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PXD073328

PXD073328 is an original dataset announced via ProteomeXchange.

Dataset Summary
TitleCATALASE INTERACTING RCC1-LIKE 1 contributes to hydrogen peroxide homeostasis in Arabidopsis
DescriptionReactive oxygen species (ROS) are central regulators of plant growth and stress responses, and their cellular levels are tightly controlled by antioxidant systems, including the evolutionarily conserved catalases that decompose hydrogen peroxide (H2O2) predominantly within peroxisomes and glyoxysomes. Despite their importance, key aspects of catalase biogenesis, regulation, subcellular targeting, and potential extra-peroxisomal functions remain poorly understood. Using affinity purification of the UV-B photoreceptor UVR8 coupled with mass spectrometry, we identified a REGULATOR OF CHROMATIN CONDENSATION 1–like protein in Arabidopsis, which we named CATALASE-INTERACTING RCC1-LIKE 1 (CAIR1). CAIR1 interacts with all three catalase isoforms (CAT1–CAT3) as well as their chaperone NO CATALASE ACTIVITY 1 (NCA1). Loss-of-function cair1 mutants partially phenocopy cat2 and nca1, exhibiting reduced catalase activity, enhanced sensitivity to oxidative stress and alkaline growth conditions, and impaired primary root elongation. Mechanistically, cytosolic interaction between CAIR1 and CAT2 enhances total cellular catalase activity by facilitating peroxisomal import and proper subcellular localization of CAT2. In the absence of CAIR1, CAT2 forms aggregates, likely accounting for the observed loss of catalase activity. Notably, CAIR1 undergoes reversible, redox-dependent oligomerization that strengthens its interaction with catalases. Mutation of CAIR1 at Cys-356 and Cys-545 compromises this interaction under elevated ROS conditions and fails to rescue the oxidative stress sensitivity of cair1 mutants. Moreover, UV-B exposure suppresses catalase activity by weakening the interaction between CAIR1 and catalases, linking environmental light signaling to cellular redox regulation. Together, our findings reveal CAIR1 as a dynamic redox-responsive regulator of catalase activity that maintains cellular redox homeostasis by coordinating catalase localization and function through reversible oligomerization.
HostingRepositoryPRIDE
AnnounceDate2026-07-15
AnnouncementXMLSubmission_2026-07-15_07:55:09.485.xml
DigitalObjectIdentifier
ReviewLevelPeer-reviewed dataset
DatasetOriginOriginal dataset
RepositorySupportUnsupported dataset by repository
PrimarySubmitterSara Christina Stolze
SpeciesList scientific name: Arabidopsis thaliana (Mouse-ear cress); NCBI TaxID: NEWT:3702;
ModificationListNo PTMs are included in the dataset
InstrumentOrbitrap Exploris 480; Q Exactive; Q Exactive Plus
Dataset History
RevisionDatetimeStatusChangeLog Entry
02026-01-21 01:45:16ID requested
12026-07-15 07:55:10announced
Publication List
Dataset with its publication pending
Keyword List
submitter keyword: H2O2 homeostasis, plant growth, Arabidopsis thaliana, stress-response, RCC1-like protein
Contact List
Hirofumi Nakagami
contact affiliationBasic Immune System of Plants / Protein Mass Spectrometry Max Planck Institute for Plant Breeding Research Carl-von-Linne-Weg 10, 50829 Cologne, Germany
contact emailnakagami@mpipz.mpg.de
lab head
Sara Christina Stolze
contact affiliationPlant Proteomics and Mass Spectrometry Group Max Planck Institute for Plant Breeding Research Carl-von-Linné Weg 10 50829 Cologne
contact emailstolze@mpipz.mpg.de
dataset submitter
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