电突触配置过滤感官信息,驱动行为选择

IF 45.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell Pub Date : 2024-12-31 DOI:10.1016/j.cell.2024.11.037
Agustin Almoril-Porras, Ana C. Calvo, Longgang Niu, Jonathan Beagan, Malcom Díaz García, Josh D. Hawk, Ahmad Aljobeh, Elias M. Wisdom, Ivy Ren, Zhao-Wen Wang, Daniel A. Colón-Ramos
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引用次数: 0

摘要

突触结构是神经系统处理感觉信息以产生行为反应的基础。这一点在化学突触中得到了最好的理解,而我们对电突触结构如何调节感觉信息处理和情境特定行为的了解要少得多。我们发现innexin 1 (INX-1)是一种形成电突触的间隙连接蛋白,在线虫的趋热性行为中需要部署上下文特定的行为策略。在这个定义良好的电路中,INX-1耦合两个双边对称的中间神经元,在跨越温度梯度的迁移行为中整合感觉信息。在inx-1突变体中,由于膜阻力增加和膜电容减少,非偶联的中间神经元表现出更高的兴奋性和对阈下感觉刺激的反应,导致异常反应延长运行时间,并使动物陷入与环境无关的等温线跟踪。因此,电突触的保守配置使感觉信息的差异处理能够部署上下文特定的行为策略。
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Configuration of electrical synapses filters sensory information to drive behavioral choices
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.
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来源期刊
Cell
Cell 生物-生化与分子生物学
CiteScore
110.00
自引率
0.80%
发文量
396
审稿时长
2 months
期刊介绍: Cells is an international, peer-reviewed, open access journal that focuses on cell biology, molecular biology, and biophysics. It is affiliated with several societies, including the Spanish Society for Biochemistry and Molecular Biology (SEBBM), Nordic Autophagy Society (NAS), Spanish Society of Hematology and Hemotherapy (SEHH), and Society for Regenerative Medicine (Russian Federation) (RPO). The journal publishes research findings of significant importance in various areas of experimental biology, such as cell biology, molecular biology, neuroscience, immunology, virology, microbiology, cancer, human genetics, systems biology, signaling, and disease mechanisms and therapeutics. The primary criterion for considering papers is whether the results contribute to significant conceptual advances or raise thought-provoking questions and hypotheses related to interesting and important biological inquiries. In addition to primary research articles presented in four formats, Cells also features review and opinion articles in its "leading edge" section, discussing recent research advancements and topics of interest to its wide readership.
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