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The Application of NMR Techniques to Bacterial Adhesins

机译:核磁共振技术在细菌黏附素中的应用

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摘要

Extracellular adhesins frequently compose large, highly-ordered structural assemblies that project away from the bacterial surface. These assemblies, known as pili or fimbriae, are rod-like polymeric structures that in some cases can extend up to several micrometers from the cell surface. Because these adhesin structures are critical to bacterial colonization of host cell surfaces, there is an incentive to understand their structure, assembly and mechanism of host cell attachment. Various methods in Nuclear Magnetic Resonance (NMR) spec-troscopy have been used to address these topics, yielding' structural information at the atomic level. Also, new methods in solid-state NMR spectroscopy have thus far been under-utilized in the study of large adhesin structures and offer a powerful approach to overcoming problems with crystallization to better understand the structures of these complexes. The following is a brief overview of the contributions of NMR to the study of bacterial adhesins with an emphasis on the future potential of solid-state NMR.
机译:细胞外粘附素通常组成从细菌表面突出的大型,高度有序的结构组件。这些组件被称为菌毛或菌毛,是棒状的聚合物结构,在某些情况下,可以从细胞表面延伸到几微米。由于这些粘附素结构对于宿主细胞表面的细菌定殖至关重要,因此有动力去了解它们的结构,组装和宿主细胞附着的机理。核磁共振(NMR)光谱中的各种方法已用于解决这些问题,从而在原子水平上产生结构信息。而且,迄今为止,固态NMR光谱学中的新方法在大粘附素结构的研究中并未得到充分利用,并为克服结晶问题提供了一种有力的方法,以更好地了解这些配合物的结构。以下是NMR对细菌粘附素研究的简要概述,重点是固态NMR的未来潜力。

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