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首页> 外文期刊>The Journal of biological chemistry >Binding of Phytopolyphenol Piceatannol Disrupts β/γ Subunit Interactions and Rate-limiting Step of Steady-state Rotational Catalysis in Escherichia coli F1-ATPase
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Binding of Phytopolyphenol Piceatannol Disrupts β/γ Subunit Interactions and Rate-limiting Step of Steady-state Rotational Catalysis in Escherichia coli F1-ATPase

机译:植物植物吡啶酚的结合破坏了大肠杆菌F1-ATP酶中稳态旋转催化的β/γ亚基相互作用和速率限制步骤

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In observations of single molecule behavior under Vmax conditions with minimal load, the F1 sector of the ATP synthase (F-ATPase) rotates through continuous cycles of catalytic dwells (~0.2 ms) and 120° rotation steps (~0.6 ms). We previously established that the rate-limiting transition step occurs during the catalytic dwell at the initiation of the 120° rotation. Here, we use the phytopolyphenol, piceatannol, which binds to a pocket formed by contributions from α and β stator subunits and the carboxyl-terminal region of the rotor γ subunit. Piceatannol did not interfere with the movement through the 120° rotation step, but caused increased duration of the catalytic dwell. The duration time of the intrinsic inhibited state of F1 also became significantly longer with piceatannol. All of the beads rotated at a lower rate in the presence of saturating piceatannol, indicating that the inhibitor stays bound throughout the rotational catalytic cycle. The Arrhenius plot of the temperature dependence of the reciprocal of the duration of the catalytic dwell (catalytic rate) indicated significantly increased activation energy of the rate-limiting step to trigger the 120° rotation. The activation energy was further increased by combination of piceatannol and substitution of γ subunit Met23 with Lys, indicating that the inhibitor and the β/γ interface mutation affect the same transition step, even though they perturb physically separated rotor-stator interactions.
机译:在具有最小载荷的VMAX条件下的单分子行为的观察中,ATP合酶(F-ATP酶)的F1扇区通过催化宿用(〜0.2ms)和120°旋转步骤(〜0.6ms)的连续循环旋转。我们以前确定在催化性停留期间发生率限制过渡步骤在120°旋转时。在这里,我们使用植物聚蛋酚Piceatannol,其与由α和β定子亚基的贡献和转子γ亚基的羧基端区的贡献结合的袋。 Piceatannol并没有干扰通过120°旋转步骤的运动,但导致催化居所的持续时间增加。 F1的内在抑制状态的持续时间也与Piceatannol显着更长。所有珠子以较低的速率在饱和纤维碱的存在下旋转,表明抑制剂在整个旋转催化循环中保持束缚。催化停留持续时间(催化速率)往复运动的逆转录的Arrhenius图表明,速率限制步骤的激活能量显着增加,以触发120°旋转。通过Piceatannol和γ亚基Met23与Lys取代的组合进一步增加了活化能量,表明抑制剂和β/γ界面突变影响相同的转变步骤,即使它们物理分离的转子 - 定子相互作用也是如此。

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