Department of Physiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9040, USA.
Nature. 2010 Jul 15;466(7304):393-7. doi: 10.1038/nature09252. Epub 2010 Jun 23.
Large-conductance Ca(2+)-gated K(+) (BK) channels are essential for many biological processes such as smooth muscle contraction and neurotransmitter release. This group of channels can be activated synergistically by both voltage and intracellular Ca(2+), with the large carboxy-terminal intracellular portion being responsible for Ca(2+) sensing. Here we present the crystal structure of the entire cytoplasmic region of the human BK channel in a Ca(2+)-free state. The structure reveals four intracellular subunits, each comprising two tandem RCK domains, assembled into a gating ring similar to that seen in the MthK channel and probably representing its physiological assembly. Three Ca(2+) binding sites including the Ca(2+) bowl are mapped onto the structure based on mutagenesis data. The Ca(2+) bowl, located within the second RCK domain, forms an EF-hand-like motif and is strategically positioned close to the assembly interface between two subunits. The other two Ca(2+) (or Mg(2+)) binding sites, Asp 367 and Glu 374/Glu 399, are located on the first RCK domain. The Asp 367 site has high Ca(2+) sensitivity and is positioned in the groove between the amino- and carboxy-terminal subdomains of RCK1, whereas the low-affinity Mg(2+)-binding Glu 374/Glu 399 site is positioned on the upper plateau of the gating ring and close to the membrane. Our structure also contains the linker connecting the transmembrane and intracellular domains, allowing us to dock a voltage-gated K(+) channel pore of known structure onto the gating ring with reasonable accuracy and generate a structural model for the full BK channel.
大电导钙激活钾(BK)通道对于许多生物学过程至关重要,如平滑肌收缩和神经递质释放。这组通道可以通过电压和细胞内 Ca2+协同激活,其中大的羧基末端细胞内部分负责 Ca2+感应。我们在此展示了人 BK 通道整个细胞质区域在无 Ca2+状态下的晶体结构。该结构揭示了四个细胞内亚基,每个亚基由两个串联的 RCK 结构域组成,组装成一个门控环,类似于 MthK 通道中的结构,并可能代表其生理组装。根据突变数据,将三个 Ca2+(或 Mg2+)结合位点,包括 Ca2+碗,映射到结构上。位于第二个 RCK 结构域内的 Ca2+碗形成一个 EF 手样结构,并战略性地位于两个亚基之间的组装界面附近。另外两个 Ca2+(或 Mg2+)结合位点,Asp367 和 Glu374/Glu399,位于第一个 RCK 结构域上。Asp367 位点具有高 Ca2+敏感性,位于 RCK1 的氨基末端和羧基末端亚结构域之间的凹槽中,而低亲和力的 Mg2+结合位点 Glu374/Glu399 位于门控环的上平台上,并靠近膜。我们的结构还包含连接跨膜和细胞内域的接头,使我们能够将已知结构的电压门控钾(K+)通道孔准确地对接在门控环上,并生成完整 BK 通道的结构模型。