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The N MR 2 Method to Determine Rapidly the Structure of the Binding Pocket of a Protein–Ligand Complex with High Accuracy

机译:N MR 2方法快速测定蛋白质-配体复合物的结合口袋结构

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Structural characterization of complexes is crucial for a better understanding of biological processes and structure-based drug design. However, many protein–ligand structures are not solvable by X-ray crystallography, for example those with low affinity binders or dynamic binding sites. Such complexes are usually targeted by solution-state NMR spectroscopy. Unfortunately, structure calculation by NMR is very time consuming since all atoms in the complex need to be assigned to their respective chemical shifts. To circumvent this problem, we recently developed the Nuclear Magnetic Resonance Molecular Replacement ( N MR 2 ) method. N MR 2 very quickly provides the complex structure of a binding pocket as measured by solution-state NMR. N MR 2 circumvents the assignment of the protein by using previously determined structures and therefore speeds up the whole process from a couple of months to a couple of days. Here, we recall the main aspects of the method, show how to apply it, discuss its advantages over other methods and outline its limitations and future directions.
机译:复合物的结构表征对于更好地了解生物学过程和基于结构的药物设计至关重要。但是,许多蛋白质-配体结构无法通过X射线晶体学解决,例如具有低亲和力结合剂或动态结合位点的那些。此类络合物通常通过溶液态NMR光谱作为目标。不幸的是,由于需要将配合物中的所有原子分配给它们各自的化学位移,因此通过NMR进行结构计算非常耗时。为了解决这个问题,我们最近开发了核磁共振分子置换(N MR 2)方法。 N MR 2非常迅速地提供了通过溶液态NMR测得的结合口袋的复杂结构。 N MR 2通过使用先前确定的结构来规避蛋白质的分配,因此将整个过程从几个月缩短到了几天。在这里,我们回顾该方法的主要方面,展示如何应用它,讨论其相对于其他方法的优势,并概述其局限性和未来发展方向。

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