Kellenberger Stephan, Schild Laurent
Institut de Pharmacologie et de Toxicologie, Université de Lausanne, Lausanne, Switzerland.
Physiol Rev. 2002 Jul;82(3):735-67. doi: 10.1152/physrev.00007.2002.
The recently discovered epithelial sodium channel (ENaC)/degenerin (DEG) gene family encodes sodium channels involved in various cell functions in metazoans. Subfamilies found in invertebrates or mammals are functionally distinct. The degenerins in Caenorhabditis elegans participate in mechanotransduction in neuronal cells, FaNaC in snails is a ligand-gated channel activated by neuropeptides, and the Drosophila subfamily is expressed in gonads and neurons. In mammals, ENaC mediates Na+ transport in epithelia and is essential for sodium homeostasis. The ASIC genes encode proton-gated cation channels in both the central and peripheral nervous system that could be involved in pain transduction. This review summarizes the physiological roles of the different channels belonging to this family, their biophysical and pharmacological characteristics, and the emerging knowledge of their molecular structure. Although functionally different, the ENaC/DEG family members share functional domains that are involved in the control of channel activity and in the formation of the pore. The functional heterogeneity among the members of the ENaC/DEG channel family provides a unique opportunity to address the molecular basis of basic channel functions such as activation by ligands, mechanotransduction, ionic selectivity, or block by pharmacological ligands.
最近发现的上皮钠通道(ENaC)/退化素(DEG)基因家族编码参与后生动物各种细胞功能的钠通道。在无脊椎动物或哺乳动物中发现的亚家族在功能上是不同的。秀丽隐杆线虫中的退化素参与神经元细胞的机械转导,蜗牛中的FaNaC是一种由神经肽激活的配体门控通道,果蝇亚家族在性腺和神经元中表达。在哺乳动物中,ENaC介导上皮细胞中的Na+转运,对钠稳态至关重要。ASIC基因在中枢和外周神经系统中编码质子门控阳离子通道,可能参与疼痛传导。本综述总结了该家族不同通道的生理作用、它们的生物物理和药理学特性,以及它们分子结构的新认识。尽管功能不同,但ENaC/DEG家族成员共享参与通道活性控制和孔形成的功能域。ENaC/DEG通道家族成员之间的功能异质性为研究诸如配体激活、机械转导、离子选择性或药理学配体阻断等基本通道功能的分子基础提供了独特的机会。