Mechanisms
Novel CETP inhibitor K-312 lowers PCSK9 through a CETP-independent SREBP mechanism (Am J Physiol Endocrinol Metab 2015)
Original title: New CETP inhibitor K-312 reduces PCSK9 expression: a potential effect on LDL cholesterol metabolism
Researchers identified K-312, a novel cholesteryl ester transfer protein (CETP) inhibitor that raises HDL and lowers LDL cholesterol in animals, and investigated how it also suppresses hepatocyte expression of PCSK9, a protein that raises LDL cholesterol. K-312 inhibited human plasma CETP activity in vitro (IC50, 0.06 uM), and 18 weeks of treatment in cholesterol-fed rabbits raised HDL cholesterol, lowered LDL cholesterol, and attenuated aortic atherosclerosis. In human hepatocytes and HepG2 cells, K-312 decreased PCSK9 expression, and siRNA silencing of CETP did not block this suppression, indicating a CETP-independent mechanism. K-312 reduced the active forms of SREBP-1 and SREBP-2 and their occupancy on the sterol regulatory element of the PCSK9 promoter, and lowered circulating PCSK9 protein in cholesterol-fed rabbits, identifying K-312 as a dual-mechanism candidate for dyslipidemia and cardiovascular disease.
Original abstract
Despite significant reduction of cardiovascular events by statin treatment, substantial residual risk persists, driving emerging needs for the development of new therapies. We identified a novel cholesteryl ester transfer protein (CETP) inhibitor, K-312, that raises HDL and lowers LDL cholesterol levels in animals. K-312 also suppresses hepatocyte expression of proprotein convertase subtilisin/kexin 9 (PCSK9), a molecule that increases LDL cholesterol. We explored the underlying mechanism for the reduction of PCSK9 expression by K-312. K-312 inhibited in vitro human plasma CETP activity (IC50; 0.06 μM). Administration of K-312 to cholesterol-fed New Zealand White rabbits for 18 wk raised HDL cholesterol, decreased LDL cholesterol, and attenuated aortic atherosclerosis. Our search for additional beneficial characteristics of this compound revealed that K-312 decreases PCSK9 expression in human primary hepatocytes and in the human hepatoma cell line HepG2. siRNA silencing of CETP in HepG2 did not compromise the suppression of PCSK9 by K-312, suggesting a mechanism independent of CETP. In HepG2 cells, K-312 treatment decreased the active forms of sterol regulatory element-binding proteins (SREBP-1 and -2) that regulate promoter activity of PCSK9. Chromatin immunoprecipitation assays demonstrated that K-312 decreased the occupancy of SREBP-1 and SREBP-2 on the sterol regulatory element of the PCSK9 promoter. PCSK9 protein levels decreased by K-312 treatment in the circulating blood of cholesterol-fed rabbits, as determined by two independent mass spectrometry approaches, including the recently developed, highly sensitive parallel reaction monitoring method. New CETP inhibitor K-312 decreases LDL cholesterol and PCSK9 levels, serving as a new therapy for dyslipidemia and cardiovascular disease.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.