| General Information of MIC (ID: MC0069) |
| MIC Name |
Bifidobacterium longum subsp. longum NCC2705
|
| Lineage |
Kingdom: Bacteria
Phylum: Actinobacteria
Class: Actinobacteria
Order: Bifidobacteriales
Family: Bifidobacteriaceae
Genus: Bifidobacterium
|
| Oxygen Sensitivity |
Obligate anaerobe
|
| Microbial Metabolism |
Saccharolytic; Fermentative
|
| Gram |
Positive
|
| Description |
Bifidobacteria longum subsp. longum NCC2705 is a subspecies of gram-positive, anaerobic bacteria from the species Bifidobacteria longum.
|
| External Links |
Taxonomy ID |
1679
|
| Full List of Metabolite(s) Produced by This MIC |
| Molecule Type: Fatty acids |
| Metabolite Name: Acetate |
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|
| Detailed Infomation |
Meta Info
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|
Metabolic Classification |
Microbial producted compound [end-products] |
| Modification Type |
Molecule |
EM Info |
Cell/Tissue Type |
Modified sites |
Condition |
REF |
| Histone Acetylation |
H4 |
EM Info
|
Eosinophil cell |
Foxo3A promoter |
Asthma |
[1], [2] |
| Histone Acetylation |
H3K27 |
EM Info
|
HepG2 cells |
FASN promoter |
Hypoxia |
[3], [2] |
| Histone Acetylation |
H3K27 |
EM Info
|
HepG2 cells |
LDHA promoter |
Hypoxia |
[3], [2] |
| Histone Acetylation |
H3K56 |
EM Info
|
HepG2 cells |
FASN promoter |
Hypoxia |
[3], [2] |
| Histone Acetylation |
H3K9 |
EM Info
|
HepG2 cells |
ACACA promoter |
Hypoxia |
[3], [2] |
| Histone Acetylation |
H3K9 |
EM Info
|
HepG2 cells |
LDHA promoter |
Hypoxia |
[3], [2] |
| Histone Deacetylation |
HDAC9 |
EM Info
|
Eosinophil cell |
. |
Asthma |
[1], [2] |
| References |
| 1 |
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.
|
| 2 |
Mutual Cross-Feeding Interactions between Bifidobacterium longum subsp. longum NCC2705 and Eubacterium rectale ATCC 33656 Explain the Bifidogenic and Butyrogenic Effects of Arabinoxylan Oligosaccharides Appl Environ Microbiol. 2015 Nov;81(22):7767-81. doi: 10.1128/AEM.02089-15. Epub 2015 Aug 28.
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| 3 |
Acetate functions as an epigenetic metabolite to promote lipid synthesis under hypoxia. Nat Commun. 2016 Jun 30;7:11960. doi: 10.1038/ncomms11960.
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