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首页> 外文期刊>The Biochemical Journal >The high-affinity calcium-calmodulin-binding site does not play a role in the modulation of type 1 inositol 1,4,5-trisphosphate receptor function by calcium and calmodulin
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The high-affinity calcium-calmodulin-binding site does not play a role in the modulation of type 1 inositol 1,4,5-trisphosphate receptor function by calcium and calmodulin

机译:高亲和力钙钙调蛋白结合位点在钙和钙调蛋白对1型肌醇1,4,5-三磷酸受体功能的调节中不起作用

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Modulation of the inositol 1,4,5-trisphosphate (InsP(3)) receptors (InsP(3)R) by cytosolic calcium (Ca2+) plays an essential role in Call signalling, but structural determinants and mechanisms responsible for the InsP(3)R regulation by Call are poorly understood. In the present study, we expressed rat InsP(3)R type 1 (InsP(3)R1) in Spodoptera frugiperda cells using a baculovirus-expression system and reconstituted the recombinant InsP(3)R1 into planar lipid bilayers for functional analysis. We observed only minor effects of 0.5 mM of calmodulin (CaM) antagonist W-7 on the Ca2+ dependence of InsP(3)R1. Based on a previous analysis of mouse InsP(3)R1 [Yamada, Miyawaki, Saito, Nakajima, Yamamoto-Hino, Ryo, Furuichi and Mikoshiba (1995) Biochem J. 308, 83-88], we generated the Trp(1577) --> Ala (W1577A) mutant of rat InsP(3)R1 which lacks the high-affinity Ca2+-CaM-binding site. We found that the W1577A mutant displayed a bell-shaped Call dependence similar to the wild-type InsP,RI in planar lipid bilayers. Activation of B cell receptors resulted in identical Call signals in intact DT40 cells lacking the endogenous InsP(3)R and transfected with the wild-type InsP(3)R1 or the W1577A mutant cDNA subcloned into a mammalian expression vector. In the planar lipid bilayer experiments, we showed that both wild-type InsP,RI and W1577A mutant were equally sensitive to inhibition by exogenous CaM. From these results, we concluded that the interaction of CaM with the high-affinity Ca2+-CaM-binding site in the coupling domain of the InsP,RI does not play a direct role in biphasic modulation of InsP(3)R1 by cytosolic Ca2+ or in InsP(3)R1 inhibition by CaM.
机译:肌醇1,4,5-三磷酸(InsP(3))受体(InsP(3)R)的胞浆钙(Ca2 +)调节在Call信号传导中起重要作用,但结构决定因素和机制负责InsP(3对Call的R法规知之甚少。在本研究中,我们使用杆状病毒表达系统在草地贪夜蛾细胞中表达了大鼠InsP(3)R 1型(InsP(3)R1),并将重组InsP(3)R1重组为平面脂质双层以进行功能分析。我们只观察到0.5 mM钙调蛋白(CaM)拮抗剂W-7对InsP(3)R1的Ca2 +依赖性的微小影响。基于对小鼠InsP(3)R1的先前分析[Yamada,Miyawaki,Saito,Nakajima,Yamamoto-Hino,Ryo,Furuichi和Mikoshiba(1995)Biochem J.308,83-88],我们生成了Trp(1577) ->大鼠InsP(3)R1的Ala(W1577A)突变体,缺少高亲和力的Ca2 + -CaM结合位点。我们发现,W1577A突变体在平面脂质双层中显示出类似于野生型InsP,RI的钟形Call依赖性。 B细胞受体的激活在缺少内源InsP(3)R的完整DT40细胞中产生了相同的Call信号,并转染了野生型InsP(3)R1或亚克隆到哺乳动物表达载体中的W1577A突变cDNA。在平面脂质双层实验中,我们表明野生型InsP,RI和W1577A突变体对外源CaM的抑制作用均同样敏感。从这些结果,我们得出结论,CaM与InsP,RI偶联域中的高亲和力Ca2 + -CaM结合位点的相互作用在胞质Ca2 +或InsP(3)R1的双相调制中没有直接作用。 CaM对InsP(3)R1的抑制作用。

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