Copié V, Battles J A, Schwab J M, Torchia D A
Molecular Structural Biology Unit, National Institute of Dental Research, National Institutes of Health, Bethesda, MD 20892, USA.
J Biomol NMR. 1996 Jun;7(4):335-40. doi: 10.1007/BF00200435.
Nearly complete backbone 1H, 15N and 13C signal assignments are reported for beta-hydroxydecanoyl thiol ester dehydrase, a 39-kDa homodimer containing 342 amino acids. Although 15N relaxation data show that the protein has a rotational correlation time of 18 ns, assignments were derived from triple-resonance experiments recorded at 500 MHz and pH 6.8, without deuteration. The Chemical Shift Index, CSI, identified two long helices and numerous beta-strands in dehydrase. The CSI predictions are in close agreement with the secondary structure identified in the recently derived crystal structure, particularly when one takes account of the numerous bulges in the beta-strands. The assignment of dehydrase and a large deuterated protein [Yamazaki et al. (1994) J. Am. Chem. Soc., 116, 11655-11666] suggest that assignment of 40-60 kDa proteins is feasible. Hence, further progress in understanding the chemical shift/structure relationship could open the way to determine the structures of such large proteins.
本文报道了β-羟基癸酰硫酯脱水酶(一种含有342个氨基酸的39 kDa同型二聚体)几乎完整的骨架1H、15N和13C信号归属。尽管15N弛豫数据表明该蛋白质的旋转相关时间为18 ns,但归属是基于在500 MHz和pH 6.8条件下记录的三共振实验得出的,未进行氘代。化学位移指数(CSI)确定了脱水酶中有两个长螺旋和许多β链。CSI预测结果与最近推导的晶体结构中确定的二级结构非常吻合,尤其是当考虑到β链中众多的凸起时。脱水酶和一个大型氘代蛋白质[Yamazaki等人(1994年),《美国化学会志》,116,11655 - 11666]的归属表明,对40 - 60 kDa蛋白质进行归属是可行的。因此,在理解化学位移/结构关系方面的进一步进展可能为确定此类大型蛋白质的结构开辟道路。