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Publication : Receptor-Mediated ER Export of Lipoproteins Controls Lipid Homeostasis in Mice and Humans.

First Author  Wang X Year  2021
Journal  Cell Metab Volume  33
Issue  2 Pages  350-366.e7
PubMed ID  33186557 Mgi Jnum  J:302969
Mgi Id  MGI:6510370 Doi  10.1016/j.cmet.2020.10.020
Citation  Wang X, et al. (2021) Receptor-Mediated ER Export of Lipoproteins Controls Lipid Homeostasis in Mice and Humans. Cell Metab 33(2):350-366.e7
abstractText  Efficient delivery of specific cargos in vivo poses a major challenge to the secretory pathway, which shuttles products encoded by approximately 30% of the genome. Newly synthesized protein and lipid cargos embark on the secretory pathway via COPII-coated vesicles, assembled by the GTPase SAR1 on the endoplasmic reticulum (ER), but how lipid-carrying lipoproteins are distinguished from the general protein cargos in the ER and selectively secreted has not been clear. Here, we show that this process is quantitatively governed by the GTPase SAR1B and SURF4, a high-efficiency cargo receptor. While both genes are implicated in lipid regulation in humans, hepatic inactivation of either mouse Sar1b or Surf4 selectively depletes plasma lipids to near-zero and protects the mice from atherosclerosis. These findings show that the pairing between SURF4 and SAR1B synergistically operates a specialized, dosage-sensitive transport program for circulating lipids, while further suggesting a potential translation to treat atherosclerosis and related cardio-metabolic diseases.
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