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首页> 外文期刊>Journal of Applied Crystallography >Protein crystals IR laser ablated from aqueous solution at high speed retain their diffractive properties: applications in high-speed serial crystallography
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Protein crystals IR laser ablated from aqueous solution at high speed retain their diffractive properties: applications in high-speed serial crystallography

机译:在高速下从水溶液中烧蚀蛋白质晶体IR激光保留它们的衍射性质:高速连续晶体学中的应用

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摘要

In order to utilize the high repetition rates now available at X-ray free-electron laser sources for serial crystallography, methods must be developed to softly deliver large numbers of individual microcrystals at high repetition rates and high speeds. Picosecond infrared laser (PIRL) pulses, operating under desorption by impulsive vibrational excitation (DIVE) conditions, selectively excite the OH vibrational stretch of water to directly propel the excited volume at high speed with minimized heating effects, nucleation formation or cavitationinduced shock waves, leaving the analytes intact and undamaged. The soft nature and laser-based sampling flexibility provided by the technique make the PIRL system an interesting crystal delivery approach for serial crystallography. This paper demonstrates that protein crystals extracted directly from aqueous buffer solution via PIRL-DIVE ablation retain their diffractive properties and can be usefully exploited for structure determination at synchrotron sources. The remaining steps to implement the technology for high-speed serial femtosecond crystallography, such as single-crystal localization, high-speed sampling and synchronization, are described. This proof-of-principle experiment demonstrates the viability of a new laser-based high-speed crystal delivery system without the need for liquid-jet injectors or fixed-target mounting solutions.
机译:为了利用现在在X射线自由电子激光源的高重复率进行串行晶体学,必须开发方法以轻轻地以高重复率和高速提供大量单独的微晶。 Pic秒红外激光(皮肤)脉冲,通过冲动振动激发(潜水)条件,选择性激发OH振动的水,以高速直接推进励磁体积,最小化的加热效果,成核形成或水蛭诱导的冲击波,离开分析物完整和未损坏。该技术提供的软性和基于激光的采样灵活性使Pirl系统成为串行晶体学的有趣晶体输送方法。本文证明,通过皮坡潜水消融直接从水性缓冲溶液中提取的蛋白质晶体保留其衍射特性,并且可以用来用于Syschrotron来源的结构测定。描述了用于实现高速串行纤维化晶体学技术的剩余步骤,例如单晶定位,高速采样和同步。这种原则上的实验证明了一种新的激光基高速晶体输送系统的可行性,而无需液喷射器或固定目标安装溶液。

著录项

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  • 作者单位

    Department for Atomically Resolved Dynamics Max Planck Institute for the Structure and Dynamics of Matter Luruper Chaussee 149 Hamburg 22761 Germany;

    Department for Atomically Resolved Dynamics Max Planck Institute for the Structure and Dynamics of Matter Luruper Chaussee 149 Hamburg 22761 Germany;

    Department for Atomically Resolved Dynamics Max Planck Institute for the Structure and Dynamics of Matter Luruper Chaussee 149 Hamburg 22761 Germany;

    Department of Medical Biophysics University of Toronto Toronto Ontario Canada;

    Department for Atomically Resolved Dynamics Max Planck Institute for the Structure and Dynamics of Matter Luruper Chaussee 149 Hamburg 22761 Germany;

    Department of Medical Biophysics University of Toronto Toronto Ontario Canada;

    Department for Atomically Resolved Dynamics Max Planck Institute for the Structure and Dynamics of Matter Luruper Chaussee 149 Hamburg 22761 Germany;

    Department for Atomically Resolved Dynamics Max Planck Institute for the Structure and Dynamics of Matter Luruper Chaussee 149 Hamburg 22761 Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用晶体学;晶体学;
  • 关键词

    serial synchrotron crystallography; SSX; picosecond infrared lasers; PIRL; fixed targets; sample delivery;

    机译:串行同步晶体学;SSX;皮秒红外激光器;皮肤;固定目标;样品交付;

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