Cens T, Restituito S, Charnet P
CRBM, CNRS UPR 1086, IFR 24, Montpellier, France.
FEBS Lett. 1999 Apr 30;450(1-2):17-22. doi: 10.1016/s0014-5793(99)00463-9.
Ca2+ channel auxiliary beta subunits have been shown to modulate voltage-dependent inactivation of various types of Ca2+ channels. The beta1 and beta2 subunits, that are differentially expressed with the L-type alpha1 Ca2+ channel subunit in heart, muscle and brain, can specifically modulate the Ca2+-dependent inactivation kinetics. Their expression in Xenopus oocytes with the alpha1C subunit leads, in both cases, to biphasic Ca2+ current decays, the second phase being markedly slowed by expression of the beta2 subunit. Using a series of beta subunit deletion mutants and chimeric constructs of beta1 and beta2 subunits, we show that the inhibitory site located on the amino-terminal region of the beta2a subunit is the major element of this regulation. These results thus suggest that different splice variants of the beta2 subunit can modulate, in a specific way, the Ca2+ entry through L-type Ca2+ channels in different brain or heart regions.
钙离子通道辅助β亚基已被证明可调节各种类型钙离子通道的电压依赖性失活。β1和β2亚基在心脏、肌肉和大脑中与L型α1钙离子通道亚基差异表达,可特异性调节钙离子依赖性失活动力学。它们与α1C亚基在非洲爪蟾卵母细胞中的表达,在两种情况下均导致双相钙离子电流衰减,第二相因β2亚基的表达而明显减慢。使用一系列β亚基缺失突变体以及β1和β2亚基的嵌合构建体,我们表明位于β2a亚基氨基末端区域的抑制位点是这种调节的主要元件。因此,这些结果表明β2亚基的不同剪接变体可以以特定方式调节不同脑区或心脏区域通过L型钙离子通道的钙离子内流。