类疼痛基因候选者,但其与疼痛途径的联系往往知之甚少。在这里,我们使用计算机辅助的秀丽隐杆线虫热回避分析管道,对 109 个与人类疼痛相关基因同源的突变体进行了行为缺陷筛选。我们测量了热诱发反转热敏性曲线,以及自发反转率,并将未适应动物与适应动物进行了比较,适应动物经历了一系列重复的有害热刺激,这在野生型中会导致逐渐习惯。影响 28 个基因的突变在至少一个考虑的参数中显示出缺陷,并且可以根据特定的表型特征进行聚类,例如高灵敏度突变体、不适应突变体或同时具有多种缺陷的突变体。总的来说,我们的数据揭示了秀丽隐杆线虫中保守的疼痛相关基因网络的功能结构,并为在这种遗传模型中对理解甚少的人类疼痛基因进行特征描述提供了新的切入点。