首页> 外文期刊>Analytical chemistry >Gas-Phase Dopant-Induced Conformational Changes Monitored with Transversal Modulation Ion Mobility Spectrometry
【24h】

Gas-Phase Dopant-Induced Conformational Changes Monitored with Transversal Modulation Ion Mobility Spectrometry

机译:横向调制离子迁移谱法监测气相掺杂引起的构象变化

获取原文
获取原文并翻译 | 示例
       

摘要

The potential of a Transversal Modulation Ion Mobility Spectrometry (TMIMS) instrument for protein analysis applications has been evaluated. The Collision Cross Section (CCS) of cytochrome c measured with the TMIMS is in agreement with values reported in the literature. Additionally, it enables tandem IMS-IMS prefiltration in dry gas and in vapor doped gas. The chemical specificity of the different dopants enables interesting studies on the structure of proteins as CCS changed strongly depending on the specific dopant. Hexane produced an unexpectedly high CCS shift, which can be utilized to evaluate the exposure of hydrophobic parts of the protein. Alcohols produced higher shifts with a dual behavior: an increase in CCS due to vapor uptake at specific absorption sites, followed by a linear shift typical for unspecific and unstable vapor uptake. The molten globule +8 shows a very specific transition. Initially, its CCS follows the trend of the compact folded states, and then it rapidly increases to the levels of the unfolded states. This strong variation suggests that the +8 charge state undergoes a dopant-induced conformational change. Interestingly, more sterically demanding alcohols seem to unfold the protein more effectively also in the gas phase. This study shows the capabilities of the TMIMS device for protein analysis and how tandem IMS IMS with dopants could provide better understanding of the conformational changes of proteins.
机译:已经评估了横向调制离子迁移谱(TMIMS)仪器在蛋白质分析应用中的潜力。用TMIMS测量的细胞色素c的碰撞截面(CCS)与文献报道的值一致。此外,它还可以在干燥气体和掺杂蒸气的气体中进行串联IMS-IMS预过滤。不同的掺杂剂的化学特异性使得对蛋白质结构的有趣研究成为可能,因为CCS依赖于特定的掺杂剂而发生了巨大变化。己烷产生出乎意料的高CCS位移,可用于评估蛋白质疏水部分的暴露。醇具有双重行为而产生较高的位移:由于特定吸收位点处的蒸气吸收,CCS增加,然后是非特异性和不稳定蒸气吸收所典型的线性位移。熔融小球+8显示出非常特定的过渡。最初,CCS遵循紧凑折叠状态的趋势,然后迅速增加到展开状态的水平。这种强烈的变化表明+8电荷状态经历了掺杂剂诱导的构象变化。有趣的是,对空间要求更高的醇似乎也在气相中更有效地展开蛋白质。这项研究显示了TMIMS设备用于蛋白质分析的功能,以及串联IMS与掺杂剂的IMS如何更好地理解蛋白质的构象变化。

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