Chemistry Department, University of Massachusetts, Amherst, MA 01003, USA.
Proc Natl Acad Sci U S A. 2010 May 4;107(18):8123-8. doi: 10.1073/pnas.0914898107. Epub 2010 Apr 19.
The primary route of iron acquisition in vertebrates is the transferrin receptor (TfR) mediated endocytotic pathway, which provides cellular entry to the metal transporter serum transferrin (Tf). Despite extensive research efforts, complete understanding of Tf-TfR interaction mechanism is still lacking owing to the complexity of this system. Electrospray ionization mass spectrometry (ESI MS) is used in this study to monitor the protein/receptor interaction and demonstrate the ability of metal-free Tf to associate with TfR at neutral pH. A set of Tf variants is used in a series of competition and displacement experiments to bracket TfR affinity of apo-Tf at neutral pH (0.2-0.6 microM). Consistent with current models of endosomal iron release from Tf, acidification of the protein solution results in a dramatic change of binding preferences, with apo-Tf becoming a preferred receptor binder. Contrary to the current models implying that the apo-Tf/TfR complex dissociates almost immediately upon exposure to the neutral environment at the cell surface, our data indicate that this complex remains intact. Iron-loaded Tf displaces apo-Tf from TfR, making it available for the next cycle of iron binding, transport and delivery to tissues. However, apo-Tf may still interfere with the cellular uptake of engineered Tf molecules whose TfR affinity is affected by various modifications (e.g., conjugation to cytotoxic molecules). This work also highlights the great potential of ESI MS as a tool capable of providing precise details of complex protein-receptor interactions under conditions that closely mimic the environment in which these encounters occur in physiological systems.
脊椎动物铁吸收的主要途径是转铁蛋白受体(TfR)介导的内吞途径,该途径为金属转运蛋白血清转铁蛋白(Tf)提供了细胞内进入途径。尽管进行了广泛的研究,但由于该系统的复杂性,仍然缺乏对 Tf-TfR 相互作用机制的全面了解。本研究采用电喷雾电离质谱(ESI MS)监测蛋白/受体相互作用,并证明在中性 pH 值下无金属 Tf 能够与 TfR 结合。一系列竞争和置换实验中使用了一组 Tf 变体,以确定中性 pH 值(0.2-0.6 μM)下 apo-Tf 与 TfR 的亲和力。与从 Tf 中释放内体铁的当前模型一致,蛋白质溶液的酸化导致结合偏好发生剧烈变化,apo-Tf 成为首选的受体结合物。与当前模型暗示 apo-Tf/TfR 复合物在细胞表面暴露于中性环境时几乎立即解离相反,我们的数据表明该复合物保持完整。负载铁的 Tf 将 apo-Tf 从 TfR 上置换下来,使其可用于下一个铁结合、转运和递送到组织的循环。然而,apo-Tf 仍可能干扰 TfR 亲和力受各种修饰(例如与细胞毒性分子缀合)影响的工程 Tf 分子的细胞摄取。这项工作还强调了 ESI MS 作为一种工具的巨大潜力,该工具能够在非常接近生理系统中这些相互作用发生环境的条件下提供复杂蛋白-受体相互作用的精确细节。