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首页> 外文期刊>Channels >Swapping the I-II intracellular linker between L-type CaV1.2 and R-type CaV2.3 high-voltage gated calcium channels exchanges activation attributes
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Swapping the I-II intracellular linker between L-type CaV1.2 and R-type CaV2.3 high-voltage gated calcium channels exchanges activation attributes

机译:在L型CaV1.2和R型CaV2.3高压门控钙通道之间交换I-II细胞内接头可交换激活属性

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摘要

Calcium entry through voltage-gated calcium channels (VGCC) initiates diverse cellular functions. VGCC pore-forming subunit (Ca_(V)α1) contains four homology repeats, each encompassing a voltage sensor and a pore domain. Three main classes of?Ca_(V)α1 subunits have been described,?Ca_(V)1, Ca_(V)2 and Ca_(V)3 that differ in their voltage-dependence of activation and in the extent in which this process is modulated by the auxiliary β-subunit (Ca_(V)β). Association of Ca_(V)β induces a coil-to-helix conformation of the I-II intracellular linker joining the first and second repeat of CaVα1 that is thought to be crucial for modulation of channel function. When expressed in Xenopus laevis oocytes in the absence of?Ca_(V)β the voltage to reach 50% activation (V_(0.5)) for Ca_(V)1.2 and Ca_(V)2.3 differs by more than 60 mV and the channel current-carrying capacity by more than thirty-fold. Here we report that the difference in V_(0.5) is reduced to about 30 mV and the current-carrying capacity becomes virtually identical when the I-II linkers of?Ca_(V)1.2 and?Ca_(V)2.3 are swapped. Co-expression with?Ca_(V)β increases the current-carrying capacity of chimeric channels by the same extent, while the difference in V_(0.5) with respect to their corresponding parental channels vanishes. Our findings indicate that Ca_(V)β modulatory potency is determined by both, the nature of the I-II linker and the pore-forming subunit background. Moreover, they demonstrate that the I-II linker encodes self-reliant molecular determinants for channel activation and suggest that besides to the secondary structure adopted by this segment upon?Ca_(V)β association, its chemical nature is as well relevant.
机译:钙通过电压门控钙通道(VGCC)进入可启动多种细胞功能。 VGCC成孔亚基(Ca_(V)α1)包含四个同源重复,每个重复包含一个电压传感器和一个孔结构域。已经描述了三个主要类别的αCa_(V)α1亚基,αCa_(V)1,Ca_(V)2和Ca_(V)3,它们的激活电压依赖性和该过程的程度不同。由辅助β-亚基(Ca_(V)β)调制。 Ca_(V)β的协会诱导连接CaVα1的第一个和第二个重复的I-II细胞内接头的线圈到螺旋构象,这被认为对调节通道功能至关重要。在不存在Ca_(V)β的情况下在非洲爪蟾卵母细胞中表达时,Ca_(V)1.2和Ca_(V)2.3达到50%激活(V_(0.5))的电压相差60 mV以上通道的载流量增加了三十倍以上。在这里我们报告说,当交换ΔCa_(V)1.2和ΔCa_(V)2.3的I-II连接子时,V_(0.5)的差减小到大约30mV,并且载流容量几乎相同。与ΔCa_(V)β的共表达将嵌合通道的载流能力提高了相同程度,而相对于其相应的亲代通道的V_(0.5)的差异消失了。我们的发现表明,Ca_(V)β调节能力是由I-II接头的性质和成孔亚基背景决定的。而且,他们证明了I-II接头编码用于通道激活的自力更生的分子决定簇,并暗示除了该片段在Ca_(V)β缔合时采用的二级结构外,其化学性质也很重要。

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