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通过同时测量膜电压和细胞内钙揭示的感觉感知机制。

Mechanism of sensory perception unveiled by simultaneous measurement of membrane voltage and intracellular calcium.

作者信息

Tokunaga Terumasa, Sato Noriko, Arai Mary, Nakamura Takumi, Ishihara Takeshi

机构信息

Department of Artificial Intelligence, Faculty of Computer Science and Systems Engineering, Kyushu Institute of Technology, Fukuoka, Japan.

Department of Biology, Faculty of Science, Kyushu University, Fukuoka, Japan.

出版信息

Commun Biol. 2024 Sep 16;7(1):1150. doi: 10.1038/s42003-024-06778-2.

Abstract

Measuring neuronal activity is important for understanding neuronal function. Ca imaging by genetically encoded calcium indicators (GECIs) is a powerful way to measure neuronal activity. Although it revealed important aspects of neuronal function, measuring the neuronal membrane voltage is important to understand neuronal function as it triggers neuronal activation. Recent progress of genetically encoded voltage indicators (GEVIs) enabled us fast and precise measurements of neuronal membrane voltage. To clarify the relation of the membrane voltage and intracellular Ca, we analyzed neuronal activities of olfactory neuron AWA in Caenorhabditis elegans by GCaMP6f (GECI) and paQuasAr3 (GEVI) responding to odorants. We found that the membrane voltage encodes the stimuli change by the timing and the duration by the weak semi-stable depolarization. However, the change of the intracellular Ca encodes the strength of the stimuli. Furthermore, ODR-3, a G-protein alpha subunit, was shown to be important for stabilizing the membrane voltage. These results suggest that the combination of calcium and voltage imaging provides a deeper understanding of the information in neural circuits.

摘要

测量神经元活动对于理解神经元功能至关重要。利用基因编码钙指示剂(GECIs)进行钙成像,是测量神经元活动的一种强大方法。尽管它揭示了神经元功能的重要方面,但测量神经元膜电压对于理解神经元功能也很重要,因为它触发神经元激活。基因编码电压指示剂(GEVIs)的最新进展使我们能够快速、精确地测量神经元膜电压。为了阐明膜电压与细胞内钙的关系,我们通过响应气味剂的GCaMP6f(GECI)和paQuasAr3(GEVI)分析了秀丽隐杆线虫嗅觉神经元AWA的神经元活动。我们发现,膜电压通过弱半稳定去极化的时间和持续时间来编码刺激变化。然而,细胞内钙的变化编码刺激的强度。此外,G蛋白α亚基ODR-3被证明对稳定膜电压很重要。这些结果表明,钙成像和电压成像相结合能更深入地理解神经回路中的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e88b/11405522/b4eb0e50a11b/42003_2024_6778_Fig1_HTML.jpg

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