Tang Chun, Iwahara Junji, Clore G Marius
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Building 5/B1-30I, Bethesda, MD 20892-0520, USA.
J Biomol NMR. 2005 Oct;33(2):105-21. doi: 10.1007/s10858-005-1206-5.
An isotope labeling scheme is described in which specific protonation of methine and methyl protons of leucine and valine is obtained on a 15N/13C labeled background with uniform deuteration of all other non-exchangeable protons. The presence of a protonated methine group has little effect on the favorable relaxation properties of the methyl protons of Leu and Val. This labeling scheme permits the rotameric state of leucine side-chains to be readily determined by simple inspection of the pattern of Hgamma(i)-H(N)(i) and Hgamma(i)-H(N)(i+1) NOEs in a 3D 15N-separated NOE spectrum free of complications arising from spectral overlap and spin-diffusion. In addition, one-bond residual dipolar couplings for the methine 13C-1H bond vectors of Leu and Val can be accurately determined from an intensity J-modulated constant-time HCCH-COSY experiment and used to accurately orient the side-chains of Leu and Val. Incorporation of these data into structure refinement improves the accuracy with which the conformations of Leu and Val side-chains can be established. This is important to ensure optimal packing both within the protein core and at intermolecular interfaces. The impact of the method on protein structure determination is illustrated by application to enzyme IIA(Chitobiose), a 34 kDa homotrimeric phosphotransferase protein.
描述了一种同位素标记方案,其中在15N/13C标记背景下,亮氨酸和缬氨酸的次甲基和甲基质子实现了特定质子化,同时所有其他不可交换质子均被均匀氘代。质子化次甲基基团的存在对亮氨酸和缬氨酸甲基质子良好的弛豫特性影响很小。这种标记方案允许通过简单检查三维15N分离NOE谱中Hγ(i)-H(N)(i)和Hγ(i)-H(N)(i+1) NOE的模式,轻松确定亮氨酸侧链的旋转异构体状态,该谱不受谱重叠和自旋扩散引起的复杂情况影响。此外,亮氨酸和缬氨酸次甲基13C-1H键向量的一键残余偶极耦合可通过强度J调制恒时HCCH-COSY实验准确测定,并用于精确确定亮氨酸和缬氨酸侧链的方向。将这些数据纳入结构精修可提高确定亮氨酸和缬氨酸侧链构象的准确性。这对于确保蛋白质核心内和分子间界面处的最佳堆积很重要。通过应用于34 kDa同三聚体磷酸转移酶蛋白IIA(壳二糖),说明了该方法对蛋白质结构测定的影响。