...
首页> 外文期刊>Analytical chemistry >Development of Container Free Sample Exposure for Synchrotron X-ray Footprinting
【24h】

Development of Container Free Sample Exposure for Synchrotron X-ray Footprinting

机译:Synchrotron X射线足迹的容器免费样品曝光的开发

获取原文
获取原文并翻译 | 示例
           

摘要

The method of X-ray footprinting and mass spectrometry (XFMS) on large protein assemblies and membrane protein samples requires high flux density to overcome the hydroxyl radical scavenging reactions produced by the buffer constituents and the total protein content. Previously, we successfully developed microsecond XFMS using microfluidic capillary flow and a microfocused broad-band X-ray source at the Advanced Light Source synchrotron beamlines, but the excessive radiation damage incurred when using capillaries prevented the full usage of a high-flux density beam. Here we present another significant advance for the XFMS method: the instrumentation of a liquid injection jet to deliver container free samples to the X-ray beam. Our preliminary experiments with a liquid jet at a bending magnet X-ray beamline demonstrate the feasibility of the approach and show a significant improvement in the effective dose for both the Alexa fluorescence assay and protein samples compared to conventional capillary flow methods. The combination of precisely controlled high dose delivery, shorter exposure times, and elimination of radiation damage due to capillary effects significantly increases the signal quality of the hydroxyl radical modification products and the dose-response data. This new approach is the first application of container free sample handling for XFMS and opens up the method for even further advances, such as high-quality microsecond time-resolved XFMS studies.
机译:大蛋白质组件和膜蛋白样品上的X射线足迹和质谱(XFMS)的方法需要高通量密度,以克服通过缓冲液组分和总蛋白质含量产生的羟基自由基清除反应。以前,我们在先进的光源同步束束线上成功地使用微流体毛细管流量和微耦合的宽带X射线源在微耦合XFMS开发了微焦XFMS,但在使用毛细血管时会产生过度的辐射损伤,防止了高通量密度束的完全使用。在这里,我们为XFMS方法提供了另一个重要的进步:液体注射射流的仪器将容器自由样品输送到X射线束。我们在弯曲磁体X射线束线上用液体射流进行初步实验,证明了与常规毛细血管流动方法相比,α荧光测定和蛋白质样品的有效剂量显着改善。精确控制的高剂量递送,较短的曝光时间,以及消除由于毛细管效应引起的辐射损伤的组合显着提高了羟基自由基改性产品的信号质量和剂量 - 响应数据。这种新方法是第一次应用于XFMS的容器免费样品处理,并为进一步进步开辟了方法,例如高质量的微秒时间解决的XFMS研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号