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Zawartość zarchiwizowana w dniu 2024-05-30

Bridging spatial and temporal resolution gaps in the study of cell division

Cel

Cell division underlies the growth and development of all living organisms. Following partitioning of bulk cytoplasmic contents by cleavage furrow ingression, dividing animal cells split by a distinct process termed abscission. Whereas a number of factors required for abscission have been identified in previous studies, it is not known by which mechanism they mediate fission of the intercellular bridge between the nascent sister cells. Here, we will establish correlative workflows of time-lapse imaging, super resolution fluorescence microscopy, electron tomography, and electrophysiological assays to bridge spatial and temporal resolution gaps in the study of abscission. We will further develop computational tools for image-based RNAi screening. With this, we aim to:
1) elucidate how membrane and cytoskeletal dynamics coordinately split the intercellular bridge;
2) uncover the signaling pathways controlling abscission timing.
Failure in abscission can lead to aneuploidy and cancer. Elucidating its mechanism and temporal control is therefore of general biological and medical relevance. The computational and correlative imaging methods developed in this project will further provide the research community new possibilities for mechanistic studies in intact cells.

Zaproszenie do składania wniosków

ERC-2011-StG_20101109
Zobacz inne projekty w ramach tego zaproszenia

System finansowania

ERC-SG - ERC Starting Grant

Instytucja przyjmująca

INSTITUT FUER MOLEKULARE BIOTECHNOLOGIE GMBH
Wkład UE
€ 1 500 000,00
Adres
DR BOHRGASSE 3
1030 Wien
Austria

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Region
Ostösterreich Wien Wien
Rodzaj działalności
Private for-profit entities (excluding Higher or Secondary Education Establishments)
Kierownik naukowy
Daniel Wolfram Gerlich (Prof.)
Kontakt administracyjny
Tanja Winkler (Ms.)
Linki
Koszt całkowity
Brak danych

Beneficjenci (1)