Wahl-Schott Christian, Baumann Ludwig, Cuny Hartmut, Eckert Christian, Griessmeier Kristina, Biel Martin
Department Pharmazie-Zentrum für Pharmaforschung, Ludwig-Maximilians-Universität München, Butenandtstrasse 7, 81377 Munich, Germany.
Proc Natl Acad Sci U S A. 2006 Oct 17;103(42):15657-62. doi: 10.1073/pnas.0604621103. Epub 2006 Oct 6.
The retinal L-type Ca2+ channel Cav1.4 is distinguished from all other members of the high voltage-activated (HVA) Ca2+ channel family by lacking Ca2+-calmodulin-dependent inactivation. In synaptic terminals of photoreceptors and bipolar cells, this feature is essential to translate graded membrane depolarizations into sustained Ca2+ influx and tonic glutamate release. The sequences conferring Ca2+-dependent inactivation (CDI) are conserved throughout the HVA calcium channel family, raising the question of how Cav1.4 manages to switch off CDI. Here, we identify an autoinhibitory domain in the distal C terminus of Cav1.4 that serves to abolish CDI. We show that this domain (ICDI, inhibitor of CDI) uncouples the molecular machinery conferring CDI from the inactivation gate by binding to the EF hand motif in the proximal C terminus. Deletion of ICDI completely restores Ca2+-calmodulin-mediated CDI in Cav1.4. CDI can be switched off again in the truncated Cav1.4 channel by coexpression of ICDI, indicating that ICDI works as an autonomous unit. Furthermore, we show that in the Cav1.2 l-type Ca2+-channel replacement of the distal C terminus by the corresponding sequence of Cav1.4 is sufficient to block CDI. This finding suggests that autoinhibition of CDI can be introduced principally into other Ca2+ channel types. Our data provide a previously undescribed perspective on the regulation of HVA calcium channels by Ca2+.
视网膜L型Ca2+通道Cav1.4与高电压激活(HVA)Ca2+通道家族的所有其他成员不同,它缺乏Ca2+ - 钙调蛋白依赖性失活。在光感受器和双极细胞的突触末端,这一特性对于将分级膜去极化转化为持续的Ca2+内流和持续性谷氨酸释放至关重要。赋予Ca2+依赖性失活(CDI)的序列在整个HVA钙通道家族中是保守的,这就提出了Cav1.4如何设法关闭CDI的问题。在这里,我们在Cav1.4的远端C末端鉴定出一个自抑制结构域,该结构域用于消除CDI。我们表明,这个结构域(ICDI,CDI抑制剂)通过与近端C末端的EF手基序结合,使赋予CDI的分子机制与失活门解偶联。删除ICDI可完全恢复Cav1.4中Ca2+ - 钙调蛋白介导的CDI。通过共表达ICDI,在截短的Cav1.4通道中CDI可以再次被关闭,这表明ICDI作为一个自主单元起作用。此外,我们表明,在Cav1.2 L型Ca2+通道中,用Cav1.4的相应序列替换远端C末端足以阻断CDI。这一发现表明,CDI的自抑制原则上可以引入到其他类型的Ca2+通道中。我们的数据为Ca2+对HVA钙通道的调节提供了一个以前未描述的视角。