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TRPV channel-mediated calcium transients in nociceptor neurons are dispensable for avoidance behaviour

机译:伤害感受神经元中TRPV通道介导的钙瞬变对于避免行为是必不可少的

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摘要

Animals need to sense and react to potentially dangerous environments. TRP ion channels participate in nociception, presumably via Ca2+ influx, in most animal species. However, the relationship between ion permeation and animals' nocifensive behaviour is unknown. Here we use an invertebrate animal model with relevance for mammalian pain. We analyse the putative selectivity filter of OSM-9, a TRPV channel, in osmotic avoidance behaviour of Caenorhabditis elegans. Using mutagenized OSM-9 expressed in the head nociceptor neuron, ASH, we study nocifensive behaviour and Ca2+ influx. Within the selectivity filter, M-601-F-609, Y604G strongly reduces avoidance behaviour and eliminates Ca2+ transients. Y604F also abolishes Ca2+ transients in ASH, while sustaining avoidance behaviour, yet it disrupts behavioral plasticity. Homology modelling of the OSM-9 pore suggests that Y-604 may assume a scaffolding role. Thus, aromatic residues in the OSM-9 selectivity filter are critical for pain behaviour and ion permeation. These findings have relevance for understanding evolutionary roots of mammalian nociception.
机译:动物需要感知并应对潜在的危险环境。在大多数动物中,TRP离子通道可能通过Ca2 +流入参与了伤害感受。但是,离子渗透与动物伤害行为之间的关系尚不清楚。在这里,我们使用与哺乳动物疼痛相关的无脊椎动物模型。我们分析了秀丽隐杆线虫的渗透回避行为中,TRPV通道OSM-9的假定选择性过滤器。使用在头部伤害感受器神经元ASH中表达的诱变OSM-9,我们研究伤害行为和Ca2 +涌入。在选择性过滤器M-601-F-609中,Y604G大大减少了回避行为,并消除了Ca2 +瞬变。 Y604F还消除了ASH中的Ca2 +瞬变,同时保持了回避行为,但破坏了行为可塑性。 OSM-9孔的同源性建模表明,Y-604可能具有支架作用。因此,OSM-9选择性过滤器中的芳香族残基对于疼痛行为和离子渗透至关重要。这些发现与了解哺乳动物伤害感受的进化根源有关。

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