首页> 外文期刊>Crystals >Crystal Growth of High-Quality Protein Crystals under the Presence of an Alternant Electric Field in Pulse-Wave Mode, and a Strong Magnetic Field with Radio Frequency Pulses Characterized by X-ray Diffraction
【24h】

Crystal Growth of High-Quality Protein Crystals under the Presence of an Alternant Electric Field in Pulse-Wave Mode, and a Strong Magnetic Field with Radio Frequency Pulses Characterized by X-ray Diffraction

机译:在脉冲波交替电场和具有X射线衍射特征的射频脉冲的强磁场的作用下,高质量蛋白晶体的晶体生长

获取原文
           

摘要

The first part of this research was devoted to investigating the effect of alternate current (AC) using four different types of wave modes (pulse-wave) at 2 Hz on the crystal growth of lysozyme in solution. The best results, in terms of size and crystal quality, were obtained when protein crystals were grown under the influence of electric fields in a very specific wave mode (“breathing” wave), giving the highest resolution up to 1.34 ? in X-ray diffraction analysis compared with controls and with those crystals grown in gel. In the second part, we evaluated the effect of a strong magnetic field of 16.5 Tesla combined with radiofrequency pulses of 0.43 μs on the crystal growth in gels of tetragonal hen egg white (HEW) lysozyme. The lysozyme crystals grown, both in solution applying breathing-wave and in gel under the influence of this strong magnetic field with pulses of radio frequencies, produced the larger-in-size crystals and the highest resolution structures. Data processing and refinement statistics are very good in terms of the resolution, mosaicity and Wilson B factor obtained for each crystal. Besides, electron density maps show well-defined and distinctly separated atoms at several selected tryptophan residues for the crystal grown using the “breathing wave pulses”.
机译:本研究的第一部分致力于研究交流电(AC)在2 Hz时使用四种不同类型的波模式(脉冲波)对溶液中溶菌酶晶体生长的影响。当蛋白质晶体在电场的作用下以非常特定的波模式(“呼吸”波)生长时,就尺寸和晶体质量而言,可获得最佳结果,分辨率最高可达1.34?m。在X射线衍射分析中与对照以及在凝胶中生长的晶体进行比较。在第二部分中,我们评估了16.5 Tesla的强磁场与0.43μs的射频脉冲结合对四方鸡蛋清(HEW)溶菌酶凝胶中晶体生长的影响。在施加有呼吸波的溶液中和在凝胶中的溶菌酶晶体都在这种强磁场的作用下产生了射频脉冲,产生了较大尺寸的晶体和最高分辨率的结构。就每个晶体获得的分辨率,镶嵌度和Wilson B因子而言,数据处理和精炼统计数据都非常好。此外,电子密度图显示了使用“呼吸波脉冲”生长的晶体的几个选定的色氨酸残基处的定义明确且明显分开的原子。

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