首页> 外文期刊>The Journal of biological chemistry >Essential Role of the CBD1-CBD2 Linker in Slow Dissociation of Ca2+ from the Regulatory Two-domain Tandem of NCX1
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Essential Role of the CBD1-CBD2 Linker in Slow Dissociation of Ca2+ from the Regulatory Two-domain Tandem of NCX1

机译:CBD1-CBD2接头在NCX1的监管双域串联中CBD1-CBD2接头的基本作用

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In NCX proteins CBD1 and CBD2 domains are connected through a short linker (3 or 4 amino acids) forming a regulatory tandem (CBD12). Only three of the six CBD12 Ca2+-binding sites contribute to NCX regulation. Two of them are located on CBD1 (Kd = ~0.2 μm), and one is on CBD2 (Kd = ~5 μm). Here we analyze how the intrinsic properties of individual regulatory sites are affected by linker-dependent interactions in CBD12 (AD splice variant). The three sites of CBD12 and CBD1 + CBD2 have comparable Kd values but differ dramatically in their Ca2+ dissociation kinetics. CBD12 exhibits multiphasic kinetics for the dissociation of three Ca2+ ions (kr = 280 s?1, kf = 7 s?1, and ks = 0.4 s?1), whereas the dissociation of two Ca2+ ions from CBD1 (kf = 16 s?1) and one Ca2+ ion from CBD2 (kr = 125 s?1) is monophasic. Insertion of seven alanines into the linker (CBD12–7Ala) abolishes slow dissociation of Ca2+, whereas the kinetic and equilibrium properties of three Ca2+ sites of CBD12–7Ala and CBD1 + CBD2 are similar. Therefore, the linker-dependent interactions in CBD12 decelerate the Ca2+ on/off kinetics at a specific CBD1 site by 50–80-fold, thereby representing Ca2+ “occlusion” at CBD12. Notably, the kinetic and equilibrium properties of the remaining two sites of CBD12 are “linker-independent,” so their intrinsic properties are preserved in CBD12. In conclusion, the dynamic properties of three sites are specifically modified, conserved, diversified, and integrated by the linker in CBD12, thereby generating a wide range dynamic sensor.
机译:在NCX蛋白中,CBD1和CBD2结构域通过形成调节串联(CBD12)的短接头(3或4个氨基酸)连接。只有三种CBD12 CA2 + - 困境网站只有三个有助于NCX调节。其中两个位于CBD1(KD =〜0.2μm)上,一个是CBD2(KD =〜5μm)。在这里,我们分析各个调节部位的内在性质是如何受CBD12中的接头依赖性相互作用的影响(广告剪接变体)的影响。 CBD12和CBD1 + CBD2的三个位点具有相当的KD值,但在其CA2 +解离动力学中急剧差异。 CBD12表现出用于解离三个Ca2 +离子的多相动力学(Kr =280s≤1,kf =7s≤1,ks = 0.4s≤1),而来自CBD1的两个Ca2 +离子的解离(Kf = 16s? 1)和来自CBD2的一个Ca2 +离子(Kr = 125秒,1)是单相的。将七个丙氨酸插入接头(CBD12-7ALA)废除CA2 +的缓慢解离,而CBD12-7ALA和CBD1 + CBD2的三种CA2 +位点的动力学和平衡性质相似。因此,CBD12中的接头依赖性相互作用将特定CBD1位点减速50-80倍,从而在CBD12表示Ca2 +“闭塞”。值得注意的是,CBD12的剩余两个位点的动力学和平衡性质是“接头无关”,因此它们的本质性质被保存在CBD12中。总之,通过CBD12中的连接器具体修改,保守,多样化和集成三个位点的动态特性,从而产生宽范围的动态传感器。

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