idw – Informationsdienst Wissenschaft

Nachrichten, Termine, Experten

Grafik: idw-Logo
Grafik: idw-Logo

idw - Informationsdienst
Wissenschaft

Science Video Project
idw-Abo

idw-News App:

AppStore

Google Play Store



Instance:
Share on: 
07/15/2016 11:22

A Peek into the “Birthing Room” of Ribosomes

Marietta Fuhrmann-Koch Kommunikation und Marketing
Ruprecht-Karls-Universität Heidelberg

    A type of scaffolding on which specialised workers ply their trade helps in the manufacturing process of the two subunits from which the ribosome – the protein factory of the cell – originates. Biochemists at Heidelberg University discovered it after succeeding in getting a peek into the ribosomal “birthing room”. While studying baker's yeast as the model organism, the researchers, in collaboration with colleagues from Ludwig Maximilian University of Munich, discovered a shell that envelops the smaller of the two subunits during the ribosome's formation. The results of the research were published in the journal “Cell”.

    Presse Release
    Heidelberg, 15 July 2016

    A Peek into the “Birthing Room” of Ribosomes
    Scaffolding and specialised workers help with the delivery – Heidelberg biochemists gain new insights into biogenesis

    A type of scaffolding on which specialised workers ply their trade helps in the manufacturing process of the two subunits from which the ribosome – the protein factory of the cell – originates. Biochemists at Heidelberg University discovered it after succeeding in getting a peek into the ribosomal “birthing room”. While studying baker's yeast as the model organism, the researchers, in collaboration with colleagues from Ludwig Maximilian University of Munich, discovered a shell that envelops the smaller of the two subunits during the ribosome's formation. The results of the research could contribute to a greater understanding of ribosomopathies – abnormalities caused by impaired ribosome biogenesis. Because several medications also act on the biogenesis of ribosomes, the investigators hope to apply their findings to cancer research. The results of the research were published in the journal “Cell”.

    The research team of Prof. Dr Ed Hurt of the Heidelberg University Biochemistry Center had already stumbled on the earliest known ribosomal precursor, the 90S pre-ribosome, 15 years ago. To find out the function of this giant precursor particle in ribosome biogenesis, Markus Kornprobst isolated the pre-ribosomes of baker's yeast in order to analyse their structure. “In the process, we discovered that the precursor bore a large shell-like module that the cell recycled after work was finished,” explains Markus Kornprobst of Prof. Hurt's team. “The relatively compact phenotype of the 90S pre-ribosome gave us the idea that this shell, in combination with other factors, encloses the smaller of the two ribosomal subunits during biogenesis to allow seamless assembly of the particle in a protected environment.” Using cryo-electron microscopy, they were able to confirm their suspicion in collaboration with the Munich team of Prof. Dr. Roland Beckmann.

    Another member of Dr. Hurt's lab, Dr Nikola Kellner, isolated the 90S pre-ribosome from a heat-loving fungus. “They are more stable and hence better suited to further analyses than 90S pre-ribosomes from other organisms,” Nikola Kellner explains. Finally, with the aid of cryo-electron microscopy, the structure of this thermostable 90S pre-ribosome was detectable down to a resolution of less than a nanometre. “The 90S factors actually form a gigantic cohesive network that surrounds the small developing subunit like a scaffold, such as on a high-rise, where specialized workers perform their jobs using various tools,” explains Ed Hurt.

    Original publication:
    M. Kornprobst, M. Turk, N. Kellner, et al.: Architecture of the 90S Pre-ribosome: A Structural View on the Birth of the Eukaryotic Ribosome. Cell 166 (July 14, 2016), doi: 10.1016/j.cell.2016.06.014

    Caption:
    Model of the small ribosomal subunit shown at its “birth”. Within the 90S pre-ribosome – the earliest known intermediate in ribosome biogenesis – the nascent small ribosomal subunit is encapsulated by a giant network of biogenesis factors (“workers”). In analogy, the image illustrates how a construction scaffold is decorated with workers, who use tools for hammering, trimming, and burnishing, in order to sculpture the small subunit (shown yellow and blue) in its centre.
    Figure: BZH/Jochen Baßler

    Contact:
    Prof. Dr. Ed Hurt
    Heidelberg University Biochemistry Center
    Phone +49 6221 54-4781, -4173
    ed.hurt@bzh.uni-heidelberg.de

    Communications and Marketing
    Press Office, phone +49 6221 54-2311
    presse@rektorat.uni-heidelberg.de


    More information:

    http://www.uni-heidelberg.de/zentral/bzh/hurt
    http://www.bzh.uni-heidelberg.de


    Images

    Model of the small ribosomal subunit shown at its “birth”
    Model of the small ribosomal subunit shown at its “birth”
    Figure: BZH/Jochen Baßler
    None


    Criteria of this press release:
    Journalists
    Biology, Chemistry
    transregional, national
    Research results
    English


     

    Help

    Search / advanced search of the idw archives
    Combination of search terms

    You can combine search terms with and, or and/or not, e.g. Philo not logy.

    Brackets

    You can use brackets to separate combinations from each other, e.g. (Philo not logy) or (Psycho and logy).

    Phrases

    Coherent groups of words will be located as complete phrases if you put them into quotation marks, e.g. “Federal Republic of Germany”.

    Selection criteria

    You can also use the advanced search without entering search terms. It will then follow the criteria you have selected (e.g. country or subject area).

    If you have not selected any criteria in a given category, the entire category will be searched (e.g. all subject areas or all countries).