首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Protein crystal structure obtained at 2.9 Å resolution from injecting bacterial cells into an X-ray free-electron laser beam
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Protein crystal structure obtained at 2.9 Å resolution from injecting bacterial cells into an X-ray free-electron laser beam

机译:通过将细菌细胞注入X射线自由电子激光束以2.9Å分辨率获得的蛋白质晶体结构

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摘要

It has long been known that toxins produced by Bacillus thuringiensis (Bt) are stored in the bacterial cells in crystalline form. Here we describe the structure determination of the Cry3A toxin found naturally crystallized within Bt cells. When whole Bt cells were streamed into an X-ray free-electron laser beam we found that scattering from other cell components did not obscure diffraction from the crystals. The resolution limits of the best diffraction images collected from cells were the same as from isolated crystals. The integrity of the cells at the moment of diffraction is unclear; however, given the short time (∼5 µs) between exiting the injector to intersecting with the X-ray beam, our result is a 2.9-Å-resolution structure of a crystalline protein as it exists in a living cell. The study suggests that authentic in vivo diffraction studies can produce atomic-level structural information.
机译:众所周知,苏云金芽孢杆菌(Btillus thuringiensis)(Bt)产生的毒素以晶体形式储存在细菌细胞中。在这里,我们描述了在Bt细胞中自然结晶的Cry3A毒素的结构测定。当整个Bt细胞流入X射线自由电子激光束时,我们发现来自其他细胞成分的散射不会掩盖晶体的衍射。从细胞收集的最佳衍射图像的分辨率极限与从分离的晶体相同。衍射时细胞的完整性尚不清楚。然而,考虑到从注射器离开到与X射线束相交之间的时间很短(〜5 µs),我们的结果是存在于活细胞中的2.9-分辨率晶体蛋白的结构。该研究表明,真实的体内衍射研究可以产生原子级的结构信息。

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