OMIX008223

1Summary
Title Metabolic Recoding of 5'-Methylthioadenosine- Mediated H3K79me1 Demethylation Antagonizes Cadmium-Induced Breast Cancer Progression by Maintaining Autophagic Flux-3
Description The samples were subsequently loaded onto a 12% separation gel and subjected to SDS-PAGE electrophoresis for protein separation. The target band was excised into 1 mm³ gel pieces, which were then digested with trypsin. An extraction solution was prepared consisting of 5% trifluoroacetic acid (TFA), 50% acetonitrile (ACN), and 45% water to extract the peptides. Desalting was performed using a self-packed desalting column, followed by solvent evaporation in a vacuum centrifugal concentrator at 45°C to prepare for subsequent mass spectrometry analysis. Finally, the peptides were analyzed using liquid chromatography-tandem mass spectrometry (LC-MS/MS) with an Acclaim PepMap RPLC C18 column. The mobile phase consisted of water containing 0.1% formic acid and an 80% ACN solution, with a flow rate of 300 nL/min and an analysis duration of 120 minutes.
Organism Homo sapiens
Data Type Proteomic Data by Mass Spectrometry (MS)
Data Accessibility Open-access
BioProject PRJCA033478
Release Date 2026-01-03
Submitter li li (laoweishuju@163.com)
Organization Third Military Medical University(Army Medical University)
Submission Date 2024-12-10
2Files & Download

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File ID File Title Number/Samples File Type File Size File Suffix Download
OMIX008223-01 raw data 13 Proteomic Data by Mass Spectrometry (MS) 5.25 GB zip
3Relevant Publications
Paper Title Journal Name Publish Time Accession Citing Type
5’‐Methylthioadenosine Metabolic Reprogramming Drives H3K79 Monomethylation‐Mediated PAK2 Upregulation to Promote Cadmium‐Induced Breast Cancer Progression by Impairing Autophagic Flux Advanced Science 2025-09 OMIX008223 OMIX008219 Deposit

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