首页> 外文期刊>Protein Science: A Publication of the Protein Society >NMR structure of a concatemer of the first and second ligand-binding modules of the human low-density lipoprotein receptor.
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NMR structure of a concatemer of the first and second ligand-binding modules of the human low-density lipoprotein receptor.

机译:人类低密度脂蛋白受体的第一和第二配体结合模块的串联体的NMR结构。

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摘要

The ligand-binding domain of the human low-density lipoprotein receptor consists of seven modules, each of 40-45 residues. In the presence of calcium, these modules adopt a common polypeptide fold with three conserved disulfide bonds. A concatemer of the first and second modules (LB(1-2)) folds efficiently in the presence of calcium ions, forming the same disulfide connectivities as in the isolated modules. The three-dimensional structure of LB(1-2) has now been solved using two-dimensional 1H NMR spectroscopy and restrained molecular dynamics calculations. No intermodule nuclear Overhauser effects were observed, indicating the absence of persistent interaction between them. The near random-coil NH and H alpha chemical shifts and the low phi and psi angle order parameters of the four-residue linker suggest that it has considerable flexibility. The family of LB(1-2) structures superimposed well over LB1 or LB2, but not over both modules simultaneously. LB1 and LB2 have a similar pattern of calcium ligands, but the orientations of the indole rings of the tryptophan residues W23 and W66 differ, with the latter limiting solvent access to the calcium ion. From these studies, it appears that although most of the modules in the ligand-binding region of the receptor are joined by short segments, these linkers may impart considerable flexibility on this region.
机译:人低密度脂蛋白受体的配体结合域由七个模块组成,每个模块有40-45个残基。在钙的存在下,这些模块采用具有三个保守的二硫键的常见多肽折叠。第一模块和第二模块(LB(1-2))的串联体在存在钙离子的情况下有效折叠,形成与分离模块相同的二硫键连接性。 LB(1-2)的三维结构现在已经使用二维1H NMR光谱和受约束的分子动力学计算得到了解决。没有观察到模块间核Overhauser效应,表明它们之间不存在持续相互作用。四残基接头的近乎无规的NH和Hα化学位移以及低phi和psi角序参数表明它具有相当大的灵活性。 LB(1-2)结构族在LB1或LB2上重叠良好,但在两个模块上同时重叠。 LB1和LB2具有相似的钙配体模式,但色氨酸残基W23和W66的吲哚环的方向不同,后者限制了溶剂进入钙离子的通道。从这些研究看来,尽管受体的配体结合区域中的大多数模块是通过短链段连接的,但是这些接头可能会在该区域赋予相当大的柔性。

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