Moore S A, Anderson B F, Groom C R, Haridas M, Baker E N
Department of Biochemistry, Massey University, Palmerston North, New Zealand.
J Mol Biol. 1997 Nov 28;274(2):222-36. doi: 10.1006/jmbi.1997.1386.
The three-dimensional structure of diferric bovine lactoferrin (bLf) has been determined by X-ray crystallography in order to investigate the factors that influence iron binding and release by transferrins. The structure was solved by molecular replacement, using the coordinates of diferric human lactoferrin (hLf) as a search model, and was refined with data to 2.8 A resolution by simulated annealing (X-PLOR) and restrained least squares (TNT). The final model comprises 5310 protein atoms (residues 5 to 689), 124 carbohydrate atoms (from ten monosaccharide units, in three glycan chains), 2 Fe3+, 2 CO32- and 50 water molecules. This model gives an R-factor of 0.232 for 21440 reflections in the resolution range 30.0 to 2.8 A. The folding of the bLf molecule is essentially the same as that of hLf, but bLf differs in the extent of closure of the two domains of each lobe, and in the relative orientations of the two lobes. Differences in domain closure are attributed to amino acid changes in the interface, and differences in lobe orientations to slightly altered packing of two hydrophobic patches between the lobes. Changed interdomain interactions may explain the lesser iron affinity of bLf, compared with hLf, and two lysine residues behind the N-lobe iron site of bLf offer new insights into the "dilysine trigger" mechanism proposed for iron release by transferrins. The bLf structure is also notable for several well-defined oligosaccharide units which demonstrate the structural factors that stabilise carbohydrate structure. One glycan chain, attached to Asn545, appears to contribute to interdomain interactions and may modulate iron release from the C-lobe.
为了研究影响转铁蛋白结合和释放铁的因素,通过X射线晶体学确定了二价铁牛乳铁蛋白(bLf)的三维结构。该结构通过分子置换法解析,使用二价铁人乳铁蛋白(hLf)的坐标作为搜索模型,并通过模拟退火(X-PLOR)和约束最小二乘法(TNT)将数据精修至2.8 Å分辨率。最终模型包含5310个蛋白质原子(残基5至689)、124个碳水化合物原子(来自三个聚糖链中的十个单糖单元)、2个Fe3+、2个CO32-和50个水分子。对于分辨率范围在30.0至2.8 Å的21440个反射,该模型的R因子为0.232。bLf分子的折叠与hLf基本相同,但bLf在每个叶的两个结构域的闭合程度以及两个叶的相对取向上有所不同。结构域闭合的差异归因于界面处的氨基酸变化,叶取向的差异归因于叶之间两个疏水斑块的堆积略有改变。与hLf相比,结构域间相互作用的改变可能解释了bLf较低的铁亲和力,并且bLf的N叶铁位点后面的两个赖氨酸残基为转铁蛋白释放铁所提出的“双赖氨酸触发”机制提供了新的见解。bLf结构还因几个明确的寡糖单元而值得注意,这些单元展示了稳定碳水化合物结构的结构因素。连接到Asn545的一条聚糖链似乎有助于结构域间相互作用,并可能调节铁从C叶的释放。