Fairbrother W J, Champe M A, Christinger H W, Keyt B A, Starovasnik M A
Department of Protein Engineering, Genentech Inc., South San Francisco, California 94080, USA.
Protein Sci. 1997 Oct;6(10):2250-60. doi: 10.1002/pro.5560061020.
Nearly complete sequence-specific 1H, 13C, and 15N resonance assignments are reported for the backbone atoms of the receptor-binding domain of vascular endothelial growth factor (VEGF), a 23-kDa homodimeric protein that is a major regulator of both normal and pathological angiogenesis. The assignment strategy relied on the use of seven 3D triple-resonance experiments [HN(CO)CA, HNCA, HNCO, (HCA)CONH, HN(COCA)HA, HN(CA)HA, and CBCA-(CO)NH] and a 3D 15N-TOCSY-HSQC experiment recorded on a 0.5 mM (12 mg/mL) sample at 500 MHz, pH 7.0, 45 degrees C. Under these conditions, 15N relaxation data show that the protein has a rotational correlation time of 15.0 ns. Despite this unusually long correlation time, assignments were obtained for 94 of the 99 residues; 8 residues lack amide 1H and 15N assignments, presumably due to rapid exchange of the amide 1H with solvent under the experimental conditions used. The secondary structure of the protein was deduced from the chemical shift indices of the 1H alpha, 13C alpha, 13C beta, and 13CO nuclei, and from analysis of backbone NOEs observed in a 3D 15N-NOESY-HSQC spectrum. Two helices and a significant amount of beta-sheet structure were identified, in general agreement with the secondary structure found in a recently determined crystal structure of a similar VEGF construct [Muller YA et al., 1997, Proc Natl Acad Sci USA 94:7192-7197].
已报道了血管内皮生长因子(VEGF)受体结合域主链原子几乎完整的序列特异性1H、13C和15N共振归属。VEGF是一种23 kDa的同二聚体蛋白,是正常和病理性血管生成的主要调节因子。归属策略依赖于使用七个3D三共振实验[HN(CO)CA、HNCA、HNCO、(HCA)CONH、HN(COCA)HA、HN(CA)HA和CBCA-(CO)NH]以及在500 MHz、pH 7.0、45℃下对0.5 mM(12 mg/mL)样品记录的3D 15N-TOCSY-HSQC实验。在这些条件下,15N弛豫数据表明该蛋白的旋转相关时间为15.0 ns。尽管相关时间异常长,但仍获得了99个残基中94个的归属;8个残基缺乏酰胺1H和15N归属,可能是由于在所用实验条件下酰胺1H与溶剂的快速交换。该蛋白的二级结构由1Hα、13Cα、13Cβ和13CO核的化学位移指数以及在3D 15N-NOESY-HSQC谱中观察到的主链NOE分析推导得出。鉴定出两个螺旋和大量的β折叠结构,总体上与最近测定的类似VEGF构建体的晶体结构中的二级结构一致[Muller YA等人,1997,美国国家科学院院刊94:7192-7197]。