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Difference in hydration structures between F-actin and myosin subfragment-1 detected by small-angle X-ray and neutron scattering

机译:小角X射线和中子散射检测F-肌动蛋白和肌球蛋白亚片段1之间的水合结构差异

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Hydration structures around F-actin and myosin subfragment-1 (S1), which play central roles as counterparts in muscle contraction, were investigated by small-angle X-ray scattering (SAXS) and small-angle neutron scattering (SANS). The radius of gyration of chymotryptic S1 was evaluated to be 41.3±1.1 ? for SAXS, 40.1±3.0 ? for SANS in H2O, and 37.8±0.8 ? for SANS in D2O, respectively. The values of the cross-sectional radius of gyration of F-actin were 25.4±0.03 ? for SAXS, 23.4±2.4 ? for SANS in H2O, and 22.6±0.6 ? for SANS in D2O, respectively. These differences arise from different contributions of the hydration shell to the scattering curves. Analysis by model calculations showed that the hydration shell of S1 has the average density 10-15% higher than bulk water, being the typical hydration shell. On the other hand, the hydration shell of F-actin has the average density more than 19% higher than bulk water, indicating that F-actin has a denser, unusual hydration structure. The results indicate a difference in the hydration structures around F-actin and S1. The unusual hydration structure around F-actin may have the structural property of so-called “hyper-mobile water” around F-actin.
机译:通过小角X射线散射(SAXS)和小角中子散射(SANS)研究了F-肌动蛋白和肌球蛋白亚片段1(S1)周围的水合结构,这些结构在肌肉收缩中起着重要作用。糜蛋白酶S1的回转半径估计为41.3±1.1?对于SAXS,40.1±3.0? H 2 O中SANS的37.8±0.8?在D 2 O中分别用于SANS。 F-肌动蛋白的回转横截面半径的值为25.4±0.03Ω。 SAXS的23.4±2.4? H 2 O中的SANS和22.6±0.6?分别位于D 2 O中的SANS。这些差异源自水合壳对散射曲线的不同贡献。通过模型计算分析表明,S1的水化壳比典型的水化壳高出散装水10-15%。另一方面,F-肌动蛋白的水合壳的平均密度比散装水高19%以上,这表明F-肌动蛋白具有更致密,不寻常的水合结构。结果表明F-肌动蛋白和S1周围的水合结构存在差异。 F-肌动蛋白周围异常的水合作用结构可能具有F-肌动蛋白周围所谓的“超流动水”的结构特性。

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