PCSK9 Dominant Negative Mutant Results in Increased LDL Catabolic Rate and Familial Hypobetalipoproteinemia

Author:

Cariou Bertrand1,Ouguerram Khadija1,Zaïr Yassine1,Guerois Raphael1,Langhi Cédric1,Kourimate Sanae1,Benoit Isabelle1,Le May Cédric1,Gayet Constance1,Belabbas Khaldia1,Dufernez Fabienne1,Chétiveaux Maud1,Tarugi Patrizia1,Krempf Michel1,Benlian Pascale1,Costet Philippe1

Affiliation:

1. From INSERM, U915 (B.C., K.O., Y.Z., C.L., S.K., I.B., C.L.M., C.G., M.C., M.K., P.C.), Nantes F-44000, France; Université de Nantes, Faculté de Médecine, l’Institut du Thorax (B.C., K.O., Y.Z., C.L., S.K., I.B., M.C., M.K.), Nantes, France; Clinique d’Endocrinologie, Maladies Métaboliques et Nutrition, l’Institut du Thorax (B.C., Y.Z., M.K., P.C.), Nantes F-44000, France; Laboratoire de Biologie Structurale et Radiobiologie, iBiTec-S (R.G.), CEA, Gif sur Yvette, France; APHP, Hôpital Saint...

Abstract

Objective— Proprotein convertase subtilisin/kexin type 9 (PCSK9) is a central player in the regulation of cholesterol homeostasis, increasing the low-density lipoprotein (LDL) receptor degradation. Our study aimed at exploring the pathogenic consequences in vivo and in vitro of a PCSK9 prodomain mutation found in a family with hypobetalipoproteinemia (FHBL). Methods and Results— A white 49-year-old diabetic man had profound FBHL (LDLC: 16 mg/dL) whereas his daughter and sister displayed a milder phenotype (LDLC 44 mg/dL and 57 mg/dL, respectively), all otherwise healthy with a normal liver function. A monoallelic PCSK9 double-mutant R104C/V114A cosegregated with FBHL, with no mutation found at other FHBL-causing loci. A dose-effect was also found in FBHL relatives for plasma APOB and PCSK9 (very-low to undetectable in proband, ≈50% decreased in sister and daughter) and LDL catabolic rate (256% and 88% increased in proband and daughter). Transient transfection in hepatocytes showed severely impaired processing and secretion of the double mutant which acted as a dominant negative over secretion of wild-type PCSK9. Conclusion— These results show that heterozygous PCSK9 missense mutations may associate with profound hypobetalipoproteinemia and constitute the first direct evidence in human that decrease of plasma LDLC concentrations associated to PCSK9 LOF mutations are attributable to an increased clearance rate of LDL.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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