Wurth C, Kessler U, Vogt J, Schulz G E, Folkers G, Scapozza L
Department of Applied BioSciences, Institute of Pharmaceutical Sciences, Swiss Federal Institute of Technology, CH-8057 Zürich, Switzerland.
Protein Sci. 2001 Jan;10(1):63-73. doi: 10.1110/ps.27401.
The structure of Herpes simplex virus type 1 thymidine kinase (TK(HSV1)) is known at high resolution in complex with a series of ligands and exhibits important structural similarities to the nucleoside monophosphate (NMP) kinase family, which are known to show large conformational changes upon binding of substrates. The effect of substrate binding on the conformation and structural stability of TK(HSV1), measured by thermal denaturation experiments, far-UV circular dichroism (CD) and fluorescence is described, and the results indicate that the conformation of the ligand-free TK(HSV1) is less ordered and less stable compared to the ligated enzyme. Furthermore, two crystal structures of TK(HSV1) in complex with two new ligands, HPT and HMTT, refined to 2.2 A are presented. Although TK(HSV1):HPT does not exhibit any significant deviations from the model of TK(HSV1):dT, the TK(HSV1):HMTT complex displays a unique conformationally altered active site resulting in a lowered thermal stability of this complex. Moreover, we show that binding affinity and binding mode of the ligand correlate with thermal stability of the complex. We use this correlation to propose a method to estimate binding constants for new TK(HSV1)substrates using thermal denaturation measurements monitored by CD spectroscopy. The kinetic and structural results of both test substrates HPT and HMTT show that the CD thermal denaturation system is very sensitive to conformational changes caused by unusual binding of a substrate analog.
1型单纯疱疹病毒胸苷激酶(TK(HSV1))与一系列配体形成复合物时的结构已得到高分辨率解析,并且与核苷单磷酸(NMP)激酶家族表现出重要的结构相似性,已知后者在结合底物时会发生较大的构象变化。本文描述了通过热变性实验、远紫外圆二色性(CD)和荧光测量底物结合对TK(HSV1)的构象和结构稳定性的影响,结果表明,与结合配体的酶相比,无配体的TK(HSV1)的构象有序性更低且稳定性更差。此外,还给出了TK(HSV1)与两种新配体HPT和HMTT形成复合物的两个晶体结构,分辨率达到2.2 Å。虽然TK(HSV1):HPT与TK(HSV1):dT模型相比没有表现出任何显著偏差,但TK(HSV1):HMTT复合物显示出独特的构象改变的活性位点,导致该复合物的热稳定性降低。此外,我们表明配体的结合亲和力和结合模式与复合物的热稳定性相关。我们利用这种相关性提出了一种方法,通过CD光谱监测的热变性测量来估计新的TK(HSV1)底物的结合常数。测试底物HPT和HMTT的动力学和结构结果均表明,CD热变性系统对由底物类似物的异常结合引起的构象变化非常敏感。