<HashMap><database>iProX</database><scores/><additional><omics_type>Proteomics</omics_type><submitter>Xiangmin Lin</submitter><species>Aeromonas Hydrophila Subsp. Hydrophila Atcc 7966</species><full_dataset_link>http://www.iprox.org/page/project.html?id=IPX0009950000</full_dataset_link><submitter_email>313461278@qq.com</submitter_email><submitter_affiliation>Fujian Agriculture and Forestry University</submitter_affiliation><sample_protocol></sample_protocol><repository>iProX</repository><data_protocol></data_protocol><name_synonyms>Proteus ichthyosmius., determination, Lysine Hydrochloride, K, protein complex, Proteins, epsilon-diaminocaproic acid, Gene, Proteus hydrophilus, proteins, Pseudomonas hydrophila, protein, alpha, Bacillus hydrophilus fuscus, protein-containing complex, Protein Gene Products, Gene Proteins, protein polypeptide chains, Lysine Acetate, LYS, native protein, natural protein, polypeptide chain, Aeromonas dourgesi, Acetate, Aeromonas hydrophila (Chester 1901) Stanier 1943 (Approved Lists 1980), Lysin, Aeromonas liquefaciens, chemical analysis, Protein, Gene Products, lysine, 2, assay, Lysine, Bacterium hydrophilum, protein aggregate, 6-diaminohexanoic acid, L-Lysine, Enisyl, L Lysine</name_synonyms><description_synonyms>liquid chromatography tandem mass spectroscopy, macromolecules, Metabolic Networks, Networks, Metabolic Process, Gene Ontology Projects, determination, Processes, Metabolic Concepts, Gene, Pentosephosphate Shunts, Pentose, ion(3-), protein, Network, Metabolic Processes, pentose phosphate shunt, Pentose Shunts, Pentose Phosphate Shunt, Gene Ontology Project, Pentosephosphate, Gene Ontology, cit(3-), LC-MS-MS, protrusion, Biological Processes, Biological Phenomenon, Hexose Monophosphate Shunts, pentose-phosphate pathway, Biological, Aeromonas liquefaciens, Metabolism, LC-MSMS, pentose phosphate pathway, Gene Products, Project, Concepts, 2, citric acid cycle, Bacterium hydrophilum, Metabolism Concept, Hexose Monophosphate Shunt, Phenomenon, membrane transport, Metabolism Phenomena, Pentose-Phosphate Pathway, Proteus ichthyosmius, LCMSMS, Pentose Phosphate Pathways, Metabolic Concept, Pathways, Pseudomonas hydrophila, proteins, Shunts, citrate, Pentosephosphate Pathways, 3-propanetricarboxylate, Catabolism, Anhydrous, Biologic, Pentosephosphate Shunt, LC-MS2, Pathway, anatomical protrusion, polymer molecule, Citrate, Process, Krebs cycle, Citric Acid Monohydrate, Proteins, LC-MS/MS, Metabolic Network, 2-hydroxytricarballylate, Bacillus hydrophilus fuscus, Citric Acid, hexose monophosphate pathway, Metabolic Phenomena, Concept, CITRATE ANION, Metabolism Concepts, Shunt, LC/MS/MS, native protein, Aeromonas dourgesi, oxidative TCA cycle, Protein, chemical analysis, Phenomena, Pentose-Phosphate Pathways, Ontology Projects, Pentose Phosphate, Biological Process, Metabolic Pathways, Metabolic Phenomenon, polymer, Ontology Project, Gene Ontologies, Biologic Phenomena, Uralyt U, Ontology, Ontologies, Projects, Metabolic, Anhydrous Citric Acid, cit, Pentose Phosphate Shunts, Proteus hydrophilus, Pentose Shunt, methane metabolism., polymers, Hexose Monophosphate, 3-propanetricarboxylic acid, Protein Gene Products, 2-hydroxy-1, Gene Proteins, Pentose-Phosphate, TCA cycle, 3-propanetricarboxylate(3-), spine, Aeromonas hydrophila (Chester 1901) Stanier 1943 (Approved Lists 1980), liquid chromatography-tandem mass spectroscopy, Pentosephosphate Pathway, response to biotic stress, ATP hydrolysis coupled transmembrane transport, liquid chromatography tandem mass spectrometry, Metabolic Pathway, response to abiotic stress, assay, macromolecule, Anabolism</description_synonyms></additional><is_claimable>false</is_claimable><name>Global Analysis of Protein Lysine Crotonylation Profiles  in Aeromonas hydrophila</name><description>The global proteomic of Kcr in Aeromonas hydrophila was mapped, and 4424 Kcr sites on 1248 proteins were identified using LC-MS/MS. Gene ontology analysis indicated that in the category of 'biological processes', Kcr proteins are primarily enriched in cellular and primary metabolic processes, response to stress, macromolecule biosynthetic processes, and transmembrane transport. The enrichment of KEGG-annotated Kcr proteins were also evaluated, which showed that the proteins are involved in diverse metabolic pathways, including pentose phosphate pathway, citrate-TCA cycle, methane metabolism.</description><dates><publication>Mon Oct 14 00:00:00 BST 2024</publication></dates><accession>PXD056773</accession><cross_references><TAXONOMY>380703</TAXONOMY></cross_references></HashMap>