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Survivin, a unique member of the family of inhibitors of apoptosis (IAP) proteins, orchestrates intracellular pathways during cell division and apoptosis. Its central regulatory function has inspired several approaches that target survivin for cancer therapy. Analyses in early-branching Metazoa so far propose an exclusive role of survivin as a chromosomal passenger protein, whereas only later during evolution the second, complementary antiapoptotic function might have arisen, concurrent with increased organismal complexity. To lift the veil on the ancestral function(s) of this key regulatory…mehr

Produktbeschreibung
Survivin, a unique member of the family of inhibitors of apoptosis (IAP) proteins, orchestrates intracellular pathways during cell division and apoptosis. Its central regulatory function has inspired several approaches that target survivin for cancer therapy. Analyses in early-branching Metazoa so far propose an exclusive role of survivin as a chromosomal passenger protein, whereas only later during evolution the second, complementary antiapoptotic function might have arisen, concurrent with increased organismal complexity. To lift the veil on the ancestral function(s) of this key regulatory molecule, a survivin homologue of the phylogenetically oldest extant metazoan taxon (phylum Porifera) was identified and functionally characterized. Additionally, new components of the innate defense sentinel in sponges were also identified. This new prototypes could represent a very efficient defense mechanism and may correspond to a new family of intracellular sensing protein, forming a subclass of pattern recognition receptors (PRR).
Autorenporträt
Bérengère Luthringer PhD, joint programme (Marie Curie Excellence Grant) between the Institute of Physiological Chemistry and Pathobiochemistry, Department of applied molecular biology, Johannes Gutenberg University Mainz and the National Institute of Chemical Physics and Biophysics, Laboratory of molecular genetics, Tallinn Technical University.