Department of Physiology and Biophysics, University of Washington, Seattle, WA 98195.
Department of Chemistry, University of Washington, Seattle, WA 98195.
Proc Natl Acad Sci U S A. 2020 May 19;117(20):10839-10847. doi: 10.1073/pnas.1916375117. Epub 2020 May 1.
Cyclic nucleotide-gated (CNG) ion channels are essential components of mammalian visual and olfactory signal transduction. CNG channels open upon direct binding of cyclic nucleotides (cAMP and/or cGMP), but the allosteric mechanism by which this occurs is incompletely understood. Here, we employed double electron-electron resonance (DEER) spectroscopy to measure intersubunit distance distributions in SthK, a bacterial CNG channel from Spin labels were introduced into the SthK C-linker, a domain that is essential for coupling cyclic nucleotide binding to channel opening. DEER revealed an agonist-dependent conformational change in which residues of the B'-helix displayed outward movement with respect to the symmetry axis of the channel in the presence of the full agonist cAMP, but not with the partial agonist cGMP. This conformational rearrangement was observed both in detergent-solubilized SthK and in channels reconstituted into lipid nanodiscs. In addition to outward movement of the B'-helix, DEER-constrained Rosetta structural models suggest that channel activation involves upward translation of the cytoplasmic domain and formation of state-dependent interactions between the C-linker and the transmembrane domain. Our results demonstrate a previously unrecognized structural transition in a CNG channel and suggest key interactions that may be responsible for allosteric gating in these channels.
环核苷酸门控 (CNG) 离子通道是哺乳动物视觉和嗅觉信号转导的重要组成部分。CNG 通道在直接结合环核苷酸 (cAMP 和/或 cGMP) 时打开,但这种情况发生的变构机制尚不完全清楚。在这里,我们使用双电子电子共振 (DEER) 光谱法来测量来自 Spin 标记物被引入 SthK 的 C 链接器中,该结构域对于将环核苷酸结合与通道打开偶联至关重要。DEER 揭示了一种激动剂依赖性构象变化,其中 B'-螺旋的残基在存在全激动剂 cAMP 的情况下相对于通道的对称轴显示出向外运动,但在部分激动剂 cGMP 存在下则没有。这种构象重排既发生在去污剂溶解的 SthK 中,也发生在重新组装到脂质纳米盘中的通道中。除了 B'-螺旋的向外运动之外,DEER 约束的 Rosetta 结构模型表明,通道激活涉及细胞质结构域的向上平移以及 C 链接器和跨膜结构域之间形成状态依赖的相互作用。我们的结果表明 CNG 通道中存在以前未被识别的结构转变,并提出了可能负责这些通道变构门控的关键相互作用。