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A Highlights from MBoC Selection: Kinetic analysis of transcellular passage of the cobalamin–transcobalamin complex in Caco-2 monolayers

机译:MBoC选择的亮点:钴胺素-反钴胺素复合物在Caco-2单层中的跨细胞传代动力学分析

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We suggest a novel kinetic approach to quantifying receptor–ligand interactions via the cellular transport and/or accumulation of the ligand. The system of cobalamin (Cbl, vitamin B12) transport was used as a model, because Cbl is an obligatory cofactor, taken up by animal cells with the help of a transport protein and a membrane receptor. Bovine transcobalamin (bTC) stimulated the cellular accumulation and transcytosis of radioactive [sup57/supCo]Cbl in polarized monolayers of Caco-2 cells. The bovine protein was much more efficient than human TC. The transport was inhibited in a dose-dependent manner by the unlabeled bTC-Cbl complex, the ligand-free bTC, and the receptor-associated protein (RAP). This inhibition pattern implied the presence of a megalin-like receptor. Quantitative assessment of kinetic records by the suggested method revealed the apparent concentration of receptors in vitro (≈15 nM), as well as the dissociation constants of bTC–Cbl ( K subd/sub = 13 nM) and RAP ( K subd/sub = 1.3 nM). The data were used to estimate the effective luminal concentrations of TC-specific receptors in kidneys (3.8 μM) and intestine (50 nM), the tissues resembling polarized Caco-2 cells.
机译:我们提出了一种新颖的动力学方法,通过细胞的运输和/或配体的积累来定量受体-配体的相互作用。钴胺素(Cbl,维生素B12)的运输系统被用作模型,因为Cbl是必需的辅因子,在运输蛋白和膜受体的帮助下被动物细胞吸收。牛跨钴胺素(bTC)刺激Caco-2细胞极化单层中放射性[ 57 Co] Cbl的细胞蓄积和胞吞作用。牛蛋白比人TC更有效。未标记的bTC-Cbl复合物,无配体的bTC和受体相关蛋白(RAP)以剂量依赖的方式抑制运输。这种抑制模式暗示了巨蛋白样受体的存在。通过所建议的方法对动力学记录进行定量评估,发现体外表观受体浓度(≈15nM)以及bTC–Cbl(K d = 13 nM)和RAP( K d = 1.3 nM)。该数据用于估计肾脏(3.8μM)和肠(50 nM)(类似于极化的Caco-2细胞的组织)中TC特异性受体的有效腔内浓度。

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