Gamper Nikita, Li Yang, Shapiro Mark S
Department of Physiology, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229, USA.
Mol Biol Cell. 2005 Aug;16(8):3538-51. doi: 10.1091/mbc.e04-09-0849. Epub 2005 May 18.
Calmodulin modulation of ion channels has emerged as a prominent theme in biology. The sensitivity of KCNQ1-5 K+ channels to modulation by Ca2+/calmodulin (CaM) was studied using patch-clamp, Ca2+ imaging, and biochemical and pharmacological approaches. Coexpression of CaM in Chinese hamster ovary (CHO) cells strongly reduced currents of KCNQ2, KCNQ4, and KCNQ5, but not KCNQ1 or KCNQ3. In simultaneous current recording/Ca2+ imaging experiments, CaM conferred Ca2+ sensitivity to KCNQ4 and KCNQ5, but not to KCNQ1, KCNQ3, or KCNQ1/KCNE1 channels. A chimera constructed from the carboxy terminus of KCNQ4 and the rest KCNQ1 displayed Ca2+ sensitivity similar to KCNQ4. Chimeras constructed from different lengths of the KCNQ4 carboxy terminal and the rest KCNQ3 localized a region that confers sensitivity to Ca2+/CaM. Lobe-specific mutations of CaM revealed that its amino-terminal lobe mediates the Ca2+ sensitivity of the KCNQ/CaM complex. The site of CaM action within the channel carboxy terminus overlaps with that of the KCNQ opener N-ethylmaleimide (NEM). We found that CaM overexpression reduced NEM augmentation of KCNQ2, KCNQ4, and KCNQ5, and NEM pretreatment reduced Ca2+/CaM-mediated suppression of M current in sympathetic neurons by bradykinin. We propose that two functionally distinct types of carboxy termini underlie the observed differences among this channel family.
钙调蛋白对离子通道的调节已成为生物学中的一个突出主题。利用膜片钳、钙离子成像以及生化和药理学方法,研究了KCNQ1 - 5钾离子通道对Ca2+/钙调蛋白(CaM)调节的敏感性。在中国仓鼠卵巢(CHO)细胞中共表达CaM可显著降低KCNQ2、KCNQ4和KCNQ5的电流,但对KCNQ1或KCNQ3无影响。在同步电流记录/钙离子成像实验中,CaM赋予KCNQ4和KCNQ5钙离子敏感性,但对KCNQ1、KCNQ3或KCNQ1/KCNE1通道无此作用。由KCNQ4的羧基末端和其余部分KCNQ1构建的嵌合体显示出与KCNQ4相似的钙离子敏感性。由不同长度的KCNQ4羧基末端和其余部分KCNQ3构建的嵌合体定位了一个赋予对Ca2+/CaM敏感性的区域。CaM的叶特异性突变表明,其氨基末端叶介导了KCNQ/CaM复合物的钙离子敏感性。通道羧基末端内CaM的作用位点与KCNQ开放剂N - 乙基马来酰亚胺(NEM)的作用位点重叠。我们发现,CaM过表达降低了NEM对KCNQ2、KCNQ4和KCNQ5的增强作用,而NEM预处理降低了缓激肽对交感神经元中Ca2+/CaM介导的M电流的抑制作用。我们提出,两种功能不同的羧基末端是该通道家族中观察到的差异的基础。