首页> 外文期刊>The Journal of Physiology >Phosphatase activity of the voltage-sensing phosphatase, VSP, shows graded dependence on the extent of activation of the voltage sensor
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Phosphatase activity of the voltage-sensing phosphatase, VSP, shows graded dependence on the extent of activation of the voltage sensor

机译:电压感应磷酸酶VSP的磷酸酶活性显示出对电压传感器激活程度的分级依赖性

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Key points: The voltage-sensing phosphatase (VSP) consists of the voltage sensor and the phosphatase domain. The voltage sensor movement is coupled to the phosphatase activity. To uncover the coupling mechanisms between the two domains, we made a voltage sensor mutant of VSP. Our analyses showed that this voltage sensor moves in two steps. Measurements revealed that the phosphatase activity of this mutant is associated with both the first and second step of the voltage sensor movements. Results suggest that the phosphatase activity of VSP shows graded dependence on the extent of activation of the voltage sensor. The voltage-sensing phosphatase (VSP) consists of a voltage sensor and a cytoplasmic phosphatase region, and the movement of the voltage sensor is coupled to the phosphatase activity. However, its coupling mechanisms still remain unclear. One possible scenario is that the phosphatase is activated only when the voltage sensor is in a fully activated state. Alternatively, the enzymatic activity of single VSP proteins could be graded in distinct activated states of the voltage sensor, and partial activation of the voltage sensor could lead to partial activation of the phosphatase. To distinguish between these two possibilities, we studied a voltage sensor mutant of zebrafish VSP, where the voltage sensor moves in two steps as evidenced by analyses of charge movements of the voltage sensor and voltage clamp fluorometry. Measurements of the phosphatase activity toward phosphatidylinositol 4,5-bisphosphate revealed that both steps of voltage sensor activation are coupled to the tuning of phosphatase activities, consistent with the idea that the phosphatase activity is graded by the magnitude of the movement of the voltage sensor.
机译:要点:电压感应磷酸酶(VSP)由电压传感器和磷酸酶结构域组成。电压传感器的运动与磷酸酶活性有关。为了揭示两个域之间的耦合机制,我们制作了VSP的电压传感器突变体。我们的分析表明,该电压传感器分两步移动。测量表明该突变体的磷酸酶活性与电压传感器运动的第一步和第二步都有关。结果表明,VSP的磷酸酶活性显示出对电压传感器激活程度的分级依赖性。电压感应磷酸酶(VSP)由电压传感器和胞质磷酸酶区域组成,电压传感器的运动与磷酸酶活性相关。但是,其耦合机制仍不清楚。一种可能的情况是仅在电压传感器处于完全激活状态时才激活磷酸酶。或者,可以在电压传感器的不同激活状态下对单个VSP蛋白的酶促活性进行分级,并且电压传感器的部分激活可以导致磷酸酶的部分激活。为了区分这两种可能性,我们研究了斑马鱼VSP的电压传感器突变体,其中电压传感器分两步移动,这通过分析电压传感器的电荷运动和电压钳荧光分析法得到证明。对磷酸磷脂酰肌醇4,5-双磷酸酯的磷酸酶活性的测量表明,电压传感器激活的两个步骤都与磷酸酶活性的调节有关,这与磷酸酶活性由电压传感器的运动幅度分级的想法一致。

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