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对白血病抑制因子(一种刚性四螺旋束细胞因子)的主链动力学测量。

Backbone dynamics measurements on leukemia inhibitory factor, a rigid four-helical bundle cytokine.

作者信息

Yao S, Smith D K, Hinds M G, Zhang J G, Nicola N A, Norton R S

机构信息

Biomolecular Research Institute, Parkville, Australia.

出版信息

Protein Sci. 2000 Apr;9(4):671-82. doi: 10.1110/ps.9.4.671.

Abstract

The backbone dynamics of the four-helical bundle cytokine leukemia inhibitory factor (LIF) have been investigated using 15N NMR relaxation and amide proton exchange measurements on a murine-human chimera, MH35-LIF. For rapid backbone motions (on a time scale of 10 ps to 100 ns), as probed by 15N relaxation measurements, the dynamics parameters were calculated using the model-free formalism incorporating the model selection approach. The principal components of the inertia tensor of MH35-LIF, as calculated from its NMR structure, were 1:0.98:0.38. The global rotational motion of the molecule was, therefore, assumed to be axially symmetric in the analysis of its relaxation data. This yielded a diffusion anisotropy D(parallel)/D(perpendicular) of 1.31 and an effective correlation time (4D(perpendicular) + 2D(parallel))(-1) of 8.9 ns. The average values of the order parameters (S2) for the four helices, the long interhelical loops, and the N-terminus were 0.91, 0.84, and 0.65, respectively, indicating that LIF is fairly rigid in solution, except at the N-terminus. The S2 values for the long interhelical loops of MH35-LIF were higher than those of their counterparts in short-chain members of the four-helical bundle cytokine family. Residues involved in LIF receptor binding showed no consistent pattern of backbone mobilities, with S2 values ranging from 0.71 to 0.95, but residues contributing to receptor binding site III had relatively lower S2 values, implying higher amplitude motions than for the backbone of sites I and II. In the relatively slow motion regime, backbone amide exchange measurements showed that a number of amides from the helical bundle exchanged extremely slowly, persisting for several months in 2H2O at 37 degrees C. Evidence for local unfolding was considered, and correlations among various structure-related parameters and the backbone amide exchange rates were examined. Both sets of data concur in showing that LIF is one of the most rigid four-helical bundle cytokines.

摘要

利用对鼠 - 人嵌合体MH35 - LIF进行的¹⁵N NMR弛豫和酰胺质子交换测量,研究了四螺旋束细胞因子白血病抑制因子(LIF)的主链动力学。对于¹⁵N弛豫测量所探测的快速主链运动(时间尺度为10皮秒至100纳秒),使用结合模型选择方法的无模型形式计算动力学参数。根据其NMR结构计算,MH35 - LIF惯性张量的主成分是1:0.98:0.38。因此,在分析其弛豫数据时,假定分子的整体旋转运动是轴对称的。这得出扩散各向异性D(平行)/D(垂直)为1.31,有效相关时间(4D(垂直)+ 2D(平行))⁻¹为8.9纳秒。四条螺旋、长的螺旋间环和N端的序参数(S2)平均值分别为0.91、0.84和0.65,表明LIF在溶液中相当刚性,除了在N端。MH35 - LIF长螺旋间环的S2值高于四螺旋束细胞因子家族短链成员中对应环的S2值。参与LIF受体结合的残基在主链迁移率上没有一致模式,S2值范围为0.71至0.95,但对受体结合位点III有贡献的残基S2值相对较低,这意味着其运动幅度比位点I和II的主链更高。在相对慢速运动状态下,主链酰胺交换测量表明,来自螺旋束的许多酰胺交换极其缓慢,在37℃的²H₂O中持续数月。考虑了局部解折叠的证据,并检查了各种与结构相关参数和主链酰胺交换速率之间的相关性。两组数据都一致表明LIF是最刚性的四螺旋束细胞因子之一。

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本文引用的文献

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J Biol Chem. 1998 May 29;273(22):13738-45. doi: 10.1074/jbc.273.22.13738.
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