Friedrich Förster
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Professor Friedrich Förster is a faculty member at Universiteit Utrecht, Netherlands. His research primarily focuses on molecular biology and biophysics, with recent articles exploring topics such as automated classification in template matching, the structural dynamics of microtubules, and the replication cycles of viruses affecting marine algae. He is dedicated to advancing the understanding of cellular processes and protein interactions within various biological systems.
Recent Grants
Grant: Close
Molecular structure of mitochondria studied using cryoelectron tomography
Open Date: 2017-09-01
Close Date: 2022-08-01
Grant: Close
BENDER
Open Date: 2017-04-01
Close Date: 2022-03-01
Grant: Close
Functional ER architecture
Open Date: 2015-01-01
Close Date: 2017-12-01
Grant: Close
Development of computational methods for exploration of cryo-electron tomograms
Open Date: 2012-01-01
Close Date: 2015-01-01
Grant: Close
Integrated Analysis of Macromolecular Complexes and Hybrid Methods in Genome Biology
Open Date: 2012-01-01
Close Date: 2016-01-01
Articles (19)
Structure and replication cycle of a virus infecting climate-modulating alga <i>Emiliania huxleyi</i>
The globally distributed marine alga Emiliania huxleyi has cooling effect on the Earth’s climate. The population density of E. huxleyi is restricted by Nucleocytoviricota viruses, including E. huxleyi virus 201 (EhV-201). Despite the impact of E. huxleyi viruses on the climate, there is limited information about their structure and replication. Here, we show that the dsDNA genome inside the EhV-201 virion is protected by an inner membrane, capsid, and outer membrane. EhV-201 virions infect E. huxleyi by using fivefold vertices to bind to and fuse the virus’ inner membrane with the cell plasma membrane. Progeny virions assemble in the cytoplasm at the surface of endoplasmic reticulum–derived membrane segments. Genome packaging initiates synchronously with the capsid assembly and completes through an aperture in the forming capsid. The genome-filled capsids acquire an outer membrane by budding into intracellular vesicles. EhV-201 infection induces a loss of surface protective layers from E. huxleyi cells, which enables the continuous release of virions by exocytosis.
Year:
2024
Collaborators (17)
Sven Lang
Saarland University
Sarah O'Keefe
University of Helsinki
Jiri Novacek
Head of Cryo-electron microscopy core facility
Masaryk University
Sander Roet
Utrecht University
Benjamin Engel
Assistant Professor
University of Basel
Wouter Beugelink
Utrecht University
Titia K Sixma
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Remco Veltkamp
prof. dr.
Utrecht University
Declan Schroeder
Associate Professor
University of Minnesota
Maurizio Molinari
Institute for Research in Biomedicine
William James Faller
Antoni van Leeuwenhoek Nederlands Kanker Instituut
Stephen High
The University of Manchester
Volkhard Helms
Professor
Saarland University
Joana Silva
Assistant Professor & Group Leader
University Medical Center Utrecht, Utrecht University
Pavel Plevka
Masaryk University
Jakub Žák
Research Assistant Professor
Masaryk University
gunnar von heijne
Professor
Stockholms Universitet Naturvetenskapliga fakulteten

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