Tugarinov Vitali, Sprangers Remco, Kay Lewis E
Departments of Medical Genetics, Biochemistry and Chemistry, The University of Toronto, Toronto, Ontario, Canada M5S 1A8.
J Am Chem Soc. 2007 Feb 14;129(6):1743-50. doi: 10.1021/ja067827z. Epub 2007 Jan 24.
A pair of experiments is presented for measuring intra-methyl 1H-1H dipolar cross-correlated spin relaxation rates in highly deuterated, methyl protonated proteins with significantly improved sensitivity relative to previously developed experiments that measure dynamics via 1H spin relaxation. In applications to proteins with correlation times in the macromolecular limit, these cross-correlation rates are related directly to order parameters, characterizing the amplitude of motion of methyl-containing side-chains. The experimental approach is validated by comparing extracted order parameters with those obtained via 2H and 13C spin relaxation methods for both protein L (7.5 kDa) and malate synthase G (82 kDa), with excellent correlations obtained. The methodology is applied to study Ile, Leu, and Val side-chain dynamics in a 360 kDa "half-proteasome" complex. In particular, order parameters obtained from the WT complex and from a second complex where the proteasome gating residues are deleted establish that the relative levels of dynamics in each of the two molecules are very similar. It thus becomes clear that there is no communication between gating residues and other regions of the molecule involving pico- to nanosecond time-scale dynamics of these methyl-containing side-chains.
本文展示了一对实验,用于测量高度氘代、甲基质子化蛋白质中甲基内1H-1H偶极交叉相关自旋弛豫率,相较于之前通过1H自旋弛豫测量动力学的实验,其灵敏度显著提高。在应用于相关时间处于大分子极限的蛋白质时,这些交叉相关率直接与序参量相关,序参量表征含甲基侧链的运动幅度。通过将提取的序参量与通过2H和13C自旋弛豫方法获得的蛋白质L(7.5 kDa)和苹果酸合酶G(82 kDa)的序参量进行比较,验证了该实验方法,结果显示相关性良好。该方法被应用于研究360 kDa“半蛋白酶体”复合物中异亮氨酸、亮氨酸和缬氨酸侧链的动力学。特别是,从野生型复合物和第二个删除了蛋白酶体门控残基的复合物中获得的序参量表明,两个分子中每个分子的动力学相对水平非常相似。因此很明显,在这些含甲基侧链的皮秒到纳秒时间尺度动力学方面,门控残基与分子的其他区域之间不存在通信。