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CTP synthase (CTPS) catalyzes the formation of CTP in de novo pyrimidine biosynthesis pathway. Compartmentalization of CTPS into filamentous structure is evolutionarily conserved from E.coli, yeast, Drosophila, mice to humans. Recently, we have demonstrated that histidine-mediated protein methylatio...
ORGANISM(S): Homo sapiens (Human) 
2020-03-24 | PXD010921 | Pride
ESI-LC-MSMS result of byssal filament proteins from Barbatia virescens. Byssal filament proteins were obtained with the hydroxylamine extraction method.
ORGANISM(S): Barbatia Virescens (ncbitaxon:6559) 
2024-05-17 | MSV000094783 | MassIVE
CTP synthase (CTPS) catalyzes the formation of CTP in de novo pyrimidine biosynthesis pathway. Compartmentalization of CTPS into filamentous structure is evolutionarily conserved from E.coli, yeast, Drosophila, mice to humans. Previously, we demonstrated that histidine (His) mediated methylation pro...
ORGANISM(S): Homo sapiens (Human) 
2020-03-24 | PXD015507 | Pride
Transcriptional analysis of UTI89 - uropathogenic E.coli (UPEC) strain grown in urine/Luria bertani medium culture in vitro as well as during three distinct phases of UPEC bladder infection: intracellular growth, filament formation and filament reversal. UTI89 was used to infect a bladder epithelial...
ORGANISM(S): Escherichia coli UTI89 
Increased levels of 17-β estradiol (E2) due to pregnancy in young women or to hormonal replacement therapy in postmenopausal women have long been associated with an increased risk of yeast infections. Nevertheless, the effect underlying the role of E2 in Candida albicans infections is not wel...
2025-09-11 | MTBLS5821 | MetaboLights
This a model from the article: Vortex dynamics in three-dimensional continuous myocardium with fiber rotation: Filament instability and fibrillation. Fenton F, Karma A. Chaos 1998 Mar;8(1):20-47 12779708 , Abstract: ...
2005-01-01 | MODEL0911989198 | BioModels
In the syntrophic interaction between fermentative bacteria (Pelotomaculum thermopropionicum) and methanogenic archaea (methanogens: Methanothemobacter thermautotrophicus), reducing equivalents (e.g., H2) produced by fermentative bacteria should efficiently be consumed by methanogens in order for th...
ORGANISM(S): Methanobacterium thermoautotrophicum 
Transcriptomes of the developing larval ovaries of Drosophila melanogaster during terminal filament formation
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