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How the binding of human transferrin primes the transferrin receptor potentiating iron release at endosomal pH

机译:人转铁蛋白的结合如何在内体pH值引发铁蛋白受体增强铁释放

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摘要

Delivery of iron to cells requires binding of two iron-containing human transferrin (hTF) molecules to the specific homodimeric transferrin receptor (TFR) on the cell surface. Through receptor-mediated endocytosis involving lower pH, salt, and an unidentified chelator, iron is rapidly released from hTF within the endosome. The crystal structure of a monoferric N-lobe hTF/TFR complex (3.22-Å resolution) features two binding motifs in the N lobe and one in the C lobe of hTF. Binding of FeNhTF induces global and site-specific conformational changes within the TFR ectodomain. Specifically, movements at the TFR dimer interface appear to prime the TFR to undergo pH-induced movements that alter the hTF/TFR interaction. Iron release from each lobe then occurs by distinctly different mechanisms: Binding of His349 to the TFR (strengthened by protonation at low pH) controls iron release from the C lobe, whereas displacement of one N-lobe binding motif, in concert with the action of the dilysine trigger, elicits iron release from the N lobe. One binding motif in each lobe remains attached to the same α-helix in the TFR throughout the endocytic cycle. Collectively, the structure elucidates how the TFR accelerates iron release from the C lobe, slows it from the N lobe, and stabilizes binding of apohTF for return to the cell surface. Importantly, this structure provides new targets for mutagenesis studies to further understand and define this system.
机译:铁向细胞的递送需要两个含铁的人类运铁蛋白(hTF)分子与细胞表面上的特定同二聚运铁蛋白受体(TFR)结合。通过受体介导的内吞作用,其中涉及较低的pH值,盐和未知的螯合剂,铁会从hTF中快速释放出来。单铁的N瓣hTF / TFR复合物的晶体结构(分辨率为3.22-1 / 3)在hTF的N瓣中具有两个结合基序,在C瓣中具有一个结合基序。 FeNhTF的结合诱导TFR胞外域内的全局和特定位置的构象变化。具体而言,TFR二聚体界面处的运动似乎使TFR引发了pH诱导的运动,从而改变了hTF / TFR的相互作用。然后,铁从各叶的释放通过不同的机制发生:His349与TFR的结合(在低pH下通过质子化作用增强)控制着铁从C叶的释放,而一个N瓣结合基序的置换与C的作用协同作用。二赖氨酸触发器,引起铁从N瓣释放。在整个内吞循环中,每个叶中的一个结合基序保持与TFR中相同的α-螺旋连接。总体而言,该结构阐明了TFR如何促进铁从C瓣释放,减慢从N瓣释放铁的速度,并稳定apohTF的结合以返回细胞表面。重要的是,该结构为诱变研究提供了新的靶标,以进一步了解和定义该系统。

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