General Information of MIC (ID: MC0502)
  MIC Name
Methylobacterium mesophilicum SR1.6/6
  Lineage Kingdom: Bacteria
Phylum: Proteobacteria
Class: Alphaproteobacteria
Order: Rhizobiales
Family: Methylobacteriaceae
Genus: Methylobacterium
  Oxygen Sensitivity
Aerobe
  Microbial Metabolism
Respiratory
  Gram
Negative
  Genome Size (bp)
6214449
  Description
Methylobacteria mesophilicum SR1. 6/6 is a strain of aerobic, gram-negative, respiratory metabolism bacteria.
  External Links Taxonomy ID 908290
GOLD Database ID Go0011384

Full List of Metabolite(s) Produced by This MIC
     Molecule Type: Fatty acids
           Metabolite Name: Acetate Click to Show/Hide
              Detailed Infomation Meta Info click to show the detail information of this Metabolite
              Metabolic Classification Microbial producted compound [end-products]
Modification Type Molecule EM Info Cell/Tissue Type Modified sites Condition REF
Histone Acetylation H3K27 EM Info HepG2 cells ACACA promoter Hypoxia [1], [2]
Histone Acetylation H3K27 EM Info HepG2 cells FASN promoter Hypoxia [1], [2]
Histone Acetylation H3K27 EM Info HepG2 cells LDHA promoter Hypoxia [1], [2]
Histone Acetylation H3K27 EM Info HepG2 cells VEGF promoter Hypoxia [1], [2]
Histone Acetylation H3K56 EM Info HepG2 cells ACACA promoter Hypoxia [1], [2]
Histone Acetylation H3K56 EM Info HepG2 cells FASN promoter Hypoxia [1], [2]
Histone Acetylation H3K56 EM Info HepG2 cells LDHA promoter Hypoxia [1], [2]
Histone Acetylation H3K56 EM Info HepG2 cells VEGF promoter Hypoxia [1], [2]
Histone Acetylation H3K9 EM Info HepG2 cells ACACA promoter Hypoxia [1], [2]
Histone Acetylation H3K9 EM Info HepG2 cells FASN promoter Hypoxia [1], [2]
Histone Acetylation H3K9 EM Info HepG2 cells LDHA promoter Hypoxia [1], [2]
Histone Acetylation H3K9 EM Info HepG2 cells VEGF promoter Hypoxia [1], [2]
Histone Deacetylation HDAC9 EM Info Eosinophil cell . Asthma [3], [2]
           Metabolite Name: Lactate Click to Show/Hide
              Detailed Infomation Meta Info click to show the detail information of this Metabolite
              Metabolic Classification Microbial producted compound [end-products]
Modification Type Molecule EM Info Cell/Tissue Type Modified sites Condition REF
miRNA miR-141-3P EM Info Oral epithelial cells . Autistic spectrum disorder [4], [2]
     Molecule Type: Other metabolites
           Metabolite Name: a-Ketoglutarate (a-Kg) Click to Show/Hide
              Detailed Infomation Meta Info click to show the detail information of this Metabolite
              Metabolic Classification Microbial producted compound [precursors]
Modification Type Molecule EM Info Cell/Tissue Type Modified sites Condition REF
Histone Trimethylation H3K27 EM Info Mesenchymal stromal stem cells Bmp2 promoter Age-related osteoporosis [2], [5]
Histone Trimethylation H3K27 EM Info Mesenchymal stromal stem cells Bmp4 promoter Age-related osteoporosis [2], [5]
Histone Trimethylation H3K27 EM Info Mesenchymal stromal stem cells Nanog promoter Age-related osteoporosis [2], [5]
Histone Trimethylation H3K9 EM Info Mesenchymal stromal stem cells Bmp2 promoter Age-related osteoporosis [2], [5]
Histone Trimethylation H3K9 EM Info Mesenchymal stromal stem cells Nanog promoter Age-related osteoporosis [2], [5]


References
1 Acetate functions as an epigenetic metabolite to promote lipid synthesis under hypoxia. Nat Commun. 2016 Jun 30;7:11960. doi: 10.1038/ncomms11960.
2 The Virtual Metabolic Human database: integrating human and gut microbiome metabolism with nutrition and disease. Nucleic Acids Res. 2019 Jan 8;47(D1):D614-D624. doi: 10.1093/nar/gky992.
3 Evidence that asthma is a developmental origin disease influenced by maternal diet and bacterial metabolites. Nat Commun. 2015 Jun 23;6:7320. doi: 10.1038/ncomms8320.
4 Potential Associations Among Alteration of Salivary miRNAs, Saliva Microbiome Structure, and Cognitive Impairments in Autistic Children. Int J Mol Sci. 2020 Aug 27;21(17):6203. doi: 10.3390/ijms21176203.
5 Alpha-ketoglutarate ameliorates age-related osteoporosis via regulating histone methylations. Nat Commun. 2020 Nov 5;11(1):5596. doi: 10.1038/s41467-020-19360-1.

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