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首页> 外文期刊>Cellular and molecular biology >Exploration of pressure-induced dissociation of pyruvate oxidase.
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Exploration of pressure-induced dissociation of pyruvate oxidase.

机译:探索压力诱导的丙酮酸氧化酶解离。

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The dissociation of pyruvate oxidase (PO) caused by pressure up to 220 MPa at various conditions was explored by measuring the intrinsic fluorescence spectra and polarization. At 5 degrees C and pH 7.6 the standard volume change (deltaV0) and free energy upon dissociation of the enzyme is -220 ml/mol and 29.83 kCal/mol, respectively. It was found that FAD was irreversibly removed during the pressure-dissociation of the enzyme. A much smaller standard volume change (-153 ml/mol) and lower free energy (24.92 kCal/mol) of apo-pyruvate oxidase (apo-PO) compared with the native enzyme indicated that FAD played very important role in stabilizing the enzyme and significantly influenced the standard volume change. The substrate pyruvic acid can significantly stabilize the enzyme against pressure in spite the standard volume for the enzyme in this case has a big increase relative to the native enzyme. The comparison of the intrinsic fluorescence of the native and the activated enzyme obtained by limited proteolysis indicated that the physical separation of alpha-peptide from the enzyme only occurred when the subunits were dissociated from each other under pressure.
机译:通过测量本征荧光光谱和极化,探索了在各种条件下由压力高达220 MPa引起的丙酮酸氧化酶(PO)的解离。在5摄氏度和pH 7.6下,酶解离后的标准体积变化(deltaV0)和自由能分别为-220 ml / mol和29.83 kCal / mol。发现在酶的压力解离过程中不可逆地除去了FAD。与天然酶相比,脱辅基丙酮酸氧化酶(apo-PO)的标准体积变化(-153 ml / mol)小得多,自由能较低(24.92 kCal / mol),表明FAD在稳定酶和稳定脂肪酸中起着非常重要的作用。大大影响了标准体积的变化。尽管在这种情况下酶的标准体积相对于天然酶有很大的增加,但是底物丙酮酸可以使酶抵抗压力显着稳定。通过有限的蛋白水解获得的天然和活化酶的固有荧光的比较表明,仅当亚基在压力下彼此解离时,α-肽才与酶发生物理分离。

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