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Batch crystallization of rhodopsin for structural dynamics using an X-ray free-electron laser

机译:使用X射线自由电子激光对视紫红质进行批量结晶以进行结构动力学研究

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摘要

Rhodopsin is a membrane protein from the G protein-coupled receptor family. Together with its ligand retinal, it forms the visual pigment responsible for night vision. In order to perform ultrafast dynamics studies, a time-resolved serial femtosecond crystallography method is required owing to the nonreversible activation of rhodopsin. In such an approach, microcrystals in suspension are delivered into the X-ray pulses of an X-ray free-electron laser (XFEL) after a precise photoactivation delay. Here, a millilitre batch production of high-density microcrystals was developed by four methodical conversion steps starting from known vapour-diffusion crystallization protocols: (i) screening the low-salt crystallization conditions preferred for serial crystallography by vapour diffusion, (ii) optimization of batch crystallization, (iii) testing the crystal size and quality using second-harmonic generation (SHG) imaging and X-ray powder diffraction and (iv) production of millilitres of rhodopsin crystal suspension in batches for serial crystallography tests; these crystals diffracted at an XFEL at the Linac Coherent Light Source using a liquid-jet setup.
机译:视紫红质是来自G蛋白偶联受体家族的膜蛋白。它与配体视网膜一起形成负责夜视的视觉色素。为了进行超快速动力学研究,由于视紫红质的不可逆活化,需要时间分辨的系列飞秒晶体学方法。在这种方法中,在精确的光激活延迟之后,悬浮液中的微晶被传递到X射线自由电子激光器(XFEL)的X射线脉冲中。在这里,从已知的蒸气扩散结晶方案开始,通过四个有条理的转化步骤,开发出了毫升分批生产高密度微晶的方法:(i)通过蒸汽扩散筛选优选用于连续结晶的低盐结晶条件,(ii)优化分批结晶;(iii)使用二次谐波生成(SHG)成像和X射线粉末衍射测试晶体的尺寸和质量,以及(iv)分批生产毫升视紫红质晶体悬浮液以进行串行晶体学测试;这些晶体通过液射装置在直线加速器相干光源的XFEL处衍射。

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