Benson Christopher J, Xie Jinghui, Wemmie John A, Price Margaret P, Henss Jillian M, Welsh Michael J, Snyder Peter M
Department of Internal Medicine and Psychiatry, and Howard Hughes Medical Institute, University of Iowa College of Medicine, Iowa City, IA 52242, USA.
Proc Natl Acad Sci U S A. 2002 Feb 19;99(4):2338-43. doi: 10.1073/pnas.032678399.
Acidic extracellular solution activates transient H(+)-gated currents in dorsal root ganglion (DRG) neurons. The biophysical properties of three degenerin/epithelial sodium (DEG/ENaC) channel subunits (BNC1, ASIC, and DRASIC), and their expression in DRG, suggest that they might underlie these H(+)-gated currents and function as sensory transducers. However, it is uncertain which of these DEG/ENaC subunits generate the currents, and whether they function as homomultimers or heteromultimers. We found that the biophysical properties of transient H(+)-gated currents from medium to large mouse DRG neurons differed from BNC1, ASIC, or DRASIC expressed individually, but were reproduced by coexpression of the subunits together. To test the contribution of each subunit, we studied DRG from three strains of mice, each bearing a targeted disruption of BNC1, ASIC, or DRASIC. Deletion of any one subunit did not abolish H(+)-gated currents, but altered currents in a manner consistent with heteromultimerization of the two remaining subunits. These data indicate that combinations of two or more DEG/ENaC subunits coassemble as heteromultimers to generate transient H(+)-gated currents in mouse DRG neurons.
酸性细胞外溶液可激活背根神经节(DRG)神经元中的瞬时H(+)门控电流。三种退化蛋白/上皮钠通道(DEG/ENaC)亚基(BNC1、ASIC和DRASIC)的生物物理特性及其在DRG中的表达表明,它们可能是这些H(+)门控电流的基础,并作为感觉转导器发挥作用。然而,尚不确定这些DEG/ENaC亚基中哪一个产生电流,以及它们是作为同多聚体还是异多聚体发挥作用。我们发现,从小鼠中到大的DRG神经元产生的瞬时H(+)门控电流的生物物理特性不同于单独表达的BNC1、ASIC或DRASIC,但通过亚基共同表达可重现这些特性。为了测试每个亚基的作用,我们研究了三种小鼠品系的DRG,每种品系分别对BNC1、ASIC或DRASIC进行了靶向破坏。删除任何一个亚基都不会消除H(+)门控电流,但会以与其余两个亚基异源多聚化一致的方式改变电流。这些数据表明,两种或更多种DEG/ENaC亚基组合形成异源多聚体,在小鼠DRG神经元中产生瞬时H(+)门控电流。