Receptor-Mediated Cellular Uptake Mechanism That Couples to Intracellular Storage

细胞内 细胞生物学 转运蛋白 膜转运 生物化学 化学 受体 细胞膜 生物
作者
Riki Kawaguchi,Jiamei Yu,Mariam Ter-Stepanian,Ming Zhong,Guo Cheng,Quan Yuan,Minghao Jin,Gabriel H. Travis,David E. Ong,Hui Sun
出处
期刊:ACS Chemical Biology [American Chemical Society]
卷期号:6 (10): 1041-1051 被引量:84
标识
DOI:10.1021/cb200178w
摘要

Cells are known to take up molecules through membrane transport mechanisms such as active transport, channels, and facilitated transport. We report here a new membrane transport mechanism that employs neither cellular energy like active transport nor a preexisting electrochemical gradient of the free substrate like channels or facilitated transport. Through this mechanism, cells take up vitamin A bound with high affinity to retinol binding protein (RBP) in the blood. This mechanism is mediated by the RBP receptor STRA6, which defines a new type of cell-surface receptor. STRA6 is essential for the proper functioning of multiple human organs, but the mechanisms that enable and control its cellular vitamin A uptake activity are unknown. We found that STRA6-mediated vitamin A uptake is tightly coupled to specific intracellular retinoid storage proteins, but no single intracellular protein is absolutely required for its transport activity. By developing sensitive real-time monitoring techniques, we found that STRA6 is not only a membrane receptor but also catalyzes vitamin A release from RBP. However, vitamin A released from RBP by STRA6 inhibits further vitamin A release by STRA6 unless specific intracellular retinoid storage proteins relieve this inhibition. This mechanism is responsible for its coupling to intracellular storage proteins. The coupling of uptake to storage provides high specificity in cellular uptake of vitamin A and prevents the excessive accumulation of free vitamin A. We have also identified a robust small-molecule-based technique to specifically stimulate cellular vitamin A uptake. This technique has implications in treating human diseases.

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