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细胞内脂质结合蛋白在聚集前部分展开状态的结构洞察。

Structural insight into a partially unfolded state preceding aggregation in an intracellular lipid-binding protein.

机构信息

Laboratory for NMR Spectroscopy, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Budapest, Hungary.

Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Budapest, Hungary.

出版信息

FEBS J. 2017 Nov;284(21):3637-3661. doi: 10.1111/febs.14264. Epub 2017 Oct 4.

Abstract

Human ileal bile acid-binding protein (I-BABP) has a key role in the intracellular transport and metabolic targeting of bile salts. Similar to other members of the family of intracellular lipid-binding proteins (iLBPs), disorder-order transitions and local unfolding processes are thought to mediate ligand entry and release in human I-BABP. To gain insight into the stability of various protein regions, the temperature response of human I-BABP was investigated using NMR, CD and fluorescence spectroscopy, as well as molecular dynamics (MD) simulations. A joint analysis of NMR thermal melting and relaxation dispersion data indicates a complex pattern of internal dynamics with a dominating single barrier and a likely presence of rapidly exchanging conformational substates on both sides of the barrier. Moreover, our residue-specific analysis uncovers a partially unfolded U* state in which part of the helical region with three proximate β-strands contains a substantial amount of residual structure, whereas several segments of the C-terminal half exhibit a high susceptibility to temperature elevation. Cluster analysis of atomic temperature responses indicates a thermodynamic coupling between distant protein sites including the bottom of the β-barrel, the E-F region and part of the helical cap. MD simulations up to 1 μs show correlated motions in the same protein regions and together with the NMR data suggest a role for the highly dynamic D-E turn and E-F region in the initiation of unfolding. The response of human I-BABP to temperature elevation is discussed in the context of the folding/unfolding behaviour of different members of the iLBP family.

摘要

人肠道胆汁酸结合蛋白(I-BABP)在胆汁盐的细胞内转运和代谢靶向中起着关键作用。与细胞内脂质结合蛋白(iLBPs)家族的其他成员类似,构象无序-有序转变和局部展开过程被认为介导了人 I-BABP 中配体的进入和释放。为了深入了解各种蛋白质区域的稳定性,使用 NMR、CD 和荧光光谱以及分子动力学(MD)模拟研究了人 I-BABP 的温度响应。NMR 热融解和弛豫分散数据的联合分析表明,存在复杂的内部动力学模式,具有主导的单个势垒,并且势垒两侧可能存在快速交换的构象亚稳态。此外,我们的残基特异性分析揭示了部分展开的 U*状态,其中三个邻近β-折叠的螺旋区域的一部分包含大量残留结构,而 C 末端一半的几个片段对温度升高表现出高度的敏感性。原子温度响应的聚类分析表明,包括β-桶底部、EF 区域和部分螺旋帽在内的远距离蛋白质位点之间存在热力学耦合。高达 1 μs 的 MD 模拟显示相同蛋白质区域的相关运动,并且与 NMR 数据一起表明高度动态的 DE 转弯和 EF 区域在展开的起始中起作用。讨论了人 I-BABP 对温度升高的响应,这与 iLBP 家族不同成员的折叠/展开行为有关。

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