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De novo determination of internuclear vector orientations from residual dipolar couplings measured in three independent alignment media

机译:从三个独立的比对介质中测量的残留偶极耦合从头确定核间矢量的方向

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摘要

The straightforward interpretation of solution state residual dipolar couplings (RDCs) in terms of internuclear vector orientations generally requires prior knowledge of the alignment tensor, which in turn is normally estimated using a structural model. We have developed a protocol which allows the requirement for prior structural knowledge to be dispensed with as long as RDC measurements can be made in three independent alignment media. This approach, called Rigid Structure from Dipolar Couplings (RSDC), allows vector orientations and alignment tensors to be determined de novo from just three independent sets of RDCs. It is shown that complications arising from the existence of multiple solutions can be overcome by careful consideration of alignment tensor magnitudes in addition to the agreement between measured and calculated RDCs. Extensive simulations as well applications to the proteins ubiquitin and Staphylococcal protein GB1 demonstrate that this method can provide robust determinations of alignment tensors and amide N–H bond orientations often with better than 10° accuracy, even in the presence of modest levels of internal dynamics.
机译:根据核间矢量方向对溶液状态残留偶极耦合(RDC)进行简单的解释通常需要先了解对齐张量,然后通常使用结构模型对其进行估算。我们已经开发出一种协议,只要可以在三种独立的对准介质中进行RDC测量,就可以免除对现有结构知识的要求。这种称为偶极耦合的刚性结构(RSDC)的方法允许仅从三个独立的RDC集重新确定矢量方向和对齐张量。结果表明,除了测量和计算的RDC之间的一致性以外,还可以通过仔细考虑对齐张量大小来克服由于存在多个解决方案而引起的复杂性。广泛的模拟以及对泛素蛋白和葡萄球菌蛋白GB1的应用表明,即使在内部动力学水平不高的情况下,该方法也可以提供比10°精度更高的对准张量和酰胺N–H键取向的可靠测定。

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