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Quantitative DIA proteomics in combination with the transcription inhibitor actinomycin D was performed on the tilapia OmB cell line to identify proteins that are upregulated by transcriptional regulation during hyperosmotic stress. This analysis revealed proteins that are transcriptionally up-regul...
ORGANISM(S): Oreochromis Mossambicus 
2022-09-25 | PXD032181 | panorama
Pelvic organ prolapse (POP) is a common medical condition among women and involves complicated diagnostics and controversial surgical management. The exact molecular mechanism underlying POP is poorly understood, especially at the metabolism level. To explore the metabolic mechanism underlying POP a...
2019-08-14 | MTBLS1033 | MetaboLights
Comprehensive characterization of membrane proteins at the level of proteoforms in complex biological samples by top-down mass spectrometry is of vital importance in revealing their precise functions. Based on a novel membrane protein separation technology, we obtained a dataset of membrane proteofo...
ORGANISM(S): Homo Sapiens Mus Musculus 
2023-02-08 | PXD039949 |
Schizophrenia typically emerges in adolescence or early adulthood. Electrophysiological and several neurochemical changes have linked the GABA deficits to abnormal behaviors induced by NMDAR hypofunction. However, few studies have systematically investigated the molecular basis of GABA deficits, esp...
ORGANISM(S): Mus Musculus 
2022-07-05 | PXD035089 |
To discover potential biomarker(s) for POP diagnosis and explore the molecular mechanism underlying the disease, we here applied an untargeted data-independent acquisition (DIA)-based proteomics approach on vaginal wall tissue samples from patients with POP (n = 19) and controls (n = 8).
ORGANISM(S): Homo Sapiens 
For proteomic analysis, total protein was extracted from 3000 oocytes of each genotype and then analyzed by PTM-biolab (China).
ORGANISM(S): Mus Musculus 
Recent studies have demonstrated that chronic stress can enhance the development of multiple human diseases, including cancer. However, the role of chronic stress in esophageal carcinogenesis and its underlying molecular mechanisms remain unclear. This study uncovered that dysregulated cholesterol m...
ORGANISM(S): Mus Musculus 
2025-01-09 | PXD059616 |
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