Hayoz Sebastien, Tiwari Purushottam B, Piszczek Grzegorz, Üren Aykut, Brelidze Tinatin I
Department of Pharmacology and Physiology, Georgetown University Medical Center, Washington, DC, United States of America.
Department of Oncology, Georgetown University Medical Center, Washington, DC, United States of America.
PLoS One. 2017 Sep 26;12(9):e0185359. doi: 10.1371/journal.pone.0185359. eCollection 2017.
Hyperpolarization-activated cyclic nucleotide-modulated (HCN) channels control cardiac and neuronal rhythmicity. HCN channels contain cyclic nucleotide-binding domain (CNBD) in their C-terminal region linked to the pore-forming transmembrane segment with a C-linker. The C-linker couples the conformational changes caused by the direct binding of cyclic nucleotides to the HCN pore opening. Recently, cyclic dinucleotides were shown to antagonize the effect of cyclic nucleotides in HCN4 but not in HCN2 channels. Based on the structural analysis and mutational studies it has been proposed that cyclic dinucleotides affect HCN4 channels by binding to the C-linker pocket (CLP). Here, we first show that surface plasmon resonance (SPR) can be used to accurately measure cyclic nucleotide binding affinity to the C-linker/CNBD of HCN2 and HCN4 channels. We then used SPR to investigate cyclic dinucleotide binding in HCN channels. To our surprise, we detected no binding of cyclic dinucleotides to the isolated monomeric C-linker/CNBDs of HCN4 channels with SPR. The binding of cyclic dinucleotides was further examined with isothermal calorimetry (ITC), which indicated no binding of cyclic dinucleotides to both monomeric and tetrameric C-linker/CNBDs of HCN4 channels. Taken together, our results suggest that interaction of the C-linker/CNBD with other parts of the channel is necessary for cyclic-dinucleotide binding in HCN4 channels.
超极化激活的环核苷酸调制(HCN)通道控制心脏和神经元的节律性。HCN通道在其C末端区域包含环核苷酸结合结构域(CNBD),该结构域通过一个C连接子与形成孔道的跨膜片段相连。C连接子将环核苷酸直接结合所引起的构象变化与HCN孔道开放偶联起来。最近的研究表明,环二核苷酸可拮抗环核苷酸对HCN4通道的作用,但对HCN2通道无此作用。基于结构分析和突变研究,有人提出环二核苷酸通过与C连接子口袋(CLP)结合来影响HCN4通道。在此,我们首先表明表面等离子体共振(SPR)可用于准确测量环核苷酸与HCN2和HCN4通道的C连接子/CNBD的结合亲和力。然后我们使用SPR来研究HCN通道中环二核苷酸的结合情况。令我们惊讶的是,通过SPR我们未检测到环二核苷酸与HCN4通道分离的单体C连接子/CNBD结合。我们进一步用等温滴定量热法(ITC)检测环二核苷酸的结合情况,结果表明环二核苷酸与HCN4通道的单体和四聚体C连接子/CNBD均未结合。综上所述,我们的结果表明,C连接子/CNBD与通道其他部分的相互作用对于HCN4通道中环二核苷酸的结合是必要的。