Mechanotransduction channels are widely expressed in both vertebrates and invertebrates, mediating various physiological processes such as touch, hearing and blood-pressure sensing. While previously known mechanotransduction channels in metazoans are primarily cation-selective, we identified Anoctamin-1 (ANOH-1), the C. elegans homolog of mammalian calcium-activated chloride channel ANO1/TMEM16A, as an essential component of a mechanosensory channel complex that contributes to the nose touch mechanosensation in C. elegans. Ectopic expression of either C. elegans or human Anoctamin-1 confers mechanosensitivity to touch-insensitive neurons, suggesting a cell-autonomous role of ANOH-1/ANO1 in mechanotransduction. Additionally, we demonstrated that the mechanosensory function of ANOH-1/ANO1 relies on CIB (calcium- and integrin- binding) proteins. Thus, our results reveal an evolutionarily conserved chloride channel involved in mechanosensory transduction in metazoans, highlighting the importance of anion channels in mechanosensory processes.
Anoctamin-1 is a core component of a mechanosensory anion channel complex in C. elegans.
Anoctamin-1 是秀丽隐杆线虫机械感觉阴离子通道复合物的核心成分
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作者:Zou Wenjuan, Fan Yuedan, Liu Jia, Cheng Hankui, Hong Huitao, Al-Sheikh Umar, Li Shitian, Zhu Linhui, Li Rong, He Longyuan, Tang Yi-Quan, Zhao Guohua, Zhang Yongming, Wang Feng, Zhan Renya, Zheng Xiujue, Kang Lijun
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Feb 16; 16(1):1680 |
| doi: | 10.1038/s41467-025-56938-z | 研究方向: | 其它 |
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