Department of Biological Sciences, Columbia University, New York, NY, 10027, USA.
Nat Commun. 2023 Jul 18;14(1):4284. doi: 10.1038/s41467-023-39971-8.
Cyclic nucleotide-gated (CNG) channels transduce chemical signals into electrical signals in sensory receptors and neurons. They are activated by cGMP or cAMP, which bind to the cyclic nucleotide-binding domain (CNBD) to open a gate located 50-60 Å away in the central cavity. Structures of closed and open vertebrate CNG channels have been solved, but the conformational landscape of this allosteric gating remains to be elucidated and enriched. Here, we report structures of the cGMP-activated human cone photoreceptor CNGA3/CNGB3 channel in closed, intermediate, pre-open and open states in detergent or lipid nanodisc, all with fully bound cGMP. The pre-open and open states are obtained only in the lipid nanodisc, suggesting a critical role of lipids in tuning the energetic landscape of CNGA3/CNGB3 activation. The different states exhibit subunit-unique, incremental and distinct conformational rearrangements that originate in the CNBD, propagate through the gating ring to the transmembrane domain, and gradually open the S6 cavity gate. Our work illustrates a spatial conformational-change wave of allosteric gating of a vertebrate CNG channel by its natural ligand and provides an expanded framework for studying CNG properties and channelopathy.
环核苷酸门控 (CNG) 通道将化学信号转导为感觉受体和神经元中的电信号。它们被 cGMP 或 cAMP 激活,cGMP 或 cAMP 与环核苷酸结合域 (CNBD) 结合,打开位于中央腔 50-60Å 远处的门。已解决了闭合和开放的脊椎动物 CNG 通道的结构,但这种变构门控的构象景观仍有待阐明和丰富。在这里,我们报告了在去污剂或脂质纳米盘中以闭合、中间、预打开和打开状态存在的 cGMP 激活的人视锥光感受器 CNGA3/CNGB3 通道的结构,所有结构均完全结合 cGMP。仅在脂质纳米盘中获得预打开和打开状态,这表明脂质在调节 CNGA3/CNGB3 激活的能量景观方面起着关键作用。不同的状态表现出独特的、增量的和不同的构象重排,这些构象重排起源于 CNBD,通过门控环传播到跨膜域,并逐渐打开 S6 腔门。我们的工作说明了配体诱导的脊椎动物 CNG 通道变构门控的空间构象变化波,并为研究 CNG 特性和通道病提供了一个扩展的框架。