Xu G Y, Hong J, McDonagh T, Stahl M, Kay L E, Seehra J, Cumming D A
Small Molecule Drug Discovery Group, Genetics Institute, Cambridge, MA 02140, USA.
J Biomol NMR. 1996 Sep;8(2):123-35. doi: 10.1007/BF00211159.
Essentially complete backbone and side-chain 1H, 15N and 13C resonance assignments for the 185-amino-acid cytokine interleukin-6 (IL-6) are presented. NMR experiments were performed on uniformly [15N]- and [15N,13C]-labeled recombinant human IL-6 (rIL-6) using a variety of heteronuclear NMR experiments. A combination of 13C-chemical shift, amide hydrogen-bond exchange, and 15N-edited NOESY data allowed for analysis of the secondary structure of IL-6. The observed secondary structure of IL-6 is composed of loop regions connecting five alpha-helices, four of which are consistent in their length and disposition with the four-helix bundle motif present in other related cytokines and previously postulated for IL-6. In addition, the topology of the overall fold was found to be consistent with a left-handed up-up-down-down four-helix bundle based on a number of long-range interhelical NOEs. The results presented here provide deeper insight into structure-function relationships among members of the four-helix bundle family of proteins.
本文报道了185个氨基酸的细胞因子白细胞介素-6(IL-6)基本完整的主链和侧链1H、15N和13C共振归属。使用多种异核NMR实验,对均匀[15N]和[15N,13C]标记的重组人IL-6(rIL-6)进行了NMR实验。结合13C化学位移、酰胺氢交换和15N编辑的NOESY数据,对IL-6的二级结构进行了分析。观察到的IL-6二级结构由连接五个α螺旋的环区组成,其中四个螺旋的长度和取向与其他相关细胞因子中存在的四螺旋束基序一致,并且之前已假定IL-6也具有该基序。此外,基于多个长程螺旋间NOE,发现整体折叠的拓扑结构与左手向上-向上-向下-向下四螺旋束一致。本文给出的结果为深入了解四螺旋束蛋白家族成员之间的结构-功能关系提供了依据。