about
From genetic footprinting to antimicrobial drug targets: examples in cofactor biosynthetic pathwaysThe power to reduce: pyridine nucleotides--small molecules with a multitude of functionsNADPH-generating systems in bacteria and archaeaThe high-resolution crystal structure of periplasmic Haemophilus influenzae NAD nucleotidase reveals a novel enzymatic function of human CD73 related to NAD metabolismThe TP0796 Lipoprotein of Treponema pallidum Is a Bimetal-dependent FAD Pyrophosphatase with a Potential Role in Flavin HomeostasisRibosylnicotinamide kinase domain of NadR protein: identification and implications in NAD biosynthesisOuter membrane protein P4 is not required for virulence in the human challenge model of Haemophilus ducreyi infectionNadN and e (P4) are essential for utilization of NAD and nicotinamide mononucleotide but not nicotinamide riboside in Haemophilus influenzaePorin OmpP2 of Haemophilus influenzae shows specificity for nicotinamide-derived nucleotide substrates.Nicotinamide ribosyl uptake mutants in Haemophilus influenzae.PnuC and the utilization of the nicotinamide riboside analog 3-aminopyridine in Haemophilus influenzae.Coupling of NAD+ biosynthesis and nicotinamide ribosyl transport: characterization of NadR ribonucleotide kinase mutants of Haemophilus influenzaeMJ0917 in archaeon Methanococcus jannaschii is a novel NADP phosphatase/NAD kinase.Comparative analyses of proteins from Haemophilus influenzae biofilm and planktonic populations using metabolic labeling and mass spectrometry.Determining the extremes of the cellular NAD(H) level by using an Escherichia coli NAD(+)-auxotrophic mutantLipoprotein e (P4) of Haemophilus influenzae: role in heme utilization and pathogenesis.Characterization of riboflavin (vitamin B2) transport proteins from Bacillus subtilis and Corynebacterium glutamicum.NAD+ utilization in Pasteurellaceae: simplification of a complex pathway.Structure and function of NAD kinase and NADP phosphatase: key enzymes that regulate the intracellular balance of NAD(H) and NADP(H).Genome-wide fitness profiling reveals adaptations required by Haemophilus in coinfection with influenza A virus in the murine lung.Heat-inducible surface stress protein (Hsp70) mediates sulfatide recognition of the respiratory pathogen Haemophilus influenzae.Haemophilus influenzae P4 Interacts With Extracellular Matrix Proteins Promoting Adhesion and Serum Resistance.Moraxella catarrhalis synthesizes an autotransporter that is an acid phosphatase.Assimilation of nicotinamide mononucleotide requires periplasmic AphA phosphatase in Salmonella enterica.Contribution of the DDDD motif of H. influenzae e (P4) to phosphomonoesterase activity and heme transport.Rapid detection of Haemophilus influenzae by hel gene polymerase chain reaction.
P2860
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P2860
description
2000 nî lūn-bûn
@nan
2000 թուականի Մարտին հրատարակուած գիտական յօդուած
@hyw
2000 թվականի մարտին հրատարակված գիտական հոդված
@hy
2000年の論文
@ja
2000年論文
@yue
2000年論文
@zh-hant
2000年論文
@zh-hk
2000年論文
@zh-mo
2000年論文
@zh-tw
2000年论文
@wuu
name
NADP and NAD utilization in Haemophilus influenzae.
@ast
NADP and NAD utilization in Haemophilus influenzae.
@en
type
label
NADP and NAD utilization in Haemophilus influenzae.
@ast
NADP and NAD utilization in Haemophilus influenzae.
@en
prefLabel
NADP and NAD utilization in Haemophilus influenzae.
@ast
NADP and NAD utilization in Haemophilus influenzae.
@en
P2093
P2860
P1476
NADP and NAD utilization in Haemophilus influenzae.
@en
P2093
P2860
P304
P356
10.1046/J.1365-2958.2000.01829.X
P407
P577
2000-03-01T00:00:00Z