Mulder F A, Skrynnikov N R, Hon B, Dahlquist F W, Kay L E
Protein Engineering Network Centres of Excellence and Departments of Medical Genetics, Biochemistry and Chemistry, University of Toronto, Toronto, Ontario, M5S 1A8 Canada.
J Am Chem Soc. 2001 Feb 7;123(5):967-75. doi: 10.1021/ja003447g.
A new NMR experiment is presented for the measurement of micros-ms time scale dynamics of Asn and Gln side chains in proteins. Exchange contributions to the (15)N line widths of side chain residues are determined via a relaxation dispersion experiment in which the effective nitrogen transverse relaxation rate is measured as a function of the number of refocusing pulses in constant-time, variable spacing CPMG intervals. The evolution of magnetization from scalar couplings and dipole-dipole cross-correlations, which has limited studies of exchange in multi-spin systems in the past, does not affect the extraction of accurate exchange parameters from relaxation profiles of NH(2) groups obtained in the present experiment. The utility of the method is demonstrated with an application to a Leu --> Ala cavity mutant of T4 lysozyme, L99A. It is shown that many of the side chain amide groups of Asn and Gln residues in the C-terminal domain of the protein are affected by a chemical exchange process which may be important in facilitating the rapid binding of hydrophobic ligands to the cavity.
本文介绍了一种新的核磁共振实验,用于测量蛋白质中天冬酰胺(Asn)和谷氨酰胺(Gln)侧链的微秒时间尺度动力学。通过弛豫色散实验确定侧链残基的(15)N线宽的交换贡献,在该实验中,有效氮横向弛豫率作为恒时、可变间距CPMG间隔中重聚焦脉冲数的函数进行测量。过去,标量耦合和偶极-偶极交叉相关引起的磁化演化限制了对多自旋系统中交换的研究,但在本实验中,这并不影响从NH(2)基团弛豫谱中提取准确的交换参数。该方法的实用性通过应用于T4溶菌酶的Leu --> Ala腔突变体L99A得到了证明。结果表明,该蛋白质C端结构域中许多Asn和Gln残基的侧链酰胺基团受到化学交换过程的影响,这可能对促进疏水配体与腔的快速结合很重要。