Synaptic configurations underpin how the nervous system processes sensory information to produce a behavioral response. This is best understood for chemical synapses, and we know far less about how electrical synaptic configurations modulate sensory information processing and context-specific behaviors. We discovered that innexin 1 (INX-1), a gap junction protein that forms electrical synapses, is required to deploy context-specific behavioral strategies underlying thermotaxis behavior in C. elegans. Within this well-defined circuit, INX-1 couples two bilaterally symmetric interneurons to integrate sensory information during migratory behavior across temperature gradients. In inx-1 mutants, uncoupled interneurons display increased excitability and responses to subthreshold sensory stimuli due to increased membrane resistance and reduced membrane capacitance, resulting in abnormal responses that extend run durations and trap the animals in context-irrelevant tracking of isotherms. Thus, a conserved configuration of electrical synapses enables differential processing of sensory information to deploy context-specific behavioral strategies.
Configuration of electrical synapses filters sensory information to drive behavioral choices.
电突触的配置过滤感觉信息,从而驱动行为选择
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作者:Almoril-Porras Agustin, Calvo Ana C, Niu Longgang, Beagan Jonathan, DÃaz GarcÃa Malcom, Hawk Josh D, Aljobeh Ahmad, Wisdom Elias M, Ren Ivy, Wang Zhao-Wen, Colón-Ramos Daniel A
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2025 | 起止号: | 2025 Jan 9; 188(1):89-103 |
| doi: | 10.1016/j.cell.2024.11.037 | ||
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