首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Alternative Splicing at C Terminus of CaV1.4 Calcium Channel Modulates Calcium-dependent Inactivation Activation Potential and Current Density
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Alternative Splicing at C Terminus of CaV1.4 Calcium Channel Modulates Calcium-dependent Inactivation Activation Potential and Current Density

机译:CaV1.4钙通道C末端的选择性剪接可调节钙依赖性的失活激活电位和电流密度

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摘要

The CaV1.4 voltage-gated calcium channel is predominantly expressed in the retina, and mutations to this channel have been associated with human congenital stationary night blindness type-2. The L-type CaV1.4 channel displays distinct properties such as absence of calcium-dependent inactivation (CDI) and slow voltage-dependent inactivation (VDI) due to the presence of an autoinhibitory domain (inhibitor of CDI) in the distal C terminus. We hypothesized that native CaV1.4 is subjected to extensive alternative splicing, much like the other voltage-gated calcium channels, and employed the transcript scanning method to identify alternatively spliced exons within the CaV1.4 transcripts isolated from the human retina. In total, we identified 19 alternative splice variations, of which 16 variations have not been previously reported. Characterization of the C terminus alternatively spliced exons using whole-cell patch clamp electrophysiology revealed a splice variant that exhibits robust CDI. This splice variant arose from the splicing of a novel alternate exon (43*) that can be found in 13.6% of the full-length transcripts screened. Inclusion of exon 43* inserts a stop codon that truncates half the C terminus. The CaV1.4 43* channel exhibited robust CDI, a larger current density, a hyperpolarized shift in activation potential by ∼10 mV, and a slower VDI. Through deletional experiments, we showed that the inhibitor of CDI was responsible for modulating channel activation and VDI, in addition to CDI. Calcium currents in the photoreceptors were observed to exhibit CDI and are more negatively activated as compared with currents elicited from heterologously expressed full-length CaV1.4. Naturally occurring alternative splice variants may in part contribute to the properties of the native CaV1.4 channels.
机译:CaV1.4电压门控钙通道主要在视网膜中表达,该通道的突变与2型人类先天性固定性夜盲有关。 L型CaV1.4通道显示出独特的特性,例如由于远端C末端存在自抑制域(CDI抑制剂),因此不存在钙依赖性灭活(CDI)和慢电压依赖性失活(VDI)。我们假设天然CaV1.4经历了广泛的替代剪接,就像其他电压门控钙通道一样,并采用了转录本扫描方法来鉴定从人视网膜分离的CaV1.4转录本内的替代剪接外显子。总共,我们确定了19个替代剪接变体,其中16个变体以前未曾报道过。使用全细胞膜片钳电生理学对C末端交替剪接的外显子进行表征,揭示了一个剪接变体,显示出强大的CDI。这种剪接变体来自于新的替代外显子(43 *)的剪接,该剪接变体可在所筛选的全长转录本的13.6%中找到。包含外显子43 *将插入一个终止密码子,该密码子会截断一半的C末端。 CaV1.4 43 *通道具有强大的CDI,更大的电流密度,激活电势超极化位移约10 mV和较慢的VDI。通过删除实验,我们发现CDI抑制剂除CDI外还负责调节通道激活和VDI。与从异源表达的全长CaV1.4引起的电流相比,可以观察到感光器中的钙电流显示出CDI并被更负激活。天然存在的替代剪接变体可以部分地有助于天然CaV1.4通道的特性。

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