Glycolysis Inhibitor Screening Identifies the Bis-geranylacylphloroglucinol Protonophore Moronone from Moronobea coccinea

Journal of Natural Products
2012.0

Abstract

Tumor cells exhibit enhanced glucose consumption and lactate production even when supplied with adequate oxygen (a phenomenon known as the Warburg effect, or aerobic glycolysis). Pharmacological inhibition of aerobic glycolysis represents a potential tumor-selective approach that targets the metabolic differences between normal and malignant tissues. Human breast tumor MDA-MB-231 cells were used to develop an assay system to discover natural product-based glycolysis inhibitors. The assay employed was based on hypersensitivity to glycolytic inhibition in tumor cells treated with the mitochondrial electron transport inhibitor rotenone. Under such conditions, ATP supply, and hence cell viability, depends exclusively on glycolysis. This assay system was used to evaluate 10648 plant and marine organism extracts from the U.S. National Cancer Institute's Open Repository. Bioassay-guided isolation of an active Moronobea coccinea extract yielded the new bis-geranylacylphloroglucinol derivative moronone (1). Compound 1 exhibited enhanced antiproliferative/cytotoxic activity in the presence of rotenone-imposed metabolic stress on tumor cells. Surprisingly, mechanistic studies revealed that 1 did not inhibit glycolysis, but rather functions as a protonophore that dissipates the mitochondrial proton gradient. In the presence of rotenone, tumor cells may be hypersensitive to protonophores due to increased ATP utilization by the ATP synthase.

Knowledge Graph

Similar Paper

Glycolysis Inhibitor Screening Identifies the Bis-geranylacylphloroglucinol Protonophore Moronone from <i>Moronobea coccinea</i>
Journal of Natural Products 2012.0
Worenine reverses the Warburg effect and inhibits colon cancer cell growth by negatively regulating HIF-1α
Cellular &amp; Molecular Biology Letters 2021.0
An update on therapeutic opportunities offered by cancer glycolytic metabolism
Bioorganic &amp; Medicinal Chemistry Letters 2014.0
Mammea E/BB, an Isoprenylated Dihydroxycoumarin Protonophore That Potently Uncouples Mitochondrial Electron Transport, Disrupts Hypoxic Signaling in Tumor Cells
Journal of Natural Products 2010.0
N-(2-{3-[3,5-Bis(trifluoromethyl)phenyl]ureido}ethyl)-glycyrrhetinamide (<b>6b</b>): A Novel Anticancer Glycyrrhetinic Acid Derivative that Targets the Proteasome and Displays Anti-Kinase Activity
Journal of Medicinal Chemistry 2011.0
Discovery of N-Hydroxyindole-Based Inhibitors of Human Lactate Dehydrogenase Isoform A (LDH-A) as Starvation Agents against Cancer Cells
Journal of Medicinal Chemistry 2011.0
Design of antitumor agents containing carbohydrate based on GLUT1, and evaluation of antiproliferative activity
Bioorganic &amp; Medicinal Chemistry Letters 2017.0
Synthesis and biological evaluation of novel spin labeled 18β-glycyrrhetinic acid derivatives
Bioorganic &amp; Medicinal Chemistry Letters 2012.0
A phenanthroindolizidine glycoside with HIF-1 inhibitory activity from Tylophora atrofolliculata
Phytochemistry Letters 2019.0
Lycorine, the Main Phenanthridine Amaryllidaceae Alkaloid, Exhibits Significant Antitumor Activity in Cancer Cells That Display Resistance to Proapoptotic Stimuli: An Investigation of Structure−Activity Relationship and Mechanistic Insight
Journal of Medicinal Chemistry 2009.0