Berberine is a novel cholesterol-lowering drug working through a unique mechanism distinct from statins

被引:0
|
作者
Weijia Kong
Jing Wei
Parveen Abidi
Meihong Lin
Satoru Inaba
Cong Li
Yanling Wang
Zizheng Wang
Shuyi Si
Huaining Pan
Shukui Wang
Jingdan Wu
Yue Wang
Zhuorong Li
Jingwen Liu
Jian-Dong Jiang
机构
[1] Institute of Medicinal Biotechnology,Division of Endocrinology and Laboratory of Molecular Medicine
[2] Chinese Academy of Medical Sciences,Department of Veterans Affairs Palo Alto Health Care System
[3] and Peking Union Medical College,Department of Medicine
[4] First Hospital of Nanjing City,undefined
[5] Nanjing Medical University,undefined
[6] Research Service,undefined
[7] Mount Sinai School of Medicine,undefined
来源
Nature Medicine | 2004年 / 10卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
We identify berberine (BBR), a compound isolated from a Chinese herb, as a new cholesterol-lowering drug. Oral administration of BBR in 32 hypercholesterolemic patients for 3 months reduced serum cholesterol by 29%, triglycerides by 35% and LDL-cholesterol by 25%. Treatment of hyperlipidemic hamsters with BBR reduced serum cholesterol by 40% and LDL-cholesterol by 42%, with a 3.5-fold increase in hepatic LDLR mRNA and a 2.6-fold increase in hepatic LDLR protein. Using human hepatoma cells, we show that BBR upregulates LDLR expression independent of sterol regulatory element binding proteins, but dependent on ERK activation. BBR elevates LDLR expression through a post-transcriptional mechanism that stabilizes the mRNA. Using a heterologous system with luciferase as a reporter, we further identify the 5′ proximal section of the LDLR mRNA 3′ untranslated region responsible for the regulatory effect of BBR. These findings show BBR as a new hypolipidemic drug with a mechanism of action different from that of statin drugs.
引用
收藏
页码:1344 / 1351
页数:7
相关论文
共 46 条
  • [41] Drug Interaction Potential of 2-((3,4-Dichlorophenethyl)(propyl)amino)-1-(pyridin-3-yl)ethanol (LK-935), the Novel Nonstatin-Type Cholesterol-Lowering Agent
    Monostory, Katalin
    Pascussi, Jean-Marc
    Szabo, Pal
    Temesvari, Manna
    Kohalmy, Krisztina
    Acimovic, Jure
    Kocjan, Darko
    Kuzman, Drago
    Wilzewski, Britta
    Bernhardt, Rita
    Kobori, Laszlo
    Rozman, Damjana
    DRUG METABOLISM AND DISPOSITION, 2009, 37 (02) : 375 - 385
  • [42] DdrC, a unique DNA repair factor from D. radiodurans, senses and stabilizes DNA breaks through a novel lesion-recognition mechanism
    Szabla, Robert
    Li, Mingyi
    Warner, Victoria
    Song, Yifeng
    Junop, Murray
    NUCLEIC ACIDS RESEARCH, 2024, 52 (15) : 9282 - 9302
  • [43] The IBR5 phosphatase promotes Arabidopsis auxin responses through a novel mechanism distinct from TIR1-mediated repressor degradation
    Lucia C Strader
    Melanie Monroe-Augustus
    Bonnie Bartel
    BMC Plant Biology, 8
  • [44] The IBR5 phosphatase promotes Arabidopsis auxin responses through a novel mechanism distinct from TIR1-mediated repressor degradation
    Strader, Lucia C.
    Monroe-Augustus, Melanie
    Bartel, Bonnie
    BMC PLANT BIOLOGY, 2008, 8 (1)
  • [45] Unraveling the unique butyrate re-assimilation mechanism of Clostridium sp. strain WK and the application of butanol production from red seaweed Gelidium amansii through a distinct acidolytic pretreatment
    Zhang, Kan
    Hong, Ying
    Chen, Chaoyang
    Wu, Yi-Rui
    BIORESOURCE TECHNOLOGY, 2021, 342
  • [46] MLN4924, a Novel Investigational NEDD8 Activating Enzyme Inhibitor, Exhibits Preclinical Activity In Multiple Myeloma and Waldenstrom's Macroglobulinemia through Mechanism Distinct From Existing Proteasome Inhibitors
    McMillin, Douglas W.
    Hunter, Zachary
    Delmore, Jake
    Monrose, Val
    Smith, Peter G.
    Birner, Ann
    Richardson, Paul G.
    Anderson, Kenneth C.
    Treon, Steven P.
    Kung, Andrew L.
    Mitsiades, Constantine S.
    BLOOD, 2010, 116 (21) : 1232 - 1232