首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Complex Regulation of Voltage-dependent Activation and Inactivation Properties of Retinal Voltage-gated Cav1.4 L-type Ca2+ Channels by Ca2+-binding Protein 4 (CaBP4)
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Complex Regulation of Voltage-dependent Activation and Inactivation Properties of Retinal Voltage-gated Cav1.4 L-type Ca2+ Channels by Ca2+-binding Protein 4 (CaBP4)

机译:Ca2 +结合蛋白4(CaBP4)对视网膜电压门控Cav1.4 L型Ca2 +通道的电压依赖性激活和失活特性的复杂调节

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摘要

Cav1.4 L-type Ca2+ channels are crucial for synaptic transmission in retinal photoreceptors and bipolar neurons. Recent studies suggest that the activity of this channel is regulated by the Ca2+-binding protein 4 (CaBP4). In the present study, we explored this issue by examining functional effects of CaBP4 on heterologously expressed Cav1.4. We show that CaBP4 dramatically increases Cav1.4 channel availability. This effect crucially depends on the presence of the C-terminal ICDI (inhibitor of Ca2+-dependent inactivation) domain of Cav1.4 and is absent in a Cav1.4 mutant lacking the ICDI. Using FRET experiments, we demonstrate that CaBP4 interacts with the IQ motif of Cav1.4 and that it interferes with the binding of the ICDI domain. Based on these findings, we suggest that CaBP4 increases Cav1.4 channel availability by relieving the inhibitory effects of the ICDI domain on voltage-dependent Cav1.4 channel gating. We also functionally characterized two CaBP4 mutants that are associated with a congenital variant of human night blindness and other closely related nonstationary retinal diseases. Although both mutants interact with Cav1.4 channels, the functional effects of CaBP4 mutants are only partially preserved, leading to a reduction of Cav1.4 channel availability and loss of function. In conclusion, our study sheds new light on the functional interaction between CaBP4 and Cav1.4. Moreover, it provides insights into the mechanism by which CaBP4 mutants lead to loss of Cav1.4 function and to retinal disease.
机译:Cav1.4 L型Ca 2 + 通道对于视网膜感光细胞和双极神经元的突触传递至关重要。最近的研究表明,该通道的活性受Ca 2 + 结合蛋白4(CaBP4)调控。在本研究中,我们通过检查CaBP4对异源表达的Cav1.4的功能作用来探索这个问题。我们表明,CaBP4大大提高了Cav1.4通道的可用性。该作用关键取决于Cav1.4的C末端ICDI(Ca 2+依赖的灭活抑制剂)结构域的存在,而在缺少ICDI的Cav1.4突变体中则不存在。使用FRET实验,我们证明CaBP4与Cav1.4的IQ模体相互作用,并且干扰ICDI域的结合。根据这些发现,我们建议CaBP4通过减轻ICDI域对电压依赖性Cav1.4通道门控的抑制作用来增加Cav1.4通道的可用性。我们还在功能上表征了两个CaBP4突变体,它们与人类夜盲症和其他紧密相关的非平稳性视网膜疾病的先天性变异有关。尽管两个突变体都与Cav1.4通道相互作用,但CaBP4突变体的功能作用仅被部分保留,导致Cav1.4通道可用性降低和功能丧失。总之,我们的研究为CaBP4和Cav1.4之间的功能相互作用提供了新的思路。此外,它提供了CaBP4突变体导致Cav1.4功能丧失和视网膜疾病的机理的见解。

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