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September 10, 2004Journal of Biological Chemistry629 citationsOpen Access

NARC-1/PCSK9 and Its Natural Mutants

SBSuzanne BenjannetDRDavid RhaindsRERachid Essalmani

Key Points

  • To investigate the role of NARC-1/PCSK9 mutations in LDL metabolism and receptor processing.
  • Examined the effects of specific PCSK9 mutations on zymogen processing in cell lines.
  • Measured LDL receptor levels in lymphoblasts and HepG2 cells overexpressing NARC-1 or its mutants.
  • Utilized adenoviral expression to assess changes in circulating LDL cholesterol in mice.
  • The S127R and D374Y mutations caused a 50-60% and ≥98% reduction in zymogen processing, respectively.
  • S127R patients exhibited a 35% decrease in LDL receptor levels, confirmed by overexpression studies.
  • Adenoviral expression of wild type NARC-1 led to a 9-fold increase in circulating LDL cholesterol.

Abstract

The discovery of autosomal dominant hypercholesterolemic patients with mutations in the PCSK9 gene, encoding the proprotein convertase NARC-1, resulting in the missense mutations suggested a role in low density lipoprotein (LDL) metabolism. We show that the endoplasmic reticulum-localized proNARC-1 to NARC-1 zymogen conversion is Ca2+-independent and that within the zymogen autocatalytic processing site SSVFAQ downward arrowSIP Val at P4 and Pro at P3' are critical. The S127R and D374Y mutations result in approximately 50-60% and > or =98% decrease in zymogen processing, respectively. In contrast, the double D374Y + N157K, F216L, and R218S natural mutants resulted in normal zymogen processing. The cell surface LDL receptor (LDLR) levels are reduced by 35% in lymphoblasts of S127R patients. The LDLR levels are also reduced in stable HepG2 cells overexpressing NARC-1 or its natural mutant S127R, and this reduction is abrogated in the presence of 5 mm ammonium chloride, suggesting that overexpression of NARC-1 increases the turnover rate of the LDLR. Adenoviral expression of wild type human NARC-1 in mice resulted in a maximal approximately 9-fold increase in circulating LDL cholesterol, while in LDLR-/- mice a delayed approximately 2-fold increase in LDL cholesterol was observed. In conclusion, NARC-1 seems to affect both the level of LDLR and that of circulating apoB-containing lipoproteins in an LDLR-dependent and -independent fashion.

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Cite This Study

Benjannet et al. (2004) studied this question.

synapsesocial.com/papers/6a0ee75e25c30b2cc7f9e7f1https://doi.org/10.1074/jbc.m409699200
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