Mignen O, Shuttleworth T J
Department of Pharmacology, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, USA.
J Biol Chem. 2001 Jun 15;276(24):21365-74. doi: 10.1074/jbc.M102311200. Epub 2001 Apr 2.
In a manner similar to voltage-gated Ca(2+) channels and Ca(2+) release-activated Ca(2+) (CRAC) channels, the recently identified arachidonate-regulated Ca(2+) (ARC) channels display a large monovalent conductance upon removal of external divalent cations. Using whole-cell patch-clamp recording, we have characterized the properties of these monovalent currents in HEK293 cells stably transfected with the m3 muscarinic receptor and compared them with the corresponding currents through the endogenous store-operated Ca(2+) (SOC) channels in the same cells. Although the monovalent currents seen through these two channels displayed certain similarities, several marked differences were also apparent, including the magnitude of the monovalent current/Ca(2+) current ratio, the rate and nature of the spontaneous decline in the currents, and the effects of external monovalent cation substitutions and removal of internal Mg(2+). Moreover, monovalent ARC currents could be activated after the complete spontaneous inactivation of the corresponding SOC current in the same cell. We conclude that the non-capacitative ARC channels share, with voltage-gated Ca(2+) channels and store-operated Ca(2+) channels (e.g. SOC and CRAC the general property of monovalent ion permeation in the nominal absence of extracellular divalent ions. However, the clear differences between the properties of these currents through ARC and SOC channels in the same cell confirm that these represent distinct conductances.
与电压门控Ca(2+)通道和Ca(2+)释放激活Ca(2+)(CRAC)通道类似,最近发现的花生四烯酸调节Ca(2+)(ARC)通道在去除细胞外二价阳离子后表现出较大的单价离子电导。利用全细胞膜片钳记录技术,我们对稳定转染m3毒蕈碱受体的HEK293细胞中这些单价电流的特性进行了表征,并将它们与同一细胞中内源性储存操纵性Ca(2+)(SOC)通道产生的相应电流进行了比较。尽管通过这两种通道观察到的单价电流表现出一定的相似性,但也存在一些明显的差异,包括单价电流/Ca(2+)电流比值的大小、电流自发衰减的速率和性质,以及细胞外单价阳离子替代和去除细胞内Mg(2+)的影响。此外,在同一细胞中相应的SOC电流完全自发失活后,单价ARC电流仍可被激活。我们得出结论,非电容性ARC通道与电压门控Ca(2+)通道和储存操纵性Ca(2+)通道(如SOC和CRAC通道)一样,在名义上没有细胞外二价离子的情况下具有单价离子通透的一般特性。然而,同一细胞中通过ARC通道和SOC通道的这些电流特性之间的明显差异证实,它们代表不同的电导。