Al-Owais Moza, Bracey Kate, Wray Dennis
Faculty of Biological Sciences, University of Leeds, Leeds, UK.
Eur Biophys J. 2009 Jun;38(5):569-76. doi: 10.1007/s00249-009-0408-2. Epub 2009 Jan 27.
The functional role of the large intracellular regions (which include the cyclic nucleotide binding domain, cNBD, and the Per-Arnt-Sim domain, PAS) in the herg channel is not well understood. We have studied possible interactions of the cNBD with other parts of the channel protein using lysine mutations to disrupt such interactions. Some lysine mutations caused significant right shifts in the voltage dependence of inactivation; almost all the mutants caused speeding up of deactivation time course. In a homology model of the cNBD, lysine mutations that affected both inactivation and deactivation lie in a hydrophobic band on the surface of the structure of this domain. Some known mutations in the Long QT Syndrome type 2, with effects on deactivation, are located at residues close to hydrophobic bands on the cNBD and the PAS domains. Such bands of residues in these intracellular domains may play an important part in channel function.
大的细胞内区域(包括环核苷酸结合结构域,即cNBD,以及Per-Arnt-Sim结构域,即PAS)在hERG通道中的功能作用尚未完全明确。我们利用赖氨酸突变来破坏这种相互作用,研究了cNBD与通道蛋白其他部分之间可能存在的相互作用。一些赖氨酸突变导致失活的电压依赖性显著右移;几乎所有突变体都使失活时间进程加快。在cNBD的同源模型中,影响失活和去激活的赖氨酸突变位于该结构域表面的一条疏水带上。长QT综合征2型中一些已知的影响去激活的突变,位于靠近cNBD和PAS结构域疏水带的残基处。这些细胞内结构域中的此类残基带可能在通道功能中发挥重要作用。