首页> 外文期刊>Acta crystallographica. Section D, Structural biology >The low-cost Shifter microscope stage transforms the speed and robustness of protein crystal harvesting
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The low-cost Shifter microscope stage transforms the speed and robustness of protein crystal harvesting

机译:低成本的移动装置显微镜阶段转换蛋白质晶体的速度和鲁棒性收获

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Despite the tremendous success of X-ray cryo-crystallography in recent decades, the transfer of crystals from the drops in which they are grown to diffractometer sample mounts remains a manual process in almost all laboratories. Here, the Shifter, a motorized, interactive microscope stage that transforms the entire crystal-mounting workflow from a rate-limiting manual activity to a controllable, high-throughput semi-automated process, is described. By combining the visual acuity and fine motor skills of humans with targeted hardware and software automation, it was possible to transform the speed and robustness of crystal mounting. Control software, triggered by the operator, manoeuvres crystallization plates beneath a clear protective cover, allowing the complete removal of film seals and thereby eliminating the tedium of repetitive seal cutting. The software, either upon request or working from an imported list, controls motors to position crystal drops under a hole in the cover for human mounting at a microscope. The software automatically captures experimental annotations for uploading to the user's data repository, removing the need for manual documentation. The Shifter facilitates mounting rates of 100-240 crystals per hour in a more controlled process than manual mounting, which greatly extends the lifetime of the drops and thus allows a dramatic increase in the number of crystals retrievable from any given drop without loss of X-ray diffraction quality. In 2015, the first in a series of three Shifter devices was deployed as part of the XChem fragment-screening facility at Diamond Light Source, where they have since facilitated the mounting of over 120 000 crystals. The Shifter was engineered to have a simple design, providing a device that could be readily commercialized and widely adopted owing to its low cost. The versatile hardware design allows use beyond fragment screening and protein crystallography.
机译:尽管x射线的巨大的成功cryo-crystallography近几十年来,转移他们的水晶滴生长是衍射仪样本坐骑吗一个手动过程在几乎所有的实验室。在这里,移动装置,电动,互动整个显微镜阶段转换从病原crystal-mounting工作流手工活动可控,高通量自动化过程,描述。精细运动技能目标的人类硬件和软件自动化,它是可能的改变晶体的速度和鲁棒性越来越多。运营商,演习结晶盘子下一个明确的防护罩,允许完整的膜密封,从而去除消除重复密封的单调乏味切割。从列表导入工作,控制电机在封面位置水晶滴下洞人类越来越多的显微镜。自动捕捉实验注释用户上传的数据存储库,删除需要手册文档。移动装置便于安装的100 - 240每小时晶体控制的过程比手动安装,大大扩展了的生命周期,从而允许一个戏剧性的下降增加数量的晶体可收回从任何给定的下降没有x射线的损失衍射质量。一系列的三个移动装置设备部署的一部分XChem fragment-screening设施钻石光源,在那里他们已经促进了安装超过120 000人晶体。简单的设计,提供了一种可能的装置由于容易商业化和广泛采用它的低成本。允许使用超出片段筛选和蛋白质晶体学。

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