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Water in barnacle muscle. III. NMR studies of fresh fibers and membrane-damaged fibers equilibrated with selected solutes.

机译:藤壶肌肉中有水。三用选定的溶质平衡的新鲜纤维和膜损坏纤维的NMR研究。

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摘要

Water in barnacle muscle has been studied using NMR techniques. Fresh fibers are compared with membrane-damaged fibers treated with solutes that greatly alter fixed charge and total water content. Both water (97%) and solute (3%) protons are visible in continuous wave spectra of oriented fresh fibers. No local field inhomogeneities were detected, nor are cell solutes significantly bound. In pulse experiments, all cell water is visible and exhibits a single exponential decay. In fresh fibers, T2 approximately or equal to 40 ms; faster decaying signals are assigned to immobile and mobile protons on macromolecules. T1 and T1p are frequency dependent. Using equations derived for a two-compartment model with fast exchange, we calculate the following: tau b, the correlation time for anisotropic rotational motion of bound water; Sb, its order parameter; tau ex, the correlation time for exchange between bound and free fractions; f, the fraction of water bound; and Hr, the grams of water bound per gram of macromolecule. Whereas f varies inversely with total water content, the other parameters are virtually constant, with values: tau b approximately or equal to 1.3 X 10(-8) S; tau ex approximately or equal to 8 X 10(-6) s; Sb approximately or equal to 0.06; and Hr approximately or equal to 0.1g H2O/g macromolecule. Thus, the NMR relaxation detectable properties of water bound to macromolecules are unaffected by solutes that greatly alter the macromolecular surface charge.
机译:已使用NMR技术研究了藤壶肌肉中的水。将新鲜纤维与用溶质处理过的会损坏固定电荷和总水含量的膜破坏性纤维进行比较。在取向的新鲜纤维的连续波谱中,水(97%)和溶质(3%)质子都可见。没有检测到局部电场不均匀性,也没有明显结合细胞溶质。在脉冲实验中,所有细胞水都是可见的,并表现出单个指数衰减。在新鲜纤维中,T2大约等于40毫秒;更快的衰减信号被分配给大分子上的固定和移动质子。 T1和T1p取决于频率。使用快速交换的两室模型的方程,我们计算出以下公式:tau b,束缚水的各向异性旋转运动的相关时间; sb,其顺序参数; tau ex,结合分数和自由分数之间交换的相关时间; f,水结合的分数; Hr,每克大分子结合的水克数。 f与总含水量成反比,而其他参数实际上是恒定的,其值:tau b约等于或等于1.3 X 10(-8)S; tau ex约等于或等于8 X 10(-6)s; Sb约等于或等于0.06; Hr约等于或等于0.1g H 2 O / g大分子。因此,与大分子结合的水的NMR弛豫可检测特性不受溶质的影响,溶质会大大改变大分子表面电荷。

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