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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Detailed molecular dynamics simulations of human transferrin provide insights into iron release dynamics at serum and endosomal pH
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Detailed molecular dynamics simulations of human transferrin provide insights into iron release dynamics at serum and endosomal pH

机译:人类转铁蛋白的详细分子动力学模拟提供了有关血清和内体pH值下铁释放动力学的见解

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Human serum transferrin (hTf) transports ferric ions in the blood stream and delivers them to cells via receptor-mediated endocytosis. hTf is folded into two homologous lobes; we utilize three of the available crystal structures delineating large conformational changes involved in iron binding/dissociation. We address the problems of whether the release process follows the same trend at serum (7.4) and endosomal (5.6) pH, and if there is communication between the lobes. In the absence of the transferrin receptor, we study the dynamics of the full structure as well as the separate lobes in different closed, partially open, and open conformations under neutral and endosomal pH conditions. Results corroborate those experimental observations underscoring the distinguishing effect of pH on the dynamics of hTf. Furthermore, in a total of 2 mu s molecular dynamics simulations, residue fluctuations elucidate the cross talk between the lobes correlated by the peptide linker bridging them at serum pH, while their correlations are lost under endosomal conditions. At serum pH, interplay between relative mobility of the lobes is correlated with iron release rates, rendering the initial conformational change an important contributor to the dynamics under these conditions. Interestingly, C-lobe opening lags behind that of the N-lobe as long as there is at least one iron bound, making the more stable C-lobe an attractive target for recognition by receptors. At endosomal pH, both lobes readily open, making irons available for delivery.
机译:人血清转铁蛋白(hTf)在血流中转运铁离子,并通过受体介导的内吞作用将其传递至细胞。 hTf被折叠成两个同源叶;我们利用三个可用的晶体结构来描述铁结合/解离中涉及的大构象变化。我们解决了以下问题:在血清(7.4)和内体(5.6)pH下释放过程是否遵循相同的趋势,以及叶之间是否存在连通。在没有运铁蛋白受体的情况下,我们研究了在中性和内体pH条件下,不同封闭,部分开放和开放构象下完整结构以及独立叶的动力学。结果证实了那些实验性观察,强调了pH对hTf动力学的区别作用。此外,在总共2μs的分子动力学模拟中,残留物波动阐明了在肽段连接子在血清pH下桥接它们之间相关的叶之间的串扰,而在内体条件下它们之间的相关性却消失了。在血清pH值下,叶的相对迁移率之间的相互作用与铁释放速率相关,从而使初始构象变化成为这些条件下动力学的重要因素。有趣的是,只要有至少一个铁结合,C瓣的开放就滞后于N瓣的开放,这使得更稳定的C瓣成为吸引受体识别的目标。在内体pH值下,两个叶都容易张开,从而使铁可用于递送。

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