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@ARTICLE{Melzer:138658,
author = {Melzer, Juliane and Brömer, Meike},
title = {{N}erve-racking - apoptotic and non-apoptotic roles of
caspases in the nervous system of {D}rosophila.},
journal = {European journal of neuroscience},
volume = {44},
number = {1},
issn = {0953-816X},
address = {Oxford [u.a.]},
publisher = {Blackwell},
reportid = {DZNE-2020-04980},
pages = {1683-1690},
year = {2016},
abstract = {Studies using Drosophila as a model system have contributed
enormously to our knowledge of caspase function and
regulation. Caspases are best known as central executioners
of apoptosis but also control essential physiological
processes in a non-apoptotic manner. The Drosophila genome
codes for seven caspases and in this review we provide an
overview of current knowledge about caspase function in the
nervous system. Caspases regulate neuronal death at all
developmental stages and in various neuronal populations. In
contrast, non-apoptotic roles are less well understood. The
development of new genetically encoded sensors for caspase
activity provides unprecedented opportunities to study
caspase function in the nervous system in more detail. In
light of these new tools we discuss the potential of
Drosophila as a model to discover new apoptotic and
non-apoptotic neuronal roles of caspases.},
subtyp = {Review Article},
keywords = {Animals / Apoptosis / Caspases: genetics / Caspases:
metabolism / Drosophila: genetics / Drosophila: growth $\&$
development / Drosophila: metabolism / Drosophila Proteins:
genetics / Drosophila Proteins: metabolism / Nervous System:
metabolism / Neurogenesis / Drosophila Proteins (NLM
Chemicals) / Caspases (NLM Chemicals)},
cin = {AG Brömer 1},
ddc = {610},
cid = {I:(DE-2719)5000021},
pnm = {341 - Molecular Signaling (POF3-341)},
pid = {G:(DE-HGF)POF3-341},
typ = {PUB:(DE-HGF)16},
pubmed = {pmid:26900934},
doi = {10.1111/ejn.13213},
url = {https://pub.dzne.de/record/138658},
}