首页> 外文期刊>Journal of Molecular Biology >Characterization of the interaction between diferric transferrin and transferrin receptor 2 by functional assays and atomic force microscopy.
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Characterization of the interaction between diferric transferrin and transferrin receptor 2 by functional assays and atomic force microscopy.

机译:通过功能测定和原子力显微镜表征二铁转铁蛋白和转铁蛋白受体2之间的相互作用。

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Transferrin receptor 2 (TfR2), a homologue of the classical transferrin receptor 1 (TfR1), is found in two isoforms, alpha and beta. Like TfR1, TfR2alpha is a type II membrane protein, but the beta form lacks transmembrane portions and therefore is likely to be an intracellular protein. To investigate the functional properties of TfR2alpha, we expressed the protein with FLAG tagging in transferrin-receptor-deficient Chinese hamster ovary cells. The association constant for the binding of diferric transferrin (Tf) to TfR2alpha is 5.6x10(6) M(-)(1), which is about 50 times lower than that for the binding of Tf to TfR1, with correspondingly reduced rates of iron uptake. Evidence for Tf internalization and recycling via TfR2alpha without degradation, as in the TfR1 pathway, was also found. The interaction of TfR2alpha with Tf was further investigated using atomic force microscopy, a powerful tool used for investigating the interaction between a ligand and its receptor at the single-molecule level on the living cell surface. Dynamic force microscopy reveals a difference in the interactions of Tf with TfR2alpha and TfR1, with Tf-TfR1 unbinding characterized by two energy barriers, while only one is present for Tf-TfR2. We speculate that this difference may reflect Tf binding to TfR2alpha by a single lobe, whereas two lobes of Tf participate in binding to TfR1. The difference in the binding properties of Tf to TfR1 and TfR2alpha may help account for the different physiological roles of the two receptors.
机译:转铁蛋白受体2(TfR2)是经典转铁蛋白受体1(TfR1)的同系物,存在两种同工型,即α和β。与TfR1一样,TfR2alpha是II型膜蛋白,但β形式缺少跨膜部分,因此很可能是细胞内蛋白。为了研究TfR2alpha的功能特性,我们在转铁蛋白受体缺陷的中国仓鼠卵巢细胞中表达了带有FLAG标签的蛋白。二铁转铁蛋白(Tf)与TfR2alpha结合的缔合常数为5.6x10(6)M(-)(1),比Tf与TfR1结合的缔合常数低约50倍,铁的比率相应降低摄取。还发现了Tf内化和通过TfR2alpha循环而不降解的证据,就像在TfR1途径中一样。使用原子力显微镜进一步研究了TfR2alpha与Tf的相互作用,这是一种功能强大的工具,用于研究活细胞表面上单分子水平上的配体与其受体之间的相互作用。动态力显微镜揭示了Tf与TfR2alpha和TfR1相互作用的差异,其中Tf-TfR1解除结合的特征是两个能垒,而Tf-TfR2仅存在一个。我们推测这种差异可能反映了Tf通过单个叶与TfR2alpha的结合,而Tf的两个叶参与了与TfR1的结合。 Tf与TfR1和TfR2alpha的结合特性的差异可能有助于解释这两种受体的不同生理作用。

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