Department of Biochemistry and Pharmacology and Bio21 Molecular Science and Biotechnology Institute.
Institute of Experimental Immunology, University of Bonn, Venusberg Campus, D-53127, Germany.
Mol Biol Cell. 2022 Jan 1;33(1):ar6. doi: 10.1091/mbc.E21-02-0061. Epub 2021 Nov 3.
The neonatal Fc receptor (FcRn) is responsible for the recycling of endocytosed albumin and IgG, and contributes to their long plasma half-life. We recently identified an FcRn-dependent recycling pathway from macropinosomes in macrophages; however, little is known about the dynamics of intracellular FcRn-ligand interactions to promote recycling. Here we demonstrate a multiplexed biophysical fluorescent microscopy approach to resolve the spatiotemporal dynamics of albumin-FcRn interactions in living bone marrow-derived macrophages (BMDMs). We used the phasor approach to fluorescence lifetime imaging microscopy (FLIM) of Förster resonance energy transfer (FRET) to detect the interaction of a FcRn-mCherry fusion protein with endocytosed Alexa Fluor 488-labeled human serum albumin (HSA-AF488) in BMDMs, and raster image correlation spectroscopy (RICS) analysis of single fluorescent-labeled albumin molecules to monitor the diffusion kinetics of internalized albumin. Our data identified a major fraction of immobile HSA-AF488 molecules in endosomal structures of human FcRn-positive mouse macrophages and an increase in FLIM-FRET following endocytosis, including detection of FRET in tubular-like structures. A nonbinding mutant of albumin showed minimum FLIM-FRET and high mobility. These data reveal the kinetics of FcRn-ligand binding within endosomal structures for recruitment into transport carriers for recycling. These approaches have wide applicability for analyses of intracellular ligand-receptor interactions.
新生儿 Fc 受体 (FcRn) 负责内吞的白蛋白和 IgG 的再循环,这有助于它们的长血浆半衰期。我们最近在巨噬细胞中鉴定了一种依赖于 FcRn 的从巨胞饮体的再循环途径;然而,对于促进再循环的细胞内 FcRn-配体相互作用的动力学知之甚少。在这里,我们展示了一种多重生物物理荧光显微镜方法,以解析活骨髓来源巨噬细胞 (BMDM) 中白蛋白-FcRn 相互作用的时空动力学。我们使用荧光寿命成像显微镜 (FLIM) 的相位方法检测了 FcRn-mCherry 融合蛋白与 BMDM 中内吞的 Alexa Fluor 488 标记的人血清白蛋白 (HSA-AF488) 的相互作用,并用单荧光标记的白蛋白分子的光栅图像相关光谱 (RICS) 分析来监测内化白蛋白的扩散动力学。我们的数据在人 FcRn 阳性的小鼠巨噬细胞的内体结构中鉴定了大量的不可移动的 HSA-AF488 分子,并且在包括检测管状结构中的 FRET 在内的内吞后,FLIM-FRET 增加。白蛋白的非结合突变体显示出最小的 FLIM-FRET 和高流动性。这些数据揭示了内体结构中 FcRn-配体结合的动力学,以招募到用于再循环的转运载体。这些方法广泛适用于细胞内配体-受体相互作用的分析。