Shared and distinct roles of Esc2 and Mms21 in suppressing genome rearrangements and regulating intracellular sumoylation.
Protein sumoylation, especially when catalyzed by the Mms21 SUMO E3 ligase, plays a major role in suppressing duplication-mediated gross chromosomal rearrangements (dGCRs). How Mms21 targets its substrates in the cell is insufficiently understood. Here, we demonstrate that Esc2, a protein with SUMO-...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2021-01-01
|
Series: | PLoS ONE |
Online Access: | https://doi.org/10.1371/journal.pone.0247132 |
id |
doaj-9063ef024c61476284d1e4cc3e78d021 |
---|---|
record_format |
Article |
spelling |
doaj-9063ef024c61476284d1e4cc3e78d0212021-08-15T04:30:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01162e024713210.1371/journal.pone.0247132Shared and distinct roles of Esc2 and Mms21 in suppressing genome rearrangements and regulating intracellular sumoylation.Raymond T SuhandynataYong-Qi GaoAnn L ZhouYusheng YangPang-Che WangHuilin ZhouProtein sumoylation, especially when catalyzed by the Mms21 SUMO E3 ligase, plays a major role in suppressing duplication-mediated gross chromosomal rearrangements (dGCRs). How Mms21 targets its substrates in the cell is insufficiently understood. Here, we demonstrate that Esc2, a protein with SUMO-like domains (SLDs), recruits the Ubc9 SUMO conjugating enzyme to specifically facilitate Mms21-dependent sumoylation and suppress dGCRs. The D430R mutation in Esc2 impairs its binding to Ubc9 and causes a synergistic growth defect and accumulation of dGCRs with mutations that delete the Siz1 and Siz2 E3 ligases. By contrast, esc2-D430R does not appreciably affect sensitivity to DNA damage or the dGCRs caused by the catalytically inactive mms21-CH. Moreover, proteome-wide analysis of intracellular sumoylation demonstrates that esc2-D430R specifically down-regulates sumoylation levels of Mms21-preferred targets, including the nucleolar proteins, components of the SMC complexes and the MCM complex that acts as the catalytic core of the replicative DNA helicase. These effects closely resemble those caused by mms21-CH, and are relatively unaffected by deleting Siz1 and Siz2. Thus, by recruiting Ubc9, Esc2 facilitates Mms21-dependent sumoylation to suppress the accumulation of dGCRs independent of Siz1 and Siz2.https://doi.org/10.1371/journal.pone.0247132 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Raymond T Suhandynata Yong-Qi Gao Ann L Zhou Yusheng Yang Pang-Che Wang Huilin Zhou |
spellingShingle |
Raymond T Suhandynata Yong-Qi Gao Ann L Zhou Yusheng Yang Pang-Che Wang Huilin Zhou Shared and distinct roles of Esc2 and Mms21 in suppressing genome rearrangements and regulating intracellular sumoylation. PLoS ONE |
author_facet |
Raymond T Suhandynata Yong-Qi Gao Ann L Zhou Yusheng Yang Pang-Che Wang Huilin Zhou |
author_sort |
Raymond T Suhandynata |
title |
Shared and distinct roles of Esc2 and Mms21 in suppressing genome rearrangements and regulating intracellular sumoylation. |
title_short |
Shared and distinct roles of Esc2 and Mms21 in suppressing genome rearrangements and regulating intracellular sumoylation. |
title_full |
Shared and distinct roles of Esc2 and Mms21 in suppressing genome rearrangements and regulating intracellular sumoylation. |
title_fullStr |
Shared and distinct roles of Esc2 and Mms21 in suppressing genome rearrangements and regulating intracellular sumoylation. |
title_full_unstemmed |
Shared and distinct roles of Esc2 and Mms21 in suppressing genome rearrangements and regulating intracellular sumoylation. |
title_sort |
shared and distinct roles of esc2 and mms21 in suppressing genome rearrangements and regulating intracellular sumoylation. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2021-01-01 |
description |
Protein sumoylation, especially when catalyzed by the Mms21 SUMO E3 ligase, plays a major role in suppressing duplication-mediated gross chromosomal rearrangements (dGCRs). How Mms21 targets its substrates in the cell is insufficiently understood. Here, we demonstrate that Esc2, a protein with SUMO-like domains (SLDs), recruits the Ubc9 SUMO conjugating enzyme to specifically facilitate Mms21-dependent sumoylation and suppress dGCRs. The D430R mutation in Esc2 impairs its binding to Ubc9 and causes a synergistic growth defect and accumulation of dGCRs with mutations that delete the Siz1 and Siz2 E3 ligases. By contrast, esc2-D430R does not appreciably affect sensitivity to DNA damage or the dGCRs caused by the catalytically inactive mms21-CH. Moreover, proteome-wide analysis of intracellular sumoylation demonstrates that esc2-D430R specifically down-regulates sumoylation levels of Mms21-preferred targets, including the nucleolar proteins, components of the SMC complexes and the MCM complex that acts as the catalytic core of the replicative DNA helicase. These effects closely resemble those caused by mms21-CH, and are relatively unaffected by deleting Siz1 and Siz2. Thus, by recruiting Ubc9, Esc2 facilitates Mms21-dependent sumoylation to suppress the accumulation of dGCRs independent of Siz1 and Siz2. |
url |
https://doi.org/10.1371/journal.pone.0247132 |
work_keys_str_mv |
AT raymondtsuhandynata sharedanddistinctrolesofesc2andmms21insuppressinggenomerearrangementsandregulatingintracellularsumoylation AT yongqigao sharedanddistinctrolesofesc2andmms21insuppressinggenomerearrangementsandregulatingintracellularsumoylation AT annlzhou sharedanddistinctrolesofesc2andmms21insuppressinggenomerearrangementsandregulatingintracellularsumoylation AT yushengyang sharedanddistinctrolesofesc2andmms21insuppressinggenomerearrangementsandregulatingintracellularsumoylation AT pangchewang sharedanddistinctrolesofesc2andmms21insuppressinggenomerearrangementsandregulatingintracellularsumoylation AT huilinzhou sharedanddistinctrolesofesc2andmms21insuppressinggenomerearrangementsandregulatingintracellularsumoylation |
_version_ |
1721207322504593408 |