SUMOylation, a reversible process used as a ‘fine-tuning’ mechanism to regulate the role of multiple proteins, is conserved throughout evolution. This post-translational modification affects several cellular processes by the modulation of subcellular localization, activity or stability of a variety of substrates. A growing number of proteins have been identified as targets for SUMOylation, although, for many of them, the role of SUMO conjugation on their function is unknown. The use of model systems might facilitate the study of SUMOylation implications in vivo. In the present paper, we have compiled what is known about SUMOylation in Drosophila melanogaster, where the use of genetics provides new insights on SUMOylation's biological roles.
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October 2008
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Conference Article|
September 19 2008
Functional analysis of the SUMOylation pathway in Drosophila
Ana Talamillo;
Ana Talamillo
1Functional Genomics Unit, CIC bioGUNE, Technology Park, Building 801-A, 48160 Derio, Bizkaia, Spain
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Jonatan Sánchez;
Jonatan Sánchez
1Functional Genomics Unit, CIC bioGUNE, Technology Park, Building 801-A, 48160 Derio, Bizkaia, Spain
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Rosa Barrio
Rosa Barrio
1
1Functional Genomics Unit, CIC bioGUNE, Technology Park, Building 801-A, 48160 Derio, Bizkaia, Spain
1To whom correspondence should be addressed (email rbarrio@cicbiogune.es).
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Biochem Soc Trans (2008) 36 (5): 868–873.
Article history
Received:
March 04 2008
Citation
Ana Talamillo, Jonatan Sánchez, Rosa Barrio; Functional analysis of the SUMOylation pathway in Drosophila. Biochem Soc Trans 1 October 2008; 36 (5): 868–873. doi: https://doi.org/10.1042/BST0360868
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