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首页> 外文期刊>The Journal of biological chemistry >Dissection of the Neonatal Fc Receptor (FcRn)-Albumin Interface Using Mutagenesis and Anti-FcRn Albumin-blocking Antibodies
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Dissection of the Neonatal Fc Receptor (FcRn)-Albumin Interface Using Mutagenesis and Anti-FcRn Albumin-blocking Antibodies

机译:使用诱变和抗FCRN白蛋白阻断抗体解剖新生儿FC受体(FCRN)-Almumin界面

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Albumin is the most abundant protein in blood and plays a pivotal role as a multitransporter of a wide range of molecules such as fatty acids, metabolites, hormones, and toxins. In addition, it binds a variety of drugs. Its role as distributor is supported by its extraordinary serum half-life of 3 weeks. This is related to its size and binding to the cellular receptor FcRn, which rescues albumin from intracellular degradation. Furthermore, the long half-life has fostered a great and increasing interest in utilization of albumin as a carrier of protein therapeutics and chemical drugs. However, to fully understand how FcRn acts as a regulator of albumin homeostasis and to take advantage of the FcRn-albumin interaction in drug design, the interaction interface needs to be dissected. Here, we used a panel of monoclonal antibodies directed towards human FcRn in combination with site-directed mutagenesis and structural modeling to unmask the binding sites for albumin blocking antibodies and albumin on the receptor, which revealed that the interaction is not only strictly pH-dependent, but predominantly hydrophobic in nature. Specifically, we provide mechanistic evidence for a crucial role of a cluster of conserved tryptophan residues that expose a pH-sensitive loop of FcRn, and identify structural differences in proximity to these hot spot residues that explain divergent cross-species binding properties of FcRn. Our findings expand our knowledge of how FcRn is controlling albumin homeostasis at a molecular level, which will guide design and engineering of novel albumin variants with altered transport properties.
机译:白蛋白是血液中最丰富的蛋白质,并在多种分子如脂肪酸,代谢物,激素和毒素中起着枢转作用。此外,它还结合各种药物。它作为经销商的作用是其特殊血清半衰期的支持3周。这与其尺寸和与细胞受体FCRN的结合有关,其拯救白蛋白从细胞内降解。此外,漫长的半衰期促进了对白蛋白利用作为蛋白质治疗药和化学药物的载体的兴趣。然而,为了充分了解FCRN如何充当白蛋白稳态和利用药物设计中的FCRN-白蛋白相互作用,需要解剖相互作用界面。在这里,我们使用一组朝向人FCRN的单克隆抗体组合,与点定向诱变和结构建模联合,以取代白蛋白阻断抗体和白蛋白在受体上的结合位点,这表明相互作用不仅严格pH依赖性,但主要是疏水性。具体而言,我们提供了一种露出FCRn的pH敏感回路的保守色氨酸残基集群的重要作用,并鉴定对这些热点残留物的邻近的结构差异,该残留物解释了FCRN的发散性交叉物质的结合性质。我们的研究结果展开了我们对分子水平控制白蛋白稳态的知识,这将引导新的白蛋白变体的设计和工程,具有改变的运输性能。

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