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Unknown
(18)
Metabolomics
(3)
Proteomics
(3)
Transcriptomics
(1)
Organisms
Acaryochloris marina MBIC11017
(3)
Euscelidius variegatus
(3)
Botryococcus braunii
(3)
Pantoea agglomerans pv. betae
(3)
'Phaseolus vulgaris' phytoplasma
(3)
Rhizorhabdus wittichii RW1
(3)
Sagittula stellata E-37
(3)
Deinococcus geothermalis DSM 11300
(3)
Marivirga tractuosa DSM 4126
(3)
environmental samples
(3)
Aeromonas sp. enrichment culture clone AM2
(3)
Mycoplasmopsis bovis HB0801
(3)
NEWT:447094
(3)
Planctopirus limnophila DSM 3776
(3)
Candidatus Thiosymbion oneisti
(3)
Drosophila mauritiana
(3)
Staphylococcus carnosus subsp. carnosus TM300
(3)
Cellulophaga lytica DSM 7489
(3)
Sulfitobacter indolifex HEL-45
(3)
Populus tremula
(3)
Bordetella parapertussis Bpp5
(3)
Aliivibrio fischeri
(3)
Vibrio harveyi NBRC 15634 = ATCC 14126 = KCTC 12724
(3)
environmental samples
(3)
Oceanicola granulosus HTCC2516
(3)
Salmonella bongori NCTC 12419
(3)
Laxus oneistus
(3)
Halomonas sp. HL-48
(3)
Kineococcus radiotolerans SRS30216 = ATCC BAA-149
(3)
Homo sapiens
(1)
Repository
pride
(3)
MetaboLights
(2)
biostudies-arrayexpress
(1)
MetabolomicsWorkbench
(1)
Tissue
Leaf
(2)
Heart
(1)
Blood
(1)
Photosynthetic cell
(1)
Cell culture
(1)
Disease
Ischemia
(1)
Technology Type
Mass Spectrometry
(4)
Shotgun proteomics
(3)
Mass spectrometry
(1)
Mass spectrometry assay
(1)
ESI
(1)
Gel-based experiment
(1)
Instrument Platform
Liquid Chromatography MS - negative - reverse phase
(2)
Liquid Chromatography MS - positive - reverse phase
(2)
Publication Date
2022
(3)
2012
(1)
2026
(1)
2025
(1)
Metabolite Name
PI 38:6
(2)
PC O-41:3
(2)
CoQ9
(2)
CoQ8
(2)
CoQ10
(2)
CE 26:4
(2)
CE 24:6
(2)
CE 24:2
(2)
CE 24:1
(2)
CE 20:2
(2)
CAR 24:1
(2)
CAR 20:4
(2)
CAR 20:1
(2)
CAR 20:0
(2)
CAR 18:3
(2)
CAR 18:2
(2)
CAR 18:1
(2)
CAR 18:0
(2)
CAR 16:1
(2)
LPC O-18:1
(2)
LPC O-16:0
(2)
CE 22:4
(2)
PI 40:4
(2)
PI 38:5
(2)
PI 38:4
(2)
PC 34:0
(2)
PE 40:5
(2)
LPC O-18:2
(2)
PE 40:7
(2)
PE 38:7
(2)
Study type
Transcription profiling by array
(1)
Release Date
2024
(2)
2023
(2)
2022
(2)
2018
(2)
2008
(2)
2012
(1)
2021
(1)
2020
(1)
2017
(1)
2016
(1)
2015
(1)
2014
(1)
2013
(1)
2011
(1)
Lab affiliation
Department of Biochemistry & Molecular Biology, Michigan State Univeristy
(1)
Michigan State University, Department of Biochemistry & Molecular Biology
(1)
Department of Biochemistry & Molecular Biology, Michigan State University
(1)
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Loss of Drosophila Coq8 results in impaired survival, locomotor deficits and photoreceptor degeneration.
Not available
S-EPMC8827264
|
biostudies-literature
Cite
Intragenic suppressor mutations of the COQ8 protein kinase homolog restore coenzyme Q biosynthesis and function in Saccharomyces cerevisiae.
Not available
S-EPMC7263595
|
biostudies-literature
Cite
Conserved Lipid and Small-Molecule Modulation of COQ8 Reveals Regulation of the Ancient Kinase-like UbiB Family.
Not available
S-EPMC5819996
|
biostudies-literature
Cite
Expression of the human atypical kinase ADCK3 rescues coenzyme Q biosynthesis and phosphorylation of Coq polypeptides in yeast coq8 mutants.
Not available
S-EPMC3075350
|
biostudies-literature
Cite
Small-molecule inhibition of the archetypal UbiB protein COQ8.
Not available
S-EPMC9898131
|
biostudies-literature
Cite
CABC1 gene mutations cause ubiquinone deficiency with cerebellar ataxia and seizures.
Not available
S-EPMC2427298
|
biostudies-literature
Cite
Cerebellar Ataxia and Coenzyme Q Deficiency through Loss of Unorthodox Kinase Activity.
Not available
S-EPMC5012427
|
biostudies-literature
Cite
ADCK3, an ancestral kinase, is mutated in a form of recessive ataxia associated with coenzyme Q10 deficiency.
Not available
S-EPMC2427193
|
biostudies-literature
Cite
Yeast Coq9 controls deamination of coenzyme Q intermediates that derive from para-aminobenzoic acid.
Not available
S-EPMC4516658
|
biostudies-literature
Cite
UbiB proteins regulate cellular CoQ distribution in Saccharomyces cerevisiae.
Not available
S-EPMC8346625
|
biostudies-literature
Cite
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