The Emergence of 2-Oxoglutarate as a Master Regulator Metabolite.
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Loss of Nardilysin, a Mitochondrial Co-chaperone for α-Ketoglutarate Dehydrogenase, Promotes mTORC1 Activation and NeurodegenerationPII Protein-Derived FRET Sensors for Quantification and Live-Cell Imaging of 2-Oxoglutarate.Engineering glucose metabolism of Escherichia coli under nitrogen starvation.Optimality and sub-optimality in a bacterial growth law.Physical, chemical, and metabolic state sensors expand the synthetic biology toolbox for Synechocystis sp. PCC 6803.PipY, a Member of the Conserved COG0325 Family of PLP-Binding Proteins, Expands the Cyanobacterial Nitrogen Regulatory Network.Biofilm formation enables free-living nitrogen-fixing rhizobacteria to fix nitrogen under aerobic conditions.Crosstalk between the tricarboxylic acid cycle and peptidoglycan synthesis in Caulobacter crescentus through the homeostatic control of α-ketoglutarate.Plasma and Mucosal Immunoglobulin M, Immunoglobulin A, and Immunoglobulin G Responses to the Vibrio cholerae O1 Protein Immunome in Adults With Cholera in Bangladesh.Expression and purification of untagged GlnK proteins from actinobacteria.Suppression of the Escherichia coli dnaA46 mutation by changes in the activities of the pyruvate-acetate node links DNA replication regulation to central carbon metabolism.Alpha-ketoglutarate protects Streptomyces coelicolor from visible light-induced phototoxicity.Comparative proteomics reveals signature metabolisms of exponentially growing and stationary phase marine bacteria.The E. coli dicarboxylic acid transporters DauA act as a signal transducer by interacting with the DctA uptake system.Engineering photosynthetic production of L-lysine.Unphosphorylated EIIANtr induces ClpAP-mediated degradation of RpoS in Azotobacter vinelandii.Coordinating carbon and nitrogen metabolic signaling through the cyanobacterial global repressor NdhR.Differential NtcA Responsiveness to 2-Oxoglutarate Underlies the Diversity of C/N Balance Regulation in Prochlorococcus.Kinetics and structural features of dimeric Gln-dependent bacterial NAD+ synthetases suggest evolutionary adaptation to available metabolites.Chytridiomycosis causes catastrophic organism-wide metabolic dysregulation including profound failure of cellular energy pathways.Identification of rice landraces with promising yield and the associated genomic regions under low nitrogen.Metabolic network reconstruction and phenome analysis of the industrial microbe, Escherichia coli BL21(DE3)
P2860
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P2860
The Emergence of 2-Oxoglutarate as a Master Regulator Metabolite.
description
2015 nî lūn-bûn
@nan
2015年の論文
@ja
2015年論文
@yue
2015年論文
@zh-hant
2015年論文
@zh-hk
2015年論文
@zh-mo
2015年論文
@zh-tw
2015年论文
@wuu
2015年论文
@zh
2015年论文
@zh-cn
name
The Emergence of 2-Oxoglutarate as a Master Regulator Metabolite.
@en
type
label
The Emergence of 2-Oxoglutarate as a Master Regulator Metabolite.
@en
prefLabel
The Emergence of 2-Oxoglutarate as a Master Regulator Metabolite.
@en
P2860
P356
P1476
The Emergence of 2-Oxoglutarate as a Master Regulator Metabolite.
@en
P2093
Luciano F Huergo
P2860
P304
P356
10.1128/MMBR.00038-15
P577
2015-12-01T00:00:00Z