Synthesis of heterocyclic ring-fused analogs of HMG499 as novel degraders of HMG-CoA reductase that lower cholesterol

化学 还原酶 HMG-CoA还原酶 他汀类 胆固醇 泛素 皮塔伐他汀 生物化学 生物合成 基因
作者
Xing-Zi Li,Shi‐You Jiang,Guoqiang Li,Qian-Ru Jiang,Juewan Li,Chenchen Li,Yu-Qin Han,Bao‐Liang Song,Xinran Ma,Wei Qi,Wen‐Wei Qiu
出处
期刊:European journal of medicinal chemistry [Elsevier BV]
卷期号:236: 114323-114323 被引量:18
标识
DOI:10.1016/j.ejmech.2022.114323
摘要

HMG-CoA reductase (HMGCR) is the rate-limiting enzyme in cholesterol de novo biosynthesis and its degradation may bring therapeutic benefits for the treatment of cardiovascular disease (CVD) and nonalcoholic steatohepatitis (NASH). Before, we disclosed compound HMG499 as a potent HMGCR degrader, which could be a promising agent for treating CVD, however its side-effect of promoting cholesterol accumulation in cells should be eliminated before progression. Herein, a series of novel heterocyclic ring-fused analogs of HMG499 were synthesized and investigated for their activities of stimulating HMGCR degradation using a HMGCR (TM1-8)-GFP reporting system. Among them, the most active compound 29 (QH536) showed an EC50 of 0.22 μΜ in promoting HMGCR degradation, which was about 2 times more potent than HMG499 (EC50 = 0.43 μM). Interestingly, 29 was different from HMG499, it had no side-effect of inducing cholesterol accumulation in cells. Mechanistic studies disclosed that 29 could significantly decrease statin-induced accumulation of HMGCR protein via ubiquitination and degradation of HMGCR through ubiquitin-proteasome pathway and inhibit the cholesterol biosynthesis in cells. Therefore, these heterocyclic ring-fused analogs could be used as promising leads for the development of new types of agents against CVD. Furthermore, 29 also lowered cholesterol levels and suppressed TGFβ1-induced proliferation of LX-2 hepatic stellate cells in a dose-dependent manner. In particular, 29 not only decreased the NASH associated fibrotic mRNA and protein expression of α-SMA, COL1A1, TIMP1 and TGFβ1 but also suppressed cholesterol levels and inflammatory genes of TNF-α, IL-6 an IL-1β in RAW264.7 macrophage cells, indicating that 29 may bring therapeutic benefit to treat NASH.
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