A proton-inhibited DEG/ENaC ion channel maintains neuronal ionstasis and promotes neuronal survival under stress

被引:1
作者
Petratou, Dionysia [1 ,2 ]
Gjikolaj, Martha [1 ,2 ]
Kaulich, Eva [3 ]
Schafer, William [3 ]
Tavernarakis, Nektarios [1 ,2 ]
机构
[1] Fdn Res & Technol, Inst Mol Biol & Biotechnol, Iraklion 70013, Crete, Greece
[2] Univ Crete, Sch Med, Dept Basic Sci, Iraklion 71003, Crete, Greece
[3] MRC Lab Mol Biol, Neurobiol Div, Cambridge Biomed Campus, Cambridge CB2 0QH, England
基金
欧洲研究理事会; 欧盟地平线“2020”; 美国国家卫生研究院;
关键词
EPITHELIAL SODIUM-CHANNELS; CAENORHABDITIS-ELEGANS; C-ELEGANS; OXIDATIVE STRESS; NA+ CHANNEL; EXPRESSION; PH; RECEPTORS; MECHANISM; PATHWAY;
D O I
10.1016/j.isci.2023.107117
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The nervous system participates in the initiation and modulation of systemic stress. Ionstasis is of utmost importance for neuronal function. Imbalance in neuronal sodium homeostasis is associated with pathologies of the nervous system. However, the effects of stress on neuronal Na+ homeostasis, excitability, and survival remain unclear. We report that the DEG/ENaC family member DEL-4 assembles into a proton-inactivated sodium channel. DEL-4 operates at the neuronal membrane and synapse to modulate Caenorhabditis elegans locomotion. Heat stress and starvation alter DEL-4 expression, which in turn alters the expression and activity of key stress-response transcription factors and triggers appropriate motor adaptations. Similar to heat stress and starvation, DEL-4 deficiency causes hyperpolarization of dopaminergic neurons and affects neurotransmission. Using humanized models of neurodegenerative diseases in C. elegans, we showed that DEL-4 promotes neuronal survival. Our findings provide insights into the molecular mechanisms by which sodium channels promote neuronal function and adaptation under stress.
引用
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页数:41
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