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首页> 外文期刊>Biochemistry >Comparison of backbone dynamics of oxidized and reduced putidaredoxin by 15N NMR relaxation measurements.
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Comparison of backbone dynamics of oxidized and reduced putidaredoxin by 15N NMR relaxation measurements.

机译:通过15N NMR弛豫测量比较氧化的和还原的氧化还原毒素的主链动力学。

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The backbone dynamics of uniformly 15N-labeled reduced and oxidized putidaredoxin (Pdx) have been studied by 2D 15N NMR relaxation measurements. 15N T1 and T2 values and 1H-15N NOEs have been measured for the diamagnetic region of the protein. These data were analyzed by using a model-free dynamics formalism to determine the generalized order parameters (S2), the effective correlation time for internal motions (tau e), and the 15N exchange broadening contributions (Rex) for each residue, as well as the overall correlation time (tau(m)). Order parameters for the reduced Pdx are generally higher than for the oxidized Pdx, and there is increased mobility on the microsecond to millisecond time scale for the oxidized Pdx, in comparison with the reduced Pdx. These results clearly indicate that the oxidized protein exhibits higher mobility than the reduced one, which is in agreement with the recently published redox-dependent dynamics studied by amide proton exchange. In addition, we observed very high T1/T2 ratios for residues 33 and 34, giving rise to a large Rex contribution. Residue 34 is believed to be involved in the binding of Pdx to cytochrome P450cam (CYP101). The differences in the backbone dynamics are discussed in relation to the oxidation states of Pdx, and their impact on electron transfer. The entropy change occurring on oxidation of reduced Pdx has been calculated from the order parameters of the two forms.
机译:已通过2D 15N NMR弛豫测量研究了均一的15N标记的还原和氧化的恶臭氧化还原蛋白(Pdx)的骨架动力学。已对该蛋白质的反磁性区域测得15N T1和T2值以及1H-15N NOE。通过使用无模型动力学形式主义来分析这些数据,以确定广义阶数参数(S2),内部运动的有效相关时间(tau e)和每个残基的15N交换增宽贡献(Rex),以及总体相关时间(tau(m))。还原后的Pdx的阶次参数通常高于氧化后的Pdx,与还原后的Pdx相比,氧化后的Pdx的迁移率在微秒至毫秒的时间范围内增加。这些结果清楚地表明,氧化的蛋白质比还原的蛋白质具有更高的迁移率,这与最近公布的酰胺质子交换研究的氧化还原依赖性动力学一致。另外,我们观察到残基33和34的T1 / T2比率非常高,从而引起了很大的Rex贡献。据信残基34与Pdx与细胞色素P450cam(CYP101)的结合有关。讨论了Pdx氧化态及其对电子转移的影响方面的主链动力学差异。根据两种形式的顺序参数计算出了还原的Pdx氧化时发生的熵变。

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