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转铁蛋白中配体诱导的构象变化:人转铁蛋白N端半分子开放形式的晶体结构

Ligand-induced conformational change in transferrins: crystal structure of the open form of the N-terminal half-molecule of human transferrin.

作者信息

Jeffrey P D, Bewley M C, MacGillivray R T, Mason A B, Woodworth R C, Baker E N

机构信息

Department of Biochemistry, Massey University, Palmerston North, New Zealand.

出版信息

Biochemistry. 1998 Oct 6;37(40):13978-86. doi: 10.1021/bi9812064.

Abstract

Serum transferrin binds ferric ions in the bloodstream and transports them to cells, where they are released in a process involving receptor-mediated endocytosis. Iron release is believed to be pH dependent and is coupled with a large conformational change. To help define the steps in iron release, we have determined the three-dimensional structure of the iron-free (apo) form of the recombinant N-lobe half-molecule of human serum transferrin (ApoTfN) by X-ray crystallography. Two crystal forms were obtained, form 1 with four molecules in the asymmetric unit and form 2 with two molecules in the asymmetric unit. The structures of both forms were determined by molecular replacement and were refined at 2.2 and 3.2 A resolution, respectively. Final R-factors were 0.203 (free R = 0. 292) for form 1 and 0.217 (free R = 0.312) for form 2. All six copies of the ApoTfN structure are essentially identical. Comparison with the holo form (FeTfN) shows that a large rigid-body domain movement of 63 degrees has occurred in ApoTfN, to give an open binding cleft. The extent of domain opening is the same as in the N-lobe of human lactoferrin, showing that it depends on internal constraints that are conserved in both proteins, and that it is unaffected by the presence or absence of the C-lobe. Although the conformational change is primarily a rigid-body motion, several local adjustments occur. In particular, two iron ligands, Asp 63 and His 249, change conformation to form salt bridges, with Lys 296 and Glu 83, respectively, in the binding cleft of the apo protein. Both salt bridges would have to break for iron coordination to occur. Most importantly, the structure, determined at a pH (5.3) that is close to the pH of physiological iron release, indicates that protonation of His 249 is a key step in iron release.

摘要

血清转铁蛋白在血液中结合铁离子,并将其转运至细胞,在细胞中通过受体介导的内吞作用释放铁离子。铁的释放被认为依赖于pH值,并伴随着巨大的构象变化。为了帮助确定铁释放的步骤,我们通过X射线晶体学确定了重组人血清转铁蛋白N叶半分子的无铁(脱辅基)形式(ApoTfN)的三维结构。获得了两种晶体形式,形式1的不对称单元中有四个分子,形式2的不对称单元中有两个分子。两种形式的结构均通过分子置换确定,并分别在2.2 Å和3.2 Å分辨率下进行了精修。形式1的最终R因子为0.203(自由R = 0.292),形式2的最终R因子为0.217(自由R = 0.312)。ApoTfN结构的所有六个拷贝基本相同。与全铁形式(FeTfN)的比较表明,ApoTfN中发生了63度的大刚体结构域运动,形成了一个开放的结合裂隙。结构域开放的程度与人乳铁蛋白N叶中的相同,表明这取决于两种蛋白质中保守的内部限制,并且不受C叶存在与否的影响。尽管构象变化主要是刚体运动,但也发生了一些局部调整。特别是,两个铁配体天冬氨酸63和组氨酸249改变构象,分别与脱辅基蛋白结合裂隙中的赖氨酸296和谷氨酸83形成盐桥。两种盐桥都必须断裂才能发生铁配位。最重要的是,在接近生理铁释放pH值(5.3)时确定的结构表明,组氨酸249的质子化是铁释放的关键步骤。

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