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首页> 外文期刊>The Journal of biological chemistry >Determination of the Dissociation Constants for Ca2+ and Calmodulin from the Plasma Membrane Ca2+ Pump by a Lipid Probe That Senses Membrane Domain Changes*
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Determination of the Dissociation Constants for Ca2+ and Calmodulin from the Plasma Membrane Ca2+ Pump by a Lipid Probe That Senses Membrane Domain Changes*

机译:通过检测膜结构域变化的脂质探针确定血浆膜Ca2 +泵中Ca2 +和钙调蛋白的解离常数*

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The purpose of this work was to obtain information about conformational changes of the plasma membrane Ca2+-pump (PMCA) in the membrane region upon interaction with Ca2+, calmodulin (CaM) and acidic phospholipids. To this end, we have quantified labeling of PMCA with the photoactivatable phosphatidylcholine analog [125I]TID-PC/16, measuring the shift of conformation E2 to the auto-inhibited conformation E1I and to the activated E1A state, titrating the effect of Ca2+ under different conditions. Using a similar approach, we also determined the CaM-PMCA dissociation constant. The results indicate that the PMCA possesses a high affinity site for Ca2+ regardless of the presence or absence of activators. Modulation of pump activity is exerted through the C-terminal domain, which induces an apparent auto-inhibited conformation for Ca2+ transport but does not modify the affinity for Ca2+ at the transmembrane domain. The C-terminal domain is affected by CaM and CaM-like treatments driving the auto-inhibited conformation E1I to the activated E1A conformation and thus modulating the transport of Ca2+. This is reflected in the different apparent constants for Ca2+ in the absence of CaM (calculated by Ca2+-ATPase activity) that sharply contrast with the lack of variation of the affinity for the Ca2+ site at equilibrium. This is the first time that equilibrium constants for the dissociation of Ca2+ and CaM ligands from PMCA complexes are measured through the change of transmembrane conformations of the pump. The data further suggest that the transmembrane domain of the PMCA undergoes major rearrangements resulting in altered lipid accessibility upon Ca2+ binding and activation.
机译:这项工作的目的是获得与Ca2 +,钙调蛋白(CaM)和酸性磷脂相互作用后质膜Ca2 +-泵(PMCA)在膜区域的构象变化的信息。为此,我们用可光活化的磷脂酰胆碱类似物[125I] TID-PC / 16对PMCA进行了定量标记,测量了构象E2向自动抑制的构象E1I和激活的E1A状态的转移,在以下条件下滴定了Ca2 +的作用不同的条件。使用类似的方法,我们还确定了CaM-PMCA解离常数。结果表明,无论有无活化剂,PMCA均具有高的Ca2 +亲和力位点。泵送活性的调节是通过C末端结构域进行的,该结构诱导了Ca2 +转运的明显自抑制构象,但并未改变跨膜结构域对Ca2 +的亲和力。 C末端结构域受CaM和类似CaM的处理的驱动,这些处理将自动抑制的构象E1I转换为激活的E1A构象,从而调节Ca2 +的转运。这反映在不存在CaM(由Ca2 + -ATPase活性计算)的情况下,Ca2 +的不同表观常数,这与平衡时对Ca2 +位点的亲和力缺乏变化形成鲜明的对比。这是第一次通过改变泵的跨膜构象来测量Ca2 +和CaM配体从PMCA配合物中解离的平衡常数。数据进一步表明,PMCA的跨膜结构域发生重大的重排,导致Ca2 +结合和激活后脂质可及性发生改变。

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