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Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner

The development of functional synapses in the nervous system is important for animal physiology and behaviors, and its disturbance has been linked with many neurodevelopmental disorders. The synaptic transmission efficacy can be modulated by the environment to accommodate external changes, which is...

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Autores principales: Qian, Kang-Ying, Zeng, Wan-Xin, Hao, Yue, Zeng, Xian-Ting, Liu, Haowen, Li, Lei, Chen, Lili, Tian, Fu-min, Chang, Cindy, Hall, Qi, Song, Chun-Xue, Gao, Shangbang, Hu, Zhitao, Kaplan, Joshua M, Li, Qian, Tong, Xia-Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8051947/
https://www.ncbi.nlm.nih.gov/pubmed/33787493
http://dx.doi.org/10.7554/eLife.67170
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author Qian, Kang-Ying
Zeng, Wan-Xin
Hao, Yue
Zeng, Xian-Ting
Liu, Haowen
Li, Lei
Chen, Lili
Tian, Fu-min
Chang, Cindy
Hall, Qi
Song, Chun-Xue
Gao, Shangbang
Hu, Zhitao
Kaplan, Joshua M
Li, Qian
Tong, Xia-Jing
author_facet Qian, Kang-Ying
Zeng, Wan-Xin
Hao, Yue
Zeng, Xian-Ting
Liu, Haowen
Li, Lei
Chen, Lili
Tian, Fu-min
Chang, Cindy
Hall, Qi
Song, Chun-Xue
Gao, Shangbang
Hu, Zhitao
Kaplan, Joshua M
Li, Qian
Tong, Xia-Jing
author_sort Qian, Kang-Ying
collection PubMed
description The development of functional synapses in the nervous system is important for animal physiology and behaviors, and its disturbance has been linked with many neurodevelopmental disorders. The synaptic transmission efficacy can be modulated by the environment to accommodate external changes, which is crucial for animal reproduction and survival. However, the underlying plasticity of synaptic transmission remains poorly understood. Here we show that in Caenorhabditis elegans, the male environment increases the hermaphrodite cholinergic transmission at the neuromuscular junction (NMJ), which alters hermaphrodites’ locomotion velocity and mating efficiency. We identify that the male-specific pheromones mediate this synaptic transmission modulation effect in a developmental stage-dependent manner. Dissection of the sensory circuits reveals that the AWB chemosensory neurons sense those male pheromones and further transduce the information to NMJ using cGMP signaling. Exposure of hermaphrodites to the male pheromones specifically increases the accumulation of presynaptic CaV2 calcium channels and clustering of postsynaptic acetylcholine receptors at cholinergic synapses of NMJ, which potentiates cholinergic synaptic transmission. Thus, our study demonstrates a circuit mechanism for synaptic modulation and behavioral flexibility by sexual dimorphic pheromones.
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spelling pubmed-80519472021-04-21 Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner Qian, Kang-Ying Zeng, Wan-Xin Hao, Yue Zeng, Xian-Ting Liu, Haowen Li, Lei Chen, Lili Tian, Fu-min Chang, Cindy Hall, Qi Song, Chun-Xue Gao, Shangbang Hu, Zhitao Kaplan, Joshua M Li, Qian Tong, Xia-Jing eLife Neuroscience The development of functional synapses in the nervous system is important for animal physiology and behaviors, and its disturbance has been linked with many neurodevelopmental disorders. The synaptic transmission efficacy can be modulated by the environment to accommodate external changes, which is crucial for animal reproduction and survival. However, the underlying plasticity of synaptic transmission remains poorly understood. Here we show that in Caenorhabditis elegans, the male environment increases the hermaphrodite cholinergic transmission at the neuromuscular junction (NMJ), which alters hermaphrodites’ locomotion velocity and mating efficiency. We identify that the male-specific pheromones mediate this synaptic transmission modulation effect in a developmental stage-dependent manner. Dissection of the sensory circuits reveals that the AWB chemosensory neurons sense those male pheromones and further transduce the information to NMJ using cGMP signaling. Exposure of hermaphrodites to the male pheromones specifically increases the accumulation of presynaptic CaV2 calcium channels and clustering of postsynaptic acetylcholine receptors at cholinergic synapses of NMJ, which potentiates cholinergic synaptic transmission. Thus, our study demonstrates a circuit mechanism for synaptic modulation and behavioral flexibility by sexual dimorphic pheromones. eLife Sciences Publications, Ltd 2021-03-31 /pmc/articles/PMC8051947/ /pubmed/33787493 http://dx.doi.org/10.7554/eLife.67170 Text en © 2021, Qian et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
Qian, Kang-Ying
Zeng, Wan-Xin
Hao, Yue
Zeng, Xian-Ting
Liu, Haowen
Li, Lei
Chen, Lili
Tian, Fu-min
Chang, Cindy
Hall, Qi
Song, Chun-Xue
Gao, Shangbang
Hu, Zhitao
Kaplan, Joshua M
Li, Qian
Tong, Xia-Jing
Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner
title Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner
title_full Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner
title_fullStr Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner
title_full_unstemmed Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner
title_short Male pheromones modulate synaptic transmission at the C. elegans neuromuscular junction in a sexually dimorphic manner
title_sort male pheromones modulate synaptic transmission at the c. elegans neuromuscular junction in a sexually dimorphic manner
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8051947/
https://www.ncbi.nlm.nih.gov/pubmed/33787493
http://dx.doi.org/10.7554/eLife.67170
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