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Crystallization screening test for the whole-cell project on Thermus thermophilus HB8

机译:嗜热栖热菌HB8全细胞项目的结晶筛选测试

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摘要

It was essential for the structural genomics of Thermus thermophilus HB8 to efficiently crystallize a number of proteins. To this end, three conventional robots, an HTS-80 (sitting-drop vapour diffusion), a Crystal Finder (hanging-drop vapour diffusion) and a TERA (modified microbatch) robot, were subjected to a crystallization condition screening test involving 18 proteins from T. thermophilus HB8. In addition, a TOPAZ (microfluidic free-interface diffusion) designed specifically for initial screening was also briefly examined. The number of diffraction-quality crystals and the time of appearance of crystals increased in the order HTS-80, Crystal Finder, TERA. With the HTS-80 and Crystal Finder, the time of appearance was short and the rate of salt crystallization was low. With the TERA, the number of diffraction-quality crystals was high, while the time of appearance was long and the rate of salt crystallization was relatively high. For the protein samples exhibiting low crystallization success rates, there were few crystallization conditions that were common to the robots used. In some cases, the success rate depended greatly on the robot used. The TOPAZ showed the shortest time of appearance and the highest success rate, although the crystals obtained were too small for diffraction studies. These results showed that the combined use of different robots significantly increases the chance of obtaining crystals, especially for proteins exhibiting low crystallization success rates. The structures of 360 of 944 purified proteins have been successfully determined through the combined use of an HTS-80 and a TERA.
机译:对于嗜热栖热菌HB8的结构基因组学而言,有效地结晶多种蛋白质至关重要。为此,对三个常规机器人HTS-80(坐滴蒸汽扩散),Crystal Finder(悬挂滴蒸汽扩散)和TERA(改良型微批处理)机器人进行了结晶条件筛选测试,涉及18种蛋白质来自嗜热嗜热菌HB8。此外,还简要检查了专为初始筛选而设计的TOPAZ(微流体自由界面扩散)。衍射质量晶体的数量和晶体的出现时间按HTS-80,Crystal Finder,TERA的顺序增加。使用HTS-80和Crystal Finder,出现时间短且盐的结晶速率低。使用TERA,衍射质量晶体的数量高,而出现时间长且盐的结晶速率相对高。对于显示出低结晶成功率的蛋白质样品,几乎没有使用的机器人常见的结晶条件。在某些情况下,成功率很大程度上取决于所使用的机器人。尽管获得的晶体太小,无法进行衍射研究,但TOPAZ的出现时间最短,成功率最高。这些结果表明,不同机器人的组合使用显着增加了获得晶体的机会,尤其是对于显示出低结晶成功率的蛋白质而言。通过结合使用HTS-80和TERA,成功确定了944种纯化蛋白中360种的结构。

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