Sort   by:  
 Page size 
This experiment performed RNA-seq of transcriptome and translatome (translating mRNA) of Caco-2 cells We extracted transcriptome and translatome from Caco-2 cells and deep sequenced them
ORGANISM(S): Homo sapiens 
Aeromonas hydrophila is an aquatic pathogen of freshwater fish. The emergence of widespread antimicrobial-resistance strains of this pathogen has caused increasing rates of fish infections. Our previous research reported that A. hydrophila yeeY, a LysR-type transcriptional regulator (LTTR), negative...
ORGANISM(S): Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966 
2020-07-06 | PXD020208 |
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 |
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 
2022-10-28 | PXD037825 |
We report an integrate strategy that combines fast liquid chromatography (LC) separation, deep learning-based retention time (RT) prediction and MS1-only acquisition for sensitive and rapid single-cell proteome analysis. Finally, SCP-MS1 was applied to sorafenib resistant HepG2 cells.
ORGANISM(S): Homo Sapiens 
2022-08-26 | PXD036211 |
This study utilizes quantitative proteomics to investigate the impact of the cobQ deletion (ΔahcobQ) on the global protein expression profile in A. hydrophila.
ORGANISM(S): Aeromonas Hydrophila 
2024-09-24 | PXD056207 |
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 
2022-04-25 | PXD031300 |
The antibiotics resistance of Edwardsiella tarda is prevailing, seeking a novel antimicrobial strategies extremely urgent. Lysine acylation has been proved to play important role on the bacterial physiological function while its role on bacterial antibiotics resistance mechanism still largely unclea...
ORGANISM(S): Edwardsiella Tarda Eib202 
2022-05-12 | PXD033818 |
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 |
Sort   by:  
 Page size