Cancer metabolism discovery uncovers new role of IDH1 gene mutation in brain cancer

Featured In: Disease Research

By EurekAlert Sunday, November 22, 2009

Loading...

Cambridge, MA – November 23, 2009 – Agios Pharmaceuticals today announced that its scientists have established, for the first time, that the mutated IDH1 gene has a novel enzyme activity consistent with a cancer-causing gene, or oncogene. This breakthrough discovery shows that the mutated form of IDH1 produces a metabolite, 2-hydroxyglutarate (2HG), which may contribute to the formation and malignant progression of gliomas, the most common type of brain cancers. This discovery appears to reverse the previously held belief that IDH1 was non functional for cancer-causing activity. It is also one of the first reported instances where a metabolic enzyme such as IDH1 is shown to play a role in cancer formation, in this case through altered metabolic activity.

This finding creates opportunities for therapeutic intervention in brain cancer and other cancers where IDH1 mutations are present using new drugs that can target the IDH1 metabolic pathway.. The Agios research also identified an exciting new biomarker, 2HG, that could be used to develop an important diagnostic. The research was published on November 22 by the journal Nature, in a paper entitled "Cancer-associated IDH1 mutations produce 2-hydroxyglutarate (2HG)".[1]

"This groundbreaking work is profound for the field," said Professor Lew Cantley, Ph.D., Director of the Cancer Center at the Beth Israel Deaconess Medical Center, a founder of Agios and a supporting author. "The team at Agios has demonstrated that what was previously considered an inactive enzyme is in reality an active oncogene and a potential therapeutic target. This has fundamentally changed our understanding of the field. Additionally, there is an easily measured metabolic biomarker, 2HG, that will help in the diagnosis and treatment of any related therapeutics that arise from this work."

Agios scientists uncovered the function of the IDH1 mutation by employing novel techniques in a new area of cancer biology called cancer metabolism, which focuses on studying profound changes in metabolic activity in cancer cells. Through a mix of large-scale profiling of hundreds of cellular metabolites, x-ray crystallography, and innovative enzymology, the Agios team demonstrated that a single amino-acid substitution in the IDH1 active site allows the enzyme to acquire an entirely new activity to produce the metabolite 2HG. Analysis of tumor samples of brain cancer patients with the IDH1 mutation revealed up to hundred-fold elevations in concentrations of 2HG, a metabolite that has been previously linked to the formation of brain cancer.

"Agios' founding principles included the belief that targeting important metabolic pathways of cancers could make a fundamental difference in the treatment of the disease. Our IDH1 discovery is a great example of the power of the team and of our approach in targeting cancer metabolic pathways. In just four months, scientists at Agios unraveled very complex biology to advance a new understanding of gliomas and the role of IDH1 and corresponding biomarkers," said David Schenkein, M.D., Chief Executive Officer, Agios. "We are able to do this by utilizing a unique approach of integrating deep biology and leveraging our proprietary platform for cancer metabolism research.

"We are looking forward to developing potential therapeutics specifically targeting IDH1 for patients with these devastating diseases, and to leveraging our unique cross functional approach to cancer metabolism research in order to discover insights into other targets and pathways," added Schenkein.

About the metabolic enzyme IDH1 and its role in cancer

Recent research has linked mutations in the metabolic enzyme IDH1 to glioma and other cancers.[2] Approximately 70 percent of gliomas are known to have the IDH1 mutation. Recently, the IDH1 mutation was also shown to be present in a significant percentage of patients with Acute Myeloid Leukemia, another devastating disease.

The insight from this new research at Agios is the first to reveal the function of the mutated IDH1 gene and provides critical insight into the mechanism by which this mutation leads to the development of brain cancer. Reports to date about the role of IDH1 have suggested that the gene functions as a tumor suppressor that, when mutationally inactivated, may contribute to brain tumor growth. The most recent research from Agios scientists published in Nature [1] suggests that it is activation of a metabolic pathway – rather than inactivation of a tumor suppression function – that is the likely process for oncogene function of IDH1.

About Gliomas

A glioma is a type of cancer that starts in the brain or spine. It is called a glioma because it arises from glial cells. The most common site of gliomas is the brain, but gliomas can also affect the spinal cord or any other part of the CNS, such as the optic nerves. High grade gliomas currently cannot be cured and the prognosis for patients is generally poor; of the 20,000 Americans affected each year, more than half die within eighteen months of diagnosis. Gliomas are the most common type of brain cancer and approximately 70 percent of lower grade gliomas are known to have the IDH1 gene mutation.

About Cancer Metabolism

Cancer metabolism is a new and exciting field of biology that provides a novel approach to treating cancer. Cancer cell metabolism is marked by profound changes in nutrient requirements and usage to ensure cell proliferation and survival. Research in the field has demonstrated that cancer cells become addicted to certain fuel sources and metabolic pathways. In cancer, this metabolic reprogramming is coordinated with proliferative signaling and regulated by the same oncogenes and tumor suppressor genes to ensure efficient proliferation. Glycolysis (sugar metabolism), fatty acid metabolism and autophagy (self metabolism) are three pathways shown to play a critical role in cancer metabolism. Identifying and disrupting certain enzymes in these, and perhaps other, metabolic pathways provides a powerful intervention point for discovery and development of cancer therapeutics.

SOURCE

Join the Discussion
Rate Article:  Average 0 out of 5
register or log in to comment on this article!

0 Comments

Add Comment

Text Only 2000 character limit

Page 1 of 1

Research Exchange

Publishing Data That Conform to the MIQE Guidelines

Jan 22

Minimum information for publication of Quantitative Real-Time PCR Experiments (MIQE) guidelines help researchers design qPCR experiments.

Calibration Free Analysis to Measure the Concentration of Active Proteins

Nov 23 2009

An SPR-based method, Calibration Free Concentration Analysis can be used to accurately determine the concentration of active protein in a sample, relating to the specific binding activity of the protein, and without the need for a standard.

Advances in EMCCD Technology: Making Imaging Less Arbitrary

Advances in EMCCD Technology: Making Imaging Less Arbitrary

Nov 16 2009

Recent advances in EMCCD technology have solved the problem of non-standardized measurement units by using the photoelectron to standardize imaging experiments.

10 Tips for Successful Sample Concentration and Buffer Exchange

10 Tips for Successful Sample Concentration and Buffer Exchange

Nov 6 2009

Centrifugal devices with ultrafiltration (UF) membrane can solve common problems researchers face when working with proteins.

Advantages of Monolithic Laser Combiner Technology in Confocal Microscopy Systems

Jan 6

Fluorescence microscopy techniques require a reliable light source at the desired wavelength or wavelengths, with minimal downtime for maintenance and alignment. Lasers are a popular light source, although the alignment and upkeep of laser combiners is a time-consuming prospect for many users.

Size-Exclusion Chromatography for Purification of Biomolecules

Dec 2 2009

Size-exclusion chromatography (SEC) is a popular method to separate biomolecules based on their size. Primarily, it is applied to the separation of biopolymers such as proteins and nucleic acids, i.e. water-soluble polymers.

Improving Separation During Electrophoresis

Dec 2 2009

SeparateIT gels represent a novel gel matrix for DNA electrophoresis. Gel polymers are arranged in a conceptually different way, in accordance with a new theoretical model of gel electrophoresis.

Improving Quality of ELISA

Dec 2 2009

Using ready-to-use ELISA kits from manufacturers is easy and convenient. Sometimes however, home-made ELISA is required because there is no kit available with the right antibodies or the characteristics of the available kits such as their limits of detection are not appropriate.

Ensuring Quality in Assays Performed with Automated Liquid Handlers

Feb 2

The focus of this presentation is to highlight the need of ensuring quality in important assays performed with automated liquid handlers. Nearly all assays performed within a laboratory are volume-dependent. In turn, all concentrations of biological and chemical components in these assays, as well as the associated dilution protocols, are volume-dependent. Because analyte concentration is volume-dependent, an assay’s results might be falsely interpreted if liquid handler variability and inaccuracies are unknown or if the system(s) go unchecked for a long period.

Inkjet System for Protein Crystallography

Feb 1

X-ray crystallography is used routinely by scientists to obtain the three dimensional structure of a biological molecule of interest.Such information can be used to determine how a pharmaceutical interacts with a protein target and what changes might improve functionality. However, the crystallization of macromolecules still remains a serious hindrance in structural determination despite impressive advances in screening methods and technologies.

Attention Deficit & Hyperactivity in a Drosophila Memory Mutant

Attention Deficit & Hyperactivity in a Drosophila Memory Mutant

Nov 9 2009

Action selection is modulated by external stimuli either directly or via memory retrieval. In a constantly changing environment, animals have evolved attention-like processes to effectively filter the incoming sensory stream. These attention-like processes, in turn, are modulated by memory. The neurobiological nature of how attention, action selection and memory are inter-connected is unknown. We describe here new phenotypes of the memory mutant radish in the fruit fly Drosophila.

Mechanisms of plasticity in simple taxis behaviors in Drosophila

Mechanisms of plasticity in simple taxis behaviors in Drosophila

Nov 8 2009

Like the proverbial moth drawn to the candle flame, the fruit fly Drosophila also stereotypically approaches light sources. This positive phototaxis is the archetypal example of hard-wired input-output behaviors.

Relationship between multiple sources of perceived social support and psychological and academic adjustment in early adolescence: comparisons across gender.

Mar 8

The current study investigated gender differences in the relationship between sources of perceived support (parent, teacher, classmate, friend, school) and psychological and academic adjustment in a sample of 636 (49% male) middle school students. Longitudinal data were...

Involvement of ceramide in ischemic tolerance induced by preconditioning with sublethal oxygen-glucose deprivation in primary cultured cortical neurons of rats.

Feb 25

The complex molecular cascades of ischemic tolerance in brain cells remain unclear. Recently, sphingolipid-related metabolite ceramide has been implicated as a second messenger in many biological functions, including neuronal survival and death. The present study, therefore,...

Social intelligence and academic achievement as predictors of adolescent popularity.

Feb 24

This study compared the effects of social intelligence and cognitive intelligence, as measured by academic achievement, on adolescent popularity in two school contexts. A distinction was made between sociometric popularity, a measure of acceptance, and perceived popularity, a...

Prokariotic Cell Collection in Denmark

Nov 6 2009

I would like to know about a prokariotic cell collection in Denmark. Is there a cell bank in this country? I need a Lactobacillus strain for a fermentation assay and this information about the bank is very helpful for me.

Request for Entries

Oct 16 2009

Ask the Experts is your chance to get the answers to questions on applications, materials, methods, processes, and technologies. Email you question to bst_web@advantagemedia.com, and the editors of Bioscience Technology will find an appropriate expert to answer it. Watch this space in the future to see the questions your colleagues are posting.          

STAY INFORMED: SUBSCRIBE TO

Magazine and E-mail Newsletters

Loading...
E-mail:   

MULTIMEDIA

Video:

Neuroscience Diseases of The Brain and How The Mind Emerges

Neuroscience Diseases of The Brain and How The Mind Emerges

Nov 8 2009

Dennis Choi, director of Emory Universitys Neuroscience Center, is renowned for his groundbreaking research on brain and spinal cord injury.

Podcasts:

Allen Institute for Brain Research

Allen Institute for Brain Research

Oct 14 2009

Discussed in this interview are both the mouse brain project and the human cortex project with an emphasis on the importance of these projects to neuroscience research.