首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Short Polybasic Segment between the Two Conserved Domains of the β2a-Subunit Modulates the Rate of Inactivation of R-type Calcium Channel
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A Short Polybasic Segment between the Two Conserved Domains of the β2a-Subunit Modulates the Rate of Inactivation of R-type Calcium Channel

机译:β2a亚基的两个保守域之间的短多元节段调节R型钙通道的失活速率。

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摘要

Besides opening and closing, high voltage-activated calcium channels transit to a nonconducting inactivated state from which they do not re-open unless the plasma membrane is repolarized. Inactivation is critical for temporal regulation of intracellular calcium signaling and prevention of a deleterious rise in calcium concentration. R-type high voltage-activated channels inactivate fully in a few hundred milliseconds when expressed alone. However, when co-expressed with a particular β-subunit isoform, β2a, inactivation is partial and develops in several seconds. Palmitoylation of a unique di-cysteine motif at the N terminus anchors β2a to the plasma membrane. The current view is that membrane-anchored β2a immobilizes the channel inactivation machinery and confers slow inactivation phenotype. β-Subunits contain one Src homology 3 and one guanylate kinase domain, flanked by variable regions with unknown structures. Here, we identified a short polybasic segment at the boundary of the guanylate kinase domain that slows down channel inactivation without relocating a palmitoylation-deficient β2a to the plasma membrane. Substitution of the positively charged residues within this segment by alanine abolishes its slow inactivation-conferring phenotype. The linker upstream from the polybasic segment, but not the N- and C-terminal variable regions, masks the effect of this determinant. These results reveal a novel mechanism for inhibiting voltage-dependent inactivation of R-type calcium channels by the β2a-subunit that might involve electrostatic interactions with an unknown target on the channel's inactivation machinery or its modulatory components. They also suggest that intralinker interactions occlude the action of the polybasic segment and that its functional availability is regulated by the palmitoylated state of the β2a-subunit.
机译:除打开和关闭外,高压激活的钙通道还转换为非导电灭活状态,除非质膜重新极化,否则它们不会重新打开。失活对于细胞内钙信号传导的暂时调节和防止钙浓度的有害升高至关重要。当单独表达时,R型高压激活通道会在几百毫秒内完全失活。但是,当与特定的β亚基同种型β2a共表达时,失活是部分的,并在几秒钟内发展。 N末端独特的双半胱氨酸基序的棕榈酰化将β2a锚定在质膜上。当前的观点是膜锚定的β2a固定通道失活机制,并赋予慢速失活表型。 β-亚基包含一个Src同源性3和一个鸟苷酸激酶结构域,侧翼是结构未知的可变区。在这里,我们在鸟苷酸激酶结构域的边界处确定了一个短的多碱基节段,该节段减慢了通道失活的速度,而没有将棕榈酰化缺陷的β2a重新定位到质膜上。丙氨酸取代该区段内带正电荷的残基消除了其缓慢的赋予灭活的表型。多元片段上游的接头,但不是N和C末端可变区,掩盖了该决定簇的作用。这些结果揭示了一种新的机制,该机制可抑制β2a亚基对R型钙通道的电压依赖性失活,该失活可能涉及与通道失活机制或其调节成分上未知靶标的静电相互作用。他们还暗示,内部连接子之间的相互作用会阻碍多碱基片段的作用,其功能可用性受β2a亚基的棕榈酰化状态调节。

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