PXD067296 is an
original dataset announced via ProteomeXchange.
Dataset Summary
| Title | Regulation of ADP-ribosyltransferase activity by ART domain dimerization in PARP15 |
| Description | The catalytic domain of PARP15 dimerizes, forming the same dimer interface in solution that had already been captured by X-ray crystallography of the domain. Furthermore, we show that the formation of dimers is a prerequisite for catalytic activity and that monomeric mutant variants of the domain were catalytically inactive. Our findings suggest a regulatory mechanism by which dimerization is linked to either target engagement or placement of a catalytic residue, rather than NAD+ co-substrate binding, and by which the two protomers of the dimer operate independent of one another. |
| HostingRepository | PRIDE |
| AnnounceDate | 2025-09-29 |
| AnnouncementXML | Submission_2025-09-29_04:27:21.069.xml |
| DigitalObjectIdentifier | |
| ReviewLevel | Peer-reviewed dataset |
| DatasetOrigin | Original dataset |
| RepositorySupport | Unsupported dataset by repository |
| PrimarySubmitter | Katja Bernfur |
| SpeciesList | scientific name: Homo sapiens (Human); NCBI TaxID: 9606; |
| ModificationList | iodoacetamide derivatized residue |
| Instrument | Bruker Daltonics timsTOF series |
Dataset History
| Revision | Datetime | Status | ChangeLog Entry |
| 0 | 2025-08-13 06:18:50 | ID requested | |
| ⏵ 1 | 2025-09-29 04:27:21 | announced | |
Publication List
| Dataset with its publication pending |
Keyword List
| submitter keyword: crosslinking mass spectrometry,PARP15 |
Contact List
| Herwig Schüler |
| contact affiliation | universitetslektor |
| contact email | herwig.schuler@biochemistry.lu.se |
| lab head | |
| Katja Bernfur |
| contact affiliation | Lund University |
| contact email | katja.bernfur@biochemistry.lu.se |
| dataset submitter | |
Full Dataset Link List
Dataset FTP location
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| PRIDE project URI |
Repository Record List
[ + ]
[ - ]
- PRIDE
- PXD067296
- Label: PRIDE project
- Name: Regulation of ADP-ribosyltransferase activity by ART domain dimerization in PARP15