Department of Biochemistry, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.
J Biomol NMR. 1999 Jan;13(1):77-81. doi: 10.1023/A:1008398227519.
Previously we demonstrated a sensitivity enhancement of the original TROSY experiment by a factor of [Formula: see text] by the use of the sensitivity enhanced TROSY (en-TROSY) scheme. Here, we develop a gradient and sensitivity enhanced TROSY experiment (gs-TROSY), which is designed to select magnetization transfer pathways that suppress spectral artifacts and reduce the number of required phase cycles while having minimal loss of sensitivity. Both of these experimental methods (en-TROSY and gs- TROSY) have been combined with a water flip-back scheme which provides a further increase in sensitivity for labile NH groups by avoiding water saturation. We also apply these TROSY schemes to 3D NOESY-TROSY and 3D TOCSY-TROSY experiments.
先前,我们通过使用灵敏度增强型 TROSY(en-TROSY)方案,将原始 TROSY 实验的灵敏度提高了[Formula: see text]倍。在此,我们开发了一种梯度和灵敏度增强型 TROSY 实验(gs-TROSY),该实验旨在选择磁化转移途径,抑制光谱伪影并减少所需的相循环数,同时最小化灵敏度损失。这两种实验方法(en-TROSY 和 gs-TROSY)都与水翻转回波方案相结合,该方案通过避免水饱和,为不稳定的 NH 基团提供了进一步的灵敏度提高。我们还将这些 TROSY 方案应用于 3D NOESY-TROSY 和 3D TOCSY-TROSY 实验。