Zak Olga, Aisen Philip
Department of Physiology and Biophysics, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.
Biochemistry. 2003 Oct 28;42(42):12330-4. doi: 10.1021/bi034991f.
Human transferrin, like other members of the transferrin class of iron-binding proteins, is a bilobal structure, the product of duplication and fusion of an ancestral gene during the course of biochemical evolution. Although the two lobes exhibit 45% sequence identity and identical ligand structures of their iron-binding sites (one in each lobe), they differ in their iron-binding properties and their responsiveness to complex formation with the transferrin receptor. A variety of interlobe interactions modulating these iron-binding functions has been described. We have now studied the kinetics of iron release to pyrophosphate from the isolated recombinant C-lobe and from that lobe in the intact protein, each free and bound to receptor. The striking finding is that the rates of iron release at the pH of the endosome to which transferrin is internalized by the iron-dependent cell are similar in the free proteins but 18 times faster from full-length monoferric transferrin selectively loaded with iron in the C-lobe than from isolated C-lobe when each is complexed to the receptor. The possibility that the faster release in the receptor complex of the full-length protein at endosomal pH contributes to the evolutionary advantage of the bilobal structure is considered.
人转铁蛋白与转铁蛋白类铁结合蛋白的其他成员一样,是一种双叶结构,是生物化学进化过程中一个祖先基因重复和融合的产物。尽管两个叶的序列同一性为45%,且其铁结合位点(每个叶一个)的配体结构相同,但它们在铁结合特性以及与转铁蛋白受体形成复合物的反应性方面存在差异。已经描述了多种调节这些铁结合功能的叶间相互作用。我们现在研究了从分离的重组C叶以及完整蛋白质中的该叶向焦磷酸释放铁的动力学,每种情况均为游离态以及与受体结合态。一个显著的发现是,在转铁蛋白通过铁依赖性细胞内化至其内体的pH值下,游离蛋白质中铁释放的速率相似,但当全长单铁转铁蛋白在C叶中选择性地负载铁并与受体复合时,其铁释放速率比分离的C叶快18倍。我们考虑了在内体pH值下全长蛋白质与受体复合物中铁释放更快这一情况是否有助于双叶结构的进化优势。