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To construct the spectral library, 100 μg peptides from each sample were mixed and separated into 10 fractions by a RIGOL L‐3000 HPLC (Puyuanjingdian science and technology Ltd., Beijing, China). In detail, the mixture peptides were injected into a Gemini-NX C18 110A column (Size 250×4.6 mm, Particl...
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966 
Bacterial AraC is a transcription factor family that initiates transcription by recruiting RNA polymerase to the promoter. It also directly regulates various bacterial phenotypes. However, how this transcription factor regulates bacterial virulence and affects host immunity is still largely unknown....
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966 
2023-03-21 | PXD040986 |
The colicin I receptor CirA is a well-studied outer membrane protein that has been reported to play important roles in antibiotic resistance, virulence, and iron homeostasis, although its exact physiological roles require further investigation.
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966 
a DIA-based proteomics method was used to compare the differently protein abundance between cobB deleted mutant and wild type strain.
ORGANISM(S): Aeromonas Hydrophila 07-345-3437 
2020-12-31 | PXD023330 |
Aeromonas hydrophila is a widespread opportunistic pathogen of aquatic fishes in freshwater habitats. The current emergence of antimicrobial-resistant A. hydrophila has been reported in the world while the bacterial antibiotics adaptive mechanism is still largely known. In this study, using quantita...
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Al09-71 
Proteomics analysis reveals the importance of transcriptional regulator slyA in regulation of diverse physiological functions in Aeromonas hydrophila
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966 
2022-10-27 | PXD023117 |
Proteomics analysis reveals bacterial antibiotics resistance mechanism mediated by ahslyA against enoxacin in Aeromonas hydrophila
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966 
2021-03-19 | PXD024843 |
Protein NƐ-lysine acetylation (Kac) modification plays crucial roles on diverse physiological and pathological functions in cell.
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966 
2022-12-09 | PXD038735 |
The heterogeneity and low abundance of protein glycosylation present challenging barriers to the analysis of intact glycopeptides, which is key to comprehensively understanding the role of glycosylation in an organism. Efficient and specific enrichment of intact glycopeptides could help greatly with...
ORGANISM(S): Human 
2021-04-28 | MSV000087324 | MassIVE
This project investigates the proteomic changes in Aeromonas hydrophila under potassium dichromate-induced stress using both data-dependent acquisition (DDA) and data-independent acquisition (DIA) LC-MS/MS strategies. Protein extracts from wild-type and dichromate-treated A. hydrophila cells were en...
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966 
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