首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >Robotic nanolitre protein crystallisation at the MRC Laboratory of Molecular Biology.
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Robotic nanolitre protein crystallisation at the MRC Laboratory of Molecular Biology.

机译:MRC分子生物学实验室的机器人纳升蛋白质结晶。

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We have set up high-throughput robotic systems to screen and optimise crystallisation conditions of biological macromolecules with the aim to make difficult structural biology projects easier. The initial screening involves two robots. A Tecan Genesis liquid handler is used to transfer commercially available crystallisation reagents from 15ml test tubes into the reservoirs of 96-well crystallisation plates. This step is fully automated and includes a carousel for intermediate plate storage, a Beckman plate sealer and a robotic arm, which transfers plates in between steps. For adding the sample, we use a second robot, a 17-tip Cartesian Technologies PixSys 4200 SynQuad liquid handler, which uses a syringe/solenoid valve combination to dispense small quantities of liquid (typically 100nl) without touching the surface of the plate. Sixteen of the tips are used to transfer the reservoir solution to the crystallisation wells, while the 17th tip is used to dispense the protein. The screening of our standard set of 1440 conditions takes about 3h and requires 300mul of protein solution. Once crystallisation conditions have been found, they are optimised using a second Tecan Genesis liquid handler, which is programmed to pipette gradients from four different corner solutions into a wide range of crystallisation plate formats. For 96-well plates, the Cartesian robot can be used to add the sample. The methods described are now used almost exclusively for obtaining diffraction quality crystals in our laboratory with a throughput of several thousand plates per year. Our set-up has been copied in many institutions worldwide.
机译:我们已经建立了高通量机器人系统,以筛选和优化生物大分子的结晶条件,目的是使困难的结构生物学项目变得容易。最初的筛选涉及两个机器人。使用Tecan Genesis液体处理器将市售的结晶试剂从15ml试管中转移到96孔结晶板的容器中。此步骤是完全自动化的,包括用于中间板存储的转盘,Beckman板封口机和机械臂,该机械臂在步骤之间转移板。为了添加样品,我们使用了第二个机械手,即17针尖的Cartesian Technologies PixSys 4200 SynQuad液体处理机,该系统使用注射器/电磁阀组合来分配少量液体(通常为100nl)而不会接触板的表面。其中的十六个尖端用于将储层溶液转移至结晶孔,而第十七个尖端用于分配蛋白质。我们的1440个标准条件集的筛选大约需要3h,需要300mul的蛋白质溶液。一旦发现了结晶条件,就可以使用第二个Tecan Genesis液体处理器对其进行优化,该处理器经编程可将四种不同角溶液的梯度移液到多种结晶板形式中。对于96孔板,可以使用笛卡尔机器人添加样品。现在,在我们的实验室中,所描述的方法几乎专门用于获得具有衍射质量的晶体,每年的产量为数千个板。我们的设置已在全球许多机构中复制。

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