Hansen D Flemming, Yang Daiwen, Feng Haniqiao, Zhou Zheng, Wiesner Silke, Bai Yawen, Kay Lewis E
Department of Medical Genetics, The University of Toronto, Toronto, Ontario, Canada, M5S 1A8.
J Am Chem Soc. 2007 Sep 19;129(37):11468-79. doi: 10.1021/ja072717t. Epub 2007 Aug 28.
A series of experiments are presented that provide an exchange-free measure of dipole-dipole (15)N transverse relaxation, R(dd), that can then be substituted for (15)N R(1rho) or R(2) rates in the study of internal protein dynamics. The method is predicated on the measurement of a series of relaxation rates involving (1)H-(15)N longitudinal order, anti-phase (1)H and (15)N single-quantum coherences, and (1)H-(15)N multiple quantum coherences; the relaxation rates of all coherences are measured under conditions of spin-locking. Results from detailed simulations and experiments on a number of protein systems establish that R(dd) values are independent of exchange and systematic errors from dipolar interactions with proximal protons are calculated to be less than 1-2%, on average, for applications to perdeuterated proteins. Simulations further indicate that the methodology is rather insensitive to the exact level of deuteration so long as proteins are reasonably highly deuterated (>50%). The utility of the methodology is demonstrated with applications involving protein L, ubiquitin, and a stabilized folding intermediate of apocytochrome b(562) that shows large contributions to (15)N R(1rho) relaxation from chemical exchange.
本文展示了一系列实验,这些实验提供了一种无交换的偶极 - 偶极(15)N横向弛豫测量方法,即R(dd),该方法可在研究蛋白质内部动力学时替代(15)N R(1rho)或R(2)速率。该方法基于对一系列弛豫速率的测量,这些弛豫速率涉及(1)H - (15)N纵向序、反相(1)H和(15)N单量子相干以及(1)H - (15)N多量子相干;所有相干的弛豫速率均在自旋锁定条件下测量。对多个蛋白质系统进行的详细模拟和实验结果表明,R(dd)值与交换无关,并且对于全氘代蛋白质的应用而言,与近端质子的偶极相互作用产生的系统误差经计算平均小于1 - 2%。模拟进一步表明,只要蛋白质具有相当高的氘代水平(>50%),该方法对确切的氘代水平相当不敏感。通过涉及蛋白质L、泛素以及脱辅基细胞色素b(562)的稳定折叠中间体的应用,证明了该方法的实用性,该中间体显示出化学交换对(15)N R(1rho)弛豫有很大贡献。