wbi@bwh.harvard.edu

Proteomic Analysis Identifies ATE1-Dependent Arginylation Dysregulation across Meningioma Grades

10.1021/acs.jproteome.5c01173.s004, 10.1021/acs.jproteome.5c01173.s003Macedo-da-Silva et al., 2026
Modality
Proteomics (bulk MS)
Sample count
12
Patient count
13
Institution
University of São Paulo (USP), GlycoProteomics Laboratory (Dept. of Parasitology, ICB) / Faculdade de Medicina FMUSP
Corresponding author
Giuseppe Palmisano
Platform
Not reported (proteinGroups.txt is a MaxQuant search-result export; instrument model not stated in the supplementary file itself)
Access type
open
Tissue preservation
Not reported
WHO edition
Not reported
Grade breakdown
G1: 7 G2: 5 G3: not reported
Sex distribution
13 clinical cases: 8 female, 5 male (Table 1 of supplementary clinical file); sex not separately reported for the 12-sample proteomics subset
Age distribution
13 clinical cases range 33-72 years (Table 1 of supplementary clinical file)
Anatomic location
11 of 13 clinical cases convexity, 2 of 13 skull base (SB), per Table 1 of the supplementary clinical annotation file
Brain invasion
Not reported
Normal/control tissue
None
WHO grade breakdown availablePrimary vs. recurrent annotatedMolecular subtype annotatedOutcome/survival dataPeer-reviewed
  • Macedo-da-Silva J, et al. Proteomic Analysis Identifies ATE1-Dependent Arginylation Dysregulation across Meningioma Grades. Journal of Proteome Research, 2026. PMID 42372081 · DOI

Sources

  • Figshare
    https://acs.figshare.com/articles/dataset/Proteomic_Analysis_Identifies_ATE1-Dependent_Arginylation_Dysregulation_across_Meningioma_Grades/32829844
  • Figshare
    https://acs.figshare.com/articles/dataset/Proteomic_Analysis_Identifies_ATE1-Dependent_Arginylation_Dysregulation_across_Meningioma_Grades/32829841
  • Figshare
    https://acs.figshare.com/articles/dataset/Proteomic_Analysis_Identifies_ATE1-Dependent_Arginylation_Dysregulation_across_Meningioma_Grades/32829844
  • PubMed
    https://pubmed.ncbi.nlm.nih.gov/42372081/
  • DOI
    https://doi.org/10.1021/acs.jproteome.5c01173