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通过溶液中的异核核磁共振光谱法测定的人干扰素α-2a的三维高分辨率结构。

The three-dimensional high resolution structure of human interferon alpha-2a determined by heteronuclear NMR spectroscopy in solution.

作者信息

Klaus W, Gsell B, Labhardt A M, Wipf B, Senn H

机构信息

F. Hoffmann-LaRoche AG Pharma Preclinical Research Department, Basel, Switzerland.

出版信息

J Mol Biol. 1997 Dec 12;274(4):661-75. doi: 10.1006/jmbi.1997.1396.

Abstract

The solution structure of recombinant human interferon alpha-2a (Roferon-A) has been determined by multidimensional heteronuclear NMR spectroscopy. The calculations using simulated annealing produced a family of 24 convergent structures which satisfy the experimental restraints comprising 1541 NOE-derived inter-proton distances, 187 dihedral restraints, 66 pairs of hydrogen bond restraints, and six upper and lower limits for two disulfide bridges. The fractional labeling of methyl groups allowed their direct and unambiguous stereospecific assignment which proved to be essential for obtaining a high resolution of the structures. A best fit superposition of residues 10 to 47, 50 to 101 and 111 to 157 gives an rms deviation of 0.62 A for the backbone heavy atoms and 1.39 A for all heavy atoms of these segments. The dominant feature of the structure is a cluster of five alpha-helices, four of which are arranged to form a left-handed helix bundle with an up-up-down-down topology and two over-hand connections. The interpretation of heteronuclear 15N-¿1H¿ NOE data shows the co-existence of flexible regions within an otherwise rigid framework of the protein. Four stretches of pronounced flexibility can be located: Cys1-Ser8, Gly44-Ala50, Ile100-Lys112, and Ser160-Glu165. Among the structurally related four-helical bundle cytokines, the structure of IFN alpha-2a is most similar to that of human interferon alpha-2b and murine interferon-beta. From this structural information and mutagenesis data, areas on the surface of the protein are identified which seem to be important in receptor interactions.

摘要

重组人干扰素α-2a(罗扰素)的溶液结构已通过多维异核核磁共振光谱法测定。使用模拟退火算法进行的计算产生了一组24个收敛结构,这些结构满足实验限制条件,包括1541个源自核Overhauser效应(NOE)的质子间距离、187个二面角限制、66对氢键限制以及两个二硫键的六个上限和下限。甲基基团的部分标记使得它们能够直接且明确地进行立体特异性归属,这被证明对于获得高分辨率结构至关重要。对残基10至47、50至101和111至157进行最佳拟合叠加,这些片段的主链重原子的均方根偏差为0.62 Å,所有重原子的均方根偏差为1.39 Å。该结构的主要特征是由五个α螺旋组成的簇,其中四个α螺旋排列形成具有上-上-下-下拓扑结构和两个交叉连接的左手螺旋束。对异核15N-1H NOE数据的解释表明,在蛋白质原本刚性的框架内存在柔性区域。可以定位到四个明显的柔性区域:Cys1-Ser8、Gly44-Ala50、Ile100-Lys112和Ser160-Glu165。在结构相关的四螺旋束细胞因子中,IFNα-2a的结构与人类干扰素α-2b和小鼠干扰素-β的结构最为相似。根据这些结构信息和诱变数据,确定了蛋白质表面似乎在受体相互作用中很重要的区域。

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