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Pf1噬菌体水悬浮液中分子排列的表征

Characterization of molecular alignment in aqueous suspensions of Pf1 bacteriophage.

作者信息

Zweckstetter M, Bax A

机构信息

Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892-0520, USA.

出版信息

J Biomol NMR. 2001 Aug;20(4):365-77. doi: 10.1023/a:1011263920003.

Abstract

The phase diagram of Pf1 solutions has been studied indirectly by observation of 2H quadrupole splittings of the solvent signal and measurement of dipolar couplings in solute macromolecules. At low volume fractions of Pf1 and at high ionic strength, alignment of both the phage and the solute depends strongly on the strength of the magnetic field. Both the theoretical and experimentally determined phase diagram of Pf1 show that at low concentrations and high ionic strengths the solution becomes isotropic. However, just below the nematic phase boundary the behavior of the system is paranematic, with cooperative alignment which depends on the strength of the applied magnetic field. Above 16 mg/ml Pf1 is fully nematic up to 600 mM NaCl. Alignment of proteins with a significant electric dipole moment, which tends to be strong in Pf1, can be reduced by either high ionic strength or low phage concentration. Because ionic strength modulates both the orientation and magnitude of the alignment tensor in Pf1 medium, measurement at two ionic strengths can yield linearly independent alignment tensors.

摘要

通过观察溶剂信号的2H四极分裂以及测量溶质大分子中的偶极耦合,间接研究了Pf1溶液的相图。在低Pf1体积分数和高离子强度下,噬菌体和溶质的排列都强烈依赖于磁场强度。Pf1的理论相图和实验测定相图均表明,在低浓度和高离子强度下,溶液变为各向同性。然而,恰好在向列相边界之下,系统的行为是准向列的,具有依赖于外加磁场强度的协同排列。在高达600 mM NaCl的浓度下,高于16 mg/ml的Pf1完全呈向列相。具有显著电偶极矩的蛋白质的排列(在Pf1中往往很强)可通过高离子强度或低噬菌体浓度来降低。由于离子强度调节Pf1介质中排列张量的取向和大小,在两种离子强度下进行测量可得到线性无关的排列张量。

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