Zheng Jie, Zagotta William N
Howard Hughes Medical Institute, Department of Physiology and Biophysics, Box 357290, University of Washington School of Medicine, Seattle, WA 98195 USA.
Neuron. 2004 May 13;42(3):411-21. doi: 10.1016/s0896-6273(04)00253-3.
Native ion channels are precisely tuned to their physiological role in neuronal signaling. This tuning frequently involves the controlled assembly of heteromeric channels comprising multiple types of subunits. Cyclic nucleotide-gated (CNG) channels of olfactory neurons are tetramers and require three types of subunits, CNGA2, CNGA4, and CNGB1b, to exhibit properties necessary for olfactory transduction. Using fluorescently tagged subunits and fluorescence resonance energy transfer (FRET), we find the subunit composition of heteromeric olfactory channels in the surface membrane is fixed, with 2:1:1 CNGA2:CNGA4:CNGB1b. Furthermore, when expressed individually with CNGA2, CNGA4 and CNGB1b subunits were still present in only a single copy and, when expressed alone, did not self-assemble. These results suggest that the precise assembly of heteromeric olfactory channels results from a mechanism where CNGA4 and CNGB1b subunits have a high affinity for CNGA2 but not for self-assembly, precluding more than one CNGA4 or CNGB1b subunit in the channel complex.
天然离子通道在神经元信号传导中的生理作用是经过精确调节的。这种调节通常涉及由多种亚基组成的异源通道的可控组装。嗅觉神经元的环核苷酸门控(CNG)通道是四聚体,需要三种亚基,即CNGA2、CNGA4和CNGB1b,才能展现出嗅觉转导所需的特性。利用荧光标记的亚基和荧光共振能量转移(FRET)技术,我们发现表面膜中异源嗅觉通道的亚基组成是固定的,为2:1:1的CNGA2:CNGA4:CNGB1b。此外,当CNGA4和CNGB1b亚基分别与CNGA2一起表达时,它们仍仅以单拷贝形式存在,并且单独表达时不会自我组装。这些结果表明,异源嗅觉通道的精确组装源于一种机制,即CNGA4和CNGB1b亚基对CNGA2具有高亲和力,但对自我组装没有亲和力,从而排除了通道复合物中存在多个CNGA4或CNGB1b亚基的可能性。