Drosophila IAP1-mediated ubiquitylation controls activation of the initiator caspase DRONC independent of protein degradation.

Ubiquitylation targets proteins for proteasome-mediated degradation and plays important roles in many biological processes including apoptosis. However, non-proteolytic functions of ubiquitylation are also known. In Drosophila, the inhibitor of apoptosis protein 1 (DIAP1) is known to ubiquitylate th...

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Main Authors: Tom V Lee, Yun Fan, Shiuan Wang, Mayank Srivastava, Meike Broemer, Pascal Meier, Andreas Bergmann
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-09-01
Series:PLoS Genetics
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/21909282/pdf/?tool=EBI
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spelling doaj-bc434fd8b28545628097a25934903ea02021-04-21T14:32:39ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042011-09-0179e100226110.1371/journal.pgen.1002261Drosophila IAP1-mediated ubiquitylation controls activation of the initiator caspase DRONC independent of protein degradation.Tom V LeeYun FanShiuan WangMayank SrivastavaMeike BroemerPascal MeierAndreas BergmannUbiquitylation targets proteins for proteasome-mediated degradation and plays important roles in many biological processes including apoptosis. However, non-proteolytic functions of ubiquitylation are also known. In Drosophila, the inhibitor of apoptosis protein 1 (DIAP1) is known to ubiquitylate the initiator caspase DRONC in vitro. Because DRONC protein accumulates in diap1 mutant cells that are kept alive by caspase inhibition ("undead" cells), it is thought that DIAP1-mediated ubiquitylation causes proteasomal degradation of DRONC, protecting cells from apoptosis. However, contrary to this model, we show here that DIAP1-mediated ubiquitylation does not trigger proteasomal degradation of full-length DRONC, but serves a non-proteolytic function. Our data suggest that DIAP1-mediated ubiquitylation blocks processing and activation of DRONC. Interestingly, while full-length DRONC is not subject to DIAP1-induced degradation, once it is processed and activated it has reduced protein stability. Finally, we show that DRONC protein accumulates in "undead" cells due to increased transcription of dronc in these cells. These data refine current models of caspase regulation by IAPs.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/21909282/pdf/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Tom V Lee
Yun Fan
Shiuan Wang
Mayank Srivastava
Meike Broemer
Pascal Meier
Andreas Bergmann
spellingShingle Tom V Lee
Yun Fan
Shiuan Wang
Mayank Srivastava
Meike Broemer
Pascal Meier
Andreas Bergmann
Drosophila IAP1-mediated ubiquitylation controls activation of the initiator caspase DRONC independent of protein degradation.
PLoS Genetics
author_facet Tom V Lee
Yun Fan
Shiuan Wang
Mayank Srivastava
Meike Broemer
Pascal Meier
Andreas Bergmann
author_sort Tom V Lee
title Drosophila IAP1-mediated ubiquitylation controls activation of the initiator caspase DRONC independent of protein degradation.
title_short Drosophila IAP1-mediated ubiquitylation controls activation of the initiator caspase DRONC independent of protein degradation.
title_full Drosophila IAP1-mediated ubiquitylation controls activation of the initiator caspase DRONC independent of protein degradation.
title_fullStr Drosophila IAP1-mediated ubiquitylation controls activation of the initiator caspase DRONC independent of protein degradation.
title_full_unstemmed Drosophila IAP1-mediated ubiquitylation controls activation of the initiator caspase DRONC independent of protein degradation.
title_sort drosophila iap1-mediated ubiquitylation controls activation of the initiator caspase dronc independent of protein degradation.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2011-09-01
description Ubiquitylation targets proteins for proteasome-mediated degradation and plays important roles in many biological processes including apoptosis. However, non-proteolytic functions of ubiquitylation are also known. In Drosophila, the inhibitor of apoptosis protein 1 (DIAP1) is known to ubiquitylate the initiator caspase DRONC in vitro. Because DRONC protein accumulates in diap1 mutant cells that are kept alive by caspase inhibition ("undead" cells), it is thought that DIAP1-mediated ubiquitylation causes proteasomal degradation of DRONC, protecting cells from apoptosis. However, contrary to this model, we show here that DIAP1-mediated ubiquitylation does not trigger proteasomal degradation of full-length DRONC, but serves a non-proteolytic function. Our data suggest that DIAP1-mediated ubiquitylation blocks processing and activation of DRONC. Interestingly, while full-length DRONC is not subject to DIAP1-induced degradation, once it is processed and activated it has reduced protein stability. Finally, we show that DRONC protein accumulates in "undead" cells due to increased transcription of dronc in these cells. These data refine current models of caspase regulation by IAPs.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/21909282/pdf/?tool=EBI
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