Department of Biochemistry, University of Vermont College of Medicine, 89 Beaumont Avenue, Burlington, Vermont 05405, USA.
Biochemistry. 2010 May 18;49(19):4200-7. doi: 10.1021/bi1003519.
Human serum transferrin (hTF) binds two ferric iron ions which are delivered to cells in a transferrin receptor (TFR) mediated process. Critical to the delivery of iron to cells is the binding of hTF to the TFR and the efficient release of iron orchestrated by the interaction. Within the endosome, iron release from hTF is also aided by lower pH, the presence of anions, and a chelator yet to be identified. We have recently shown that three of the four residues comprising a loop in the N-lobe (Pro142, Lys144, and Pro145) are critical to the high-affinity interaction of hTF with the TFR. In contrast, Arg143 in this loop does not participate in the binding isotherm. In the current study, the kinetics of iron release from alanine mutants of each of these four residues (placed into both diferric and monoferric N-lobe backgrounds) have been determined +/- the TFR. The R143A mutation greatly retards the rate of iron release from the N-lobe in the absence of the TFR but has considerably less of an effect in its presence. Our data definitively show that Arg143 serves as a kinetically significant anion binding (KISAB) site that is, by definition, sensitive to salt concentration and critical to the conformational change necessary to induce iron release from the N-lobe of hTF (in the absence of the TFR). This is the first identification of an authentic KISAB site in the N-lobe of hTF. The effect of the single R143A mutation on the kinetic profile of iron release provides a dramatic illustration of the dynamic nature of hTF.
人血清转铁蛋白 (hTF) 结合两个三价铁离子,这些离子通过转铁蛋白受体 (TFR) 介导的过程被递送到细胞中。将铁递送到细胞中的关键是 hTF 与 TFR 的结合以及由相互作用协调的铁的有效释放。在内涵体中,铁从 hTF 中的释放也受到低 pH 值、阴离子的存在以及尚未确定的螯合剂的帮助。我们最近表明,构成 N 结构域环的四个残基中的三个(Pro142、Lys144 和 Pro145)对于 hTF 与 TFR 的高亲和力相互作用至关重要。相比之下,该环中的 Arg143 不参与结合等温线。在当前的研究中,已经确定了这些残基中的每一个(放置在双铁和单铁 N 结构域背景中)的丙氨酸突变体从铁中的释放动力学+/ - TFR。在没有 TFR 的情况下,R143A 突变极大地减缓了 N 结构域中铁的释放速率,但在存在 TFR 的情况下,其影响要小得多。我们的数据明确表明,Arg143 作为动力学上重要的阴离子结合 (KISAB) 位点,根据定义,该位点对盐浓度敏感,并且对诱导 hTF N 结构域中铁释放所必需的构象变化至关重要(在没有 TFR 的情况下)。这是 hTF N 结构域中第一个真正的 KISAB 位点的鉴定。单个 R143A 突变对铁释放动力学谱的影响生动地说明了 hTF 的动态性质。