Abstract
Human lipoxygenases (hLO) have been implicated in a variety of diseases and cancers and each hLO isozyme appears to have distinct roles in cellular biology. This fact emphasizes the need for discovering selective hLO inhibitors for both understanding the role of specific lipoxygenases in the cell and developing pharmaceutical therapeutics. To this end, we have modified a known lipoxygenase assay for high-throughput (HTP) screening of both the National Cancer Institute (NCI) and the UC Santa Cruz marine extract library (UCSC-MEL) in search of platelet-type 12-hLO (12-hLO) selective inhibitors. The HTP screen led to the characterization of five novel 12-hLO inhibitors from the NCI repository. One is the potent but non-selective michellamine B, a natural product, anti-viral agent. The other four compounds were selective inhibitors against 12-hLO, with three being synthetic compounds and one being alpha-mangostin, a natural product, caspase-3 pathway inhibitor. In addition, a selective inhibitor was isolated from the UCSC-MEL (neodysidenin), which has a unique chemical scaffold for a hLO inhibitor. Due to the unique structure of neodysidenin, steady-state inhibition kinetics were performed and its mode of inhibition against 12-hLO was determined to be competitive (K(i)=17microM) and selective over reticulocyte 15-hLO-1 (K(i) 15-hLO-1/12-hLO>30).
| Original language | American English |
|---|---|
| Pages (from-to) | 6900-6908 |
| Number of pages | 9 |
| Journal | Bioorganic & Medicinal Chemistry |
| Volume | 15 |
| Issue number | 22 |
| State | Published - Nov 15 2007 |
| Externally published | Yes |
Funding
The research was supported by Grants NIH-GM56062-6 (T.R.H.), American Cancer Society-RPG-00-219-01-CDD (T.R.H.), NIH-CA47135 (P.C.), and NIH-U19CA52955 (P.C.).
| Funders | Funder number |
|---|---|
| American Cancer Society-RPG-00-219-01-CDD | NIH-CA47135, NIH-U19CA52955 |
| National Cancer Institute | U19CA052955 |
Keywords
- Blood Platelets
- Combinatorial Chemistry Techniques
- Databases
- Factual
- Drug Evaluation
- Preclinical
- Humans
- Isoenzymes
- Kinetics
- Lipoxygenase Inhibitors
- Molecular Structure
- Reproducibility of Results
- Structure-Activity Relationship
Disciplines
- Biochemistry
- Natural Products Chemistry and Pharmacognosy