Zhong Haining, Lai Jun, Yau King-Wai
Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Proc Natl Acad Sci U S A. 2003 Apr 29;100(9):5509-13. doi: 10.1073/pnas.0931279100. Epub 2003 Apr 16.
Many ion channels in vivo are heteromeric complexes with well defined subunit compositions. For some channels, domains have been identified that determine whether two or more subunit species are compatible in forming a complex. Nonetheless, an unsolved fundamental question is how the native composition of an ion channel is selected during assembly over functional alternatives, such as heteromeric complexes favored over homomers. Cyclic nucleotide-gated channels are tetramers and, in their native forms, are composed of A and B subunits. Although most A subunits can form functional homomeric channels when expressed alone, A/B heteromeric channels are selectively formed in the presence of a B subunit. Here, we show that this selective assembly of heteromeric channels requires a trimer-forming C-terminal leucine zipper (CLZ) domain recently identified in the distal C terminus of A, but not B, subunits. Thus, a CLZ-defective A subunit no longer forms predominantly A/B heteromeric channels with the B subunit. A mechanism for this specificity involving the trimerization of the CLZ domain is proposed.
体内许多离子通道是具有明确亚基组成的异源多聚体复合物。对于一些通道,已经鉴定出了一些结构域,这些结构域决定了两种或更多种亚基类型在形成复合物时是否兼容。然而,一个尚未解决的基本问题是,在组装过程中,离子通道的天然组成是如何在功能替代物中被选择的,比如异源多聚体复合物比同源多聚体更受青睐。环核苷酸门控通道是四聚体,其天然形式由A和B亚基组成。虽然大多数A亚基单独表达时可以形成功能性的同源通道,但在有B亚基存在的情况下会选择性地形成A/B异源通道。在这里,我们表明这种异源通道的选择性组装需要最近在A亚基而非B亚基的远端C末端鉴定出的形成三聚体的C末端亮氨酸拉链(CLZ)结构域。因此,一个CLZ缺陷的A亚基不再与B亚基主要形成A/B异源通道。我们提出了一种涉及CLZ结构域三聚化的这种特异性的机制。