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PMID: 15767573 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Extremely potent triterpenoid inducers of the phase 2 response: correlations of protection against oxidant and inflammatory stress.

Dinkova-Kostova AT, Liby KT, Stephenson KK, Holtzclaw WD, Gao X, Suh N, Williams C, Risingsong R, Honda T, Gribble GW, Sporn MB, Talalay P

Abstract

A series of synthetic triterpenoid (TP) analogues of oleanolic acid are powerful inhibitors of cellular inflammatory processes such as the induction by IFN-gamma of inducible nitric oxide synthase (iNOS) and of cyclooxygenase 2 in mouse macrophages. Here, we show that these analogues are also extremely potent inducers of the phase 2 response [e.g., elevation of NAD(P)H-quinone oxidoreductase and heme oxygenase 1], which is a major protector of cells against oxidative and electrophile stress. Moreover, like previously identified phase 2 inducers, the TP analogues use the antioxidant response element-Nrf2-Keap1 signaling pathway. Thus, induction of the phase 2 response and suppression of the iNOS induction was abrogated in nrf2(-/-) and keap1(-/-) mouse embryonic fibroblasts. The high potency of TP analogues in inducing the phase 2 response and blocking inflammation depends on the presence of activated Michael reaction (enone) functions at critical positions in rings A and C. The most potent TP doubles NAD(P)H-quinone oxidoreductase in murine hepatoma cells at 0.28 nM and has an IC(50) for suppression of iNOS induction in primary mouse macrophages of 0.0035 nM. The direct interaction of this TP with thiol groups of the Keap1 sensor for inducers is demonstrated spectroscopically. The antiinflammatory and phase 2 inducer potencies of 18 TP are closely linearly correlated (r(2) = 0.91) over 6 orders of magnitude of concentration. Thus, in addition to blocking inflammation and promoting differentiation, these TP exhibit another very important protective property: the induction of the phase 2 response.

MeSH Terms
Adaptor Proteins, Signal Transducing/metabolism Animals Binding, Competitive Cell Line Cytoskeletal Proteins/metabolism DNA-Binding Proteins/metabolism Enzyme Induction/drug effects Enzyme Inhibitors/chemistry,pharmacology Humans Inflammation/prevention & control Kelch-Like ECH-Associated Protein 1 Mice NAD(P)H Dehydrogenase (Quinone) NADPH Dehydrogenase/antagonists & inhibitors,biosynthesis NF-E2-Related Factor 2 Nitric Oxide Synthase/antagonists & inhibitors,biosynthesis,genetics Nitric Oxide Synthase Type II Oxidative Stress/drug effects RNA, Messenger/genetics,metabolism Structure-Activity Relationship Terpenes/chemistry,pharmacology Trans-Activators/metabolism U937 Cells
Chemicals
Adaptor Proteins, Signal Transducing Cytoskeletal Proteins DNA-Binding Proteins Enzyme Inhibitors Keap1 protein, mouse Kelch-Like ECH-Associated Protein 1 NF-E2-Related Factor 2 NFE2L2 protein, human Nfe2l2 protein, mouse RNA, Messenger Terpenes Trans-Activators NOS2 protein, human Nitric Oxide Synthase Nitric Oxide Synthase Type II Nos2 protein, mouse NAD(P)H Dehydrogenase (Quinone) Nqo1 protein, mouse NADPH Dehydrogenase
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Dinkova-Kostova Albena T
The Lewis B. and Dorothy Cullman Cancer Chemoprotection Center, Department of Pharmacology and Molecular Sciences, School of Medicine, Johns Hopkins University, 725 North Wolfe Street, Baltimore, MD 21205, USA.
Liby Karen T
Stephenson Katherine K
Holtzclaw W David
Gao Xiangqun
Suh Nanjoo
Williams Charlotte
Risingsong Renee
Honda Tadashi
Gribble Gordon W
Sporn Michael B
Talalay Paul
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
2005-03-22
Epub
2005-00-14
Pages
4584-9
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC555528
Subset
IM
Grants
NCI NIH HHS · R01 CA078814 · United States
NCI NIH HHS · R01 CA094076 · United States
NCI NIH HHS · CA 78814 · United States
NCI NIH HHS · CA 94076 · United States
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