idw – Informationsdienst Wissenschaft

Nachrichten, Termine, Experten

Grafik: idw-Logo
Science Video Project
idw-Abo

idw-News App:

AppStore

Google Play Store



Instanz:
Teilen: 
23.02.2017 13:45

New Mechanisms of Gene Inactivation may prevent Aging and Cancer

Dr. Kerstin Wagner Kommunikation
Leibniz-Institut für Alternsforschung - Fritz-Lipmann-Institut e.V. (FLI)

    Every cell in our body contains the complete DNA library. So-called methyl groups regulate that in body tissues only the genetic information is expressed that is indeed needed in this tissue. Now, for the first time, researchers from the Leibniz Institute on Aging in Jena, Germany, verified that a lack of methyl groups in the gene body leads to an incorrect gene activation and, as a consequence, may lead to the emergence of cancer. The stunning results were published in the renowned Journal Nature on February 22, 2017.

    Jena. Each cell in the body contains the basic building plan of our entire organism. It is written in the “DNA” and comprises single genes which determine specific individual attributes. Gene expression is strictly regulated in order to build tissue-specific cells with tissue-specific attributes. For example in an intestinal cell, the genetic information is activated that forms the cell’s identity as intestinal cell. In this strictly regulated process, methyl groups play an important role. If they are enzymatically bound to a gene’s starting point, known as the promoter, the respective gene is inactivated. In this case, the DNA is “methylated”. During aging as well as during the development of age-induced diseases like cancer, the activation of genetic information is increasingly defective. However, as of yet, the detailed processes of these errors and the role that DNA methylation has in these processes have only poorly been understood.

    A lack of methyl groups in the gene body may develop cancer

    It was known for some time that DNA methylation at the promoters of a gene fulfills the function of an on/off switch. One of the big open questions in Epigenetics is why DNA within the gene body (where the important genetic information is located) is methylated as well. This question was now addressed by scientist Francesco Neri from the Leibniz Institute on Aging – Fritz Lipmann Institute (FLI) in Jena, Germany, and his colleagues from the Human Genetics Foundation and the Torino University, Italy. They proved that genes are also aberrantly activated if – beyond promoters – DNA methylation is missing within the gene body. As a consequence, aberrant proteins are produced, which impinge on the cell structure. Thus, the function and identity of a cell are massively disrupted: cells degrade, cancer may emerge. These results, which answer one of the biggest open questions in Epigenetics, were published in the renowned Journal Nature on February 22, 2017.

    Gene expression can be regulated chemically: A target for cancer therapy?

    “What makes these results so stunning is that we finally are able to explain why DNA methylation is very often missing in cancer cells. Thus, DNA is not protected from miss-activation, leading to the production of more and more aberrant proteins and the dominance of cancer cells”, Dr. Francesco Neri, who is Junior Group Leader at the FLI and one of the study’s leaders, explains. But in contrast to the accumulation of damages within the DNA, these epigenetic alterations as we see it for DNA methylation, can– in principal – be regulated by chemical compounds. “This new knowledge that a lack of DNA methylation at the gene body may lead to the production of aberrant proteins, might offer a new target for cancer therapy. If we succeed to find a way to traffic methyl groups to non-methylated DNA sequences of cancer cells, we could possibly stop proliferation of these cells”, Dr. Neri hopes. But there is still a long way to go.

    Publication

    Neri F, Rapelli S, Krepelova A, Incarnato D, Parlato C, Basile G, Maldotti M, Anselmi F, Oliviero O. Intragenic DNA methylation prevents spurious transcription initiation. Nature 2017, doi:10.1038/nature21373.

    Contact

    Dr. Evelyn Kästner
    Leibniz Institute on Aging – Fritz Lipmann Institute (FLI), Beutenbergstr. 11, D-07745 Jena
    Tel.: 03641-656373, Fax: 03641-656351, E-Mail: presse@leibniz-fli.de

    ----------------------------

    Background information

    The Leibniz Institute on Aging – Fritz Lipmann Institute (FLI) is the first German research organization dedicated to biomedical aging research since 2004. More than 330 members from over 30 nations explore the molecular mechanisms underlying aging processes and age-associated diseases. For more information, please visit http://www.leibniz-fli.de.

    The Leibniz Association connects 91 independent research institutions that range in focus from the natural, engineering and environmental sciences via economics, spatial and social sciences to the humanities. Leibniz Institutes address issues of social, economic and ecological relevance. They conduct knowledge-driven and applied basic research, maintain scientific infrastructure and provide research-based services. The Leibniz Association identifies focus areas for knowledge transfer to policy-makers, academia, business and the public. Leibniz Institutes collaborate intensively with universities – in the form of “WissenschaftsCampi” (thematic partnerships between university and non-university research institutes), for example – as well as with industry and other partners at home and abroad. They are subject to an independent evaluation procedure that is unparalleled in its transparency. Due to the institutes’ importance for the country as a whole, they are funded jointly by the Federation and the Länder, employing some 18,600 individuals, including 9,500 researchers. The entire budget of all the institutes is approximately 1.7 billion EUR. See http://www.leibniz-association.eu for more information.


    Weitere Informationen:

    http://www.leibniz-fli.de - Website Leibniz Institute on Aging - Fritz Lipmann Institute (FLI) Jena


    Bilder

    Dr. Francesco Neri and his colleagues discovered how the new mechanism of gene inactivation could protect against aging and cancer.
    Dr. Francesco Neri and his colleagues discovered how the new mechanism of gene inactivation could pr ...
    [Graphic: Kerstin Wagner / FLI; Source: Fotolia.com @ Andrea Danti]
    None

    Francesco Neri, Junior Group Leader of the research group on “Epigenetics of Aging“ at Leibniz Institute on Aging (FLI) in Jena.
    Francesco Neri, Junior Group Leader of the research group on “Epigenetics of Aging“ at Leibniz Insti ...
    [Photo: Evelyn Kästner / FLI]
    None


    Merkmale dieser Pressemitteilung:
    Journalisten, Wissenschaftler, jedermann
    Biologie, Chemie, Ernährung / Gesundheit / Pflege, Medizin
    überregional
    Forschungsergebnisse, Wissenschaftliche Publikationen
    Englisch


     

    Dr. Francesco Neri and his colleagues discovered how the new mechanism of gene inactivation could protect against aging and cancer.


    Zum Download

    x

    Francesco Neri, Junior Group Leader of the research group on “Epigenetics of Aging“ at Leibniz Institute on Aging (FLI) in Jena.


    Zum Download

    x

    Hilfe

    Die Suche / Erweiterte Suche im idw-Archiv
    Verknüpfungen

    Sie können Suchbegriffe mit und, oder und / oder nicht verknüpfen, z. B. Philo nicht logie.

    Klammern

    Verknüpfungen können Sie mit Klammern voneinander trennen, z. B. (Philo nicht logie) oder (Psycho und logie).

    Wortgruppen

    Zusammenhängende Worte werden als Wortgruppe gesucht, wenn Sie sie in Anführungsstriche setzen, z. B. „Bundesrepublik Deutschland“.

    Auswahlkriterien

    Die Erweiterte Suche können Sie auch nutzen, ohne Suchbegriffe einzugeben. Sie orientiert sich dann an den Kriterien, die Sie ausgewählt haben (z. B. nach dem Land oder dem Sachgebiet).

    Haben Sie in einer Kategorie kein Kriterium ausgewählt, wird die gesamte Kategorie durchsucht (z.B. alle Sachgebiete oder alle Länder).