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System-wide analysis of SUMOylation dynamics in response to replication stress reveals novel SUMO target proteins and acceptor lysines relevant for genome stability.


ABSTRACT: Data from ProteomeXchange, PXD ID: PXD001736. File: 20140408_QE_UP_U2OS1222_2h_04a.mzml. Published as part of . From the Abstract: {{i}} To address this, we have purified and identified SUMO-2 target proteins regulated by replication stress in human cells. The developed methodology enabled single step purification of His10-SUMO-2 conjugates under denaturing conditions with high yield and high purity ... {{/i}}

INSTRUMENT(S): Instrument

ORGANISM(S): Homo_sapiens_viruses, Human_female

DISEASE(S): Not Available

SUBMITTER: Xiao Z, et al.  

PROVIDER: GPM32310018476 | GPMDB |

REPOSITORIES: GPMDB

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System-wide Analysis of SUMOylation Dynamics in Response to Replication Stress Reveals Novel Small Ubiquitin-like Modified Target Proteins and Acceptor Lysines Relevant for Genome Stability.

Xiao Zhenyu Z   Chang Jer-Gung JG   Hendriks Ivo A IA   Sigurðsson Jón Otti JO   Olsen Jesper V JV   Vertegaal Alfred C O AC  

Molecular & cellular proteomics : MCP 20150309 5


Genotoxic agents can cause replication fork stalling in dividing cells because of DNA lesions, eventually leading to replication fork collapse when the damage is not repaired. Small Ubiquitin-like Modifiers (SUMOs) are known to counteract replication stress, nevertheless, only a small number of relevant SUMO target proteins are known. To address this, we have purified and identified SUMO-2 target proteins regulated by replication stress in human cells. The developed methodology enabled single st  ...[more]

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