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Orienting rigid and flexible biological assemblies in ferrofluids for small-angle neutron scattering studies

机译:在铁磁流体中定向刚性和柔性生物组件以进行小角度中子散射研究

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摘要

Small-angle scattering from macromolecules in solution is widely used to study their structures, but the information content is limited because the molecules are generally randomly oriented and hence the data are spherically averaged. The use of oriented rodlike structures for scattering, as in fiber diffraction, greatly increases the amount of structural detail that can be obtained. A new technique using a ferromagnetic fluid has been developed to align elongated structures independent of their intrinsic magnetic properties. This technique is ideal for small-angle neutron scattering because the scattering from the ferrofluid particles can be reduced significantly by matching the neutron scattering length density of the particles to a D2O solvent (“contrast matching”). The net result is scattering primarily from the ordered biological assembly in a solution environment that can be adjusted to physiological pH and ionic strength. Scattering results from ordered tobacco mosaic virus, tobacco rattle virus, and chromain fibers are presented.
机译:溶液中大分子的小角散射被广泛用于研究其结构,但信息含量受到限制,因为分子通常是随机取向的,因此数据需要进行球面平均。如在纤维衍射中那样,定向棒状结构用于散射的使用大大增加了可获得的结构细节的数量。已经开发出一种使用铁磁流体的新技术,以使细长结构独立于其固有的磁性而对准。该技术非常适合小角度中子散射,因为通过将颗粒的中子散射长度密度与D2O溶剂相匹配(“对比度匹配”),可以大大减少铁磁流体颗粒的散射。最终结果主要是在溶液环境中从有序的生物组装体中散射出来,该环境可以调节至生理pH和离子强度。给出了有序烟草花叶病毒,烟草嘎嘎声病毒和色氨酸纤维的散射结果。

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