17β-Estradiol Inhibits PCSK9-Mediated LDLR Degradation Through GPER/PLC Activation in HepG2 Cells

Wei Fu1, Xiao-Ping Gao2, Sheng Zhang1

  • 1Department of Physiology, West China School of Basic Medical and Forensic Medicine, Sichuan University, Chengdu, China.

Frontiers in Endocrinology
|February 22, 2020
PubMed

Insights

Estrogen, specifically 17β-estradiol, reduces the degradation of LDL receptors by PCSK9 in liver cells. This effect is mediated by the G protein-coupled estrogen receptor (GPER), potentially impacting cholesterol levels.

Area of Science:

  • Biochemistry
  • Endocrinology
  • Cell Biology

Background:

  • Plasma levels of PCSK9 are elevated in postmenopausal women.
  • Estrogen administration lowers PCSK9 and LDL-C, suggesting a protective role against PCSK9-mediated low-density lipoprotein receptor (LDLR) degradation.

Purpose of the Study:

  • To elucidate the mechanism by which estrogen regulates PCSK9-mediated LDLR degradation.
  • To investigate the role of the G protein-coupled estrogen receptor (GPER) in this process.

Main Methods:

  • Utilized cultured HepG2 cells to study the effects of 17β-estradiol (βE2) on PCSK9 and LDLR interactions.
  • Employed GPER antagonist G15 to confirm the receptor's involvement.
  • Monitored PCSK9 internalization, LDLR levels, LDL uptake, clathrin recruitment, PLCγ activation, and intracellular Ca2+ release.

Main Results:

  • βE2 inhibited PCSK9 internalization and subsequent LDLR degradation in HepG2 cells.
  • This inhibition led to increased LDL uptake, dependent on PCSK9 presence.
  • βE2 blocked PCSK9-induced clathrin recruitment and enhanced PLCγ activation and Ca2+ release, indicating rapid signaling via GPER.

Conclusions:

  • Estrogen (βE2) prevents PCSK9-dependent LDLR degradation through GPER activation.
  • GPER activation by estrogen influences intracellular signaling pathways, including clathrin-mediated endocytosis.
  • Estrogen's regulation of LDLR levels via GPER offers a potential therapeutic target for managing cholesterol metabolism.