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Co-option of neurotransmitter signaling for inter-organismal communication in C. elegans

Chute, Christopher D. et al · Nature · 2019

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Biogenic amine neurotransmitters play a central role in metazoan biology, and both their chemical structures and cognate receptors are evolutionarily conserved. Their primary roles are in cell-to-cell signaling, as biogenic amines are not normally recruited for communication between separate individuals. Here, we show that in the nematode C. elegans, a neurotransmitter-sensing G protein-coupled receptor, TYRA-2, is required for avoidance responses to osas#9, an ascaroside pheromone that incorporates the neurotransmitter, octopamine. Neuronal ablation, cell-specific genetic rescue, and calcium imaging show that tyra-2 expression in the nociceptive neuron, ASH, is necessary and sufficient to induce osas#9 avoidance. Ectopic expression in the AWA neuron, which is generally associated with attractive responses, reverses the response to osas#9, resulting in attraction instead of avoidance behavior, confirming that TYRA-2 partakes in the sensing of osas#9. The TYRA-2/osas#9 signaling system represents an inter-organismal communication channel that evolved via co-option of a neurotransmitter and its cognate receptor. Fil: Chute, Christopher D.. Worcester Polytechnic Institute; Estados Unidos Fil: DiLoreto, Elizabeth M.. Worcester Polytechnic Institute; Estados Unidos

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APA 7

Chute, C. D. E. A. (2019). Co-option of neurotransmitter signaling for inter-organismal communication in C. elegans. http://hdl.handle.net/11336/99041

MLA

Chute, Christopher D. et al. "Co-option of neurotransmitter signaling for inter-organismal communication in C. elegans." 2019. http://hdl.handle.net/11336/99041.

Chicago

Chute, Christopher D. et al. 2019. "Co-option of neurotransmitter signaling for inter-organismal communication in C. elegans.". http://hdl.handle.net/11336/99041.

Harvard

Chute, C. D. E. A. 2019, Co-option of neurotransmitter signaling for inter-organismal communication in C. elegans, Nature, available at: http://hdl.handle.net/11336/99041 [Accessed 7 Aug. 2026].

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Title
Co-option of neurotransmitter signaling for inter-organismal communication in C. elegans
Author / contributors
Chute, Christopher D. et al
Publisher
Nature
Publication year
2019
ISSN
2041-1723
ISSN
2041-1723
Language
English

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