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A new, sustainable source for a promising cancer killer

Photo of Tabernaemontana corymbosa
Tabernaemontana corymbosa, seen above, produces a natural cancer-killing molecule. Normally, you鈥檇 have to travel all the way to Malaysia to find it. Instead, CSHL chemists have recreated this cancer killer in the lab using sustainable chemistry techniques.

Plants produce all types of curious chemicals. Some deter predators. Some smell wonderful. Some even have medicinal value. One of these hidden gems is (鈥)-jerantinine A (JA), a molecule with remarkable anticancer properties, produced by a plant called Tabernaemontana corymbosa. Unfortunately, access to this Malaysian jungle plant and its promising chemical compound has been limited. Until now.

Illustration of jerantinine A chemical structure
The chemical structure of the promising anticancer molecule, (鈥)-jerantinine A.

黑料吃瓜资源 (CSHL) chemists, led by Professor John E. Moses, have created a way to safely, quickly, and sustainably synthesize JA in the lab. To cancer biologists at CSHL, this breakthrough could mean future treatments for triple-negative breast cancer.

JA is attractive because of its versatility. Described as a polypharmaceutical, the molecule has the power to attack cancer from multiple angles. This can help its efficacy and reduce the chances of drug resistance. 鈥淭hat鈥檚 why natural products are often good starting points for anticancer drugs,鈥 says Joshua Homer, a postdoc in Moses鈥 lab. 鈥淛A is a sophisticated molecule. Evolution has fine-tuned it for us.鈥 Moses adds:

鈥淣ature provided the blueprint. Nature provides many lifesaving molecules, but it doesn鈥檛 always provide them in large quantities. But we can now access (鈥)-jerantinine A from a commercially viable source, which is very inexpensive, and make this precious material.鈥

JA also has a peculiar preference for killing cancer cells over normal cells. To find out why, the researchers enlisted a CSHL Cancer Center colleague, Assistant Professor Michael Lukey. The team discovered that JA shuts down metabolic activity in the mitochondria of human triple-negative breast cancer cells. By inhibiting mitochondria, the cells鈥 鈥減owerhouse,鈥 the molecule starves tumors of the excessive energy and building blocks they typically demand. Lukey explains:

鈥淭he metabolic requirements of the cancer cell are very different from those of the healthy cell. There鈥檚 now an additional requirement to make lipids, proteins, etc., for building a new cell. If the cell doesn鈥檛 have the materials needed to proliferate, it can lead to a metabolic crisis that ultimately results in cell death.鈥

Image of cellular oxidative stress chart
A new firefly light-based assay, called OxiLuc, developed by CSHL Research Associate Professor and Director of Animal Imaging Scott Lyons, captures oxidative stress on cells in real time. In this image, green represents the level of stress a cell is under鈥攖he greener the image, the higher the cellular stress. CSHL scientists discovered (鈥)-jerantinine A (row labeled JA) causes human triple-negative breast cancer cells to suffer stress from elevated oxidation levels.

Easy access to this new molecule means a new generation of drugs may be on the horizon for breast cancer and potentially other cancers as well. Zifei Wang in the Moses lab is now spearheading this effort. Their team sees JA鈥檚 journey from rare, mysterious plant chemical to potential anticancer drug candidate as a 鈥減oster child鈥 of what can happen when chemistry and biology labs come together at CSHL.

鈥淭his represents the first collaborative publication by the Moses laboratory, a world-class chemistry group, working with CSHL cancer biologists to investigate novel compounds for potential anticancer properties,鈥 says CSHL Cancer Center Director David Tuveson. 鈥淚t is exciting to see this synergy at CSHL and emblematic of success stories to come in 2023!鈥

Written by: Luis Sandoval, Communications Specialist | [email protected] | 516-367-6826


Funding

National Cancer Center, 黑料吃瓜资源 Northwell Health Affiliation, F. M. Kirby Foundation, Sunshine Foundation, S. J. Edwards, The STARR Foundation, The Wasily Family Foundation, METAvivor, Elsa U. Pardee Foundation, Department of Defense Breast Cancer Research Program, and La Trobe University

Citation

Gialelis, T.L., et al., 鈥淚nhibition of Mitochondrial Metabolism by (鈥)-Jerantinine A: Synthesis and Biological Studies in Triple-Negative Breast Cancer鈥, RSC Medicinal Chemistry, March 1, 2023. DOI:

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Principal Investigator

John Moses

John Moses

Professor
Cancer Center Member
Ph.D. (DPhil), University of Oxford, 2004

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