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1 s converted to nicotinic acid and ammonia by nicotinamidase.
2 ltransferase and, in some Pseudomonads, with nicotinamidase.
3  enzyme with homology to yeast and bacterial nicotinamidases.
4 increased expression of PNC1 (pyrazinamidase/nicotinamidase 1), which encodes an enzyme that deaminat
5 demonstrated that the BBE22 gene product has nicotinamidase activity and is most probably required fo
6 iron-induced renal damage, the regulation of nicotinamidase activity, and radio- and chemosensitizati
7 ed of a knockout mutant, nic2-1, had reduced nicotinamidase activity, retarded germination and impair
8 icotinic acid, while mammals lack the enzyme nicotinamidase and instead convert nicotinamide to nicot
9              NAM is first converted to NA by nicotinamidase and then salvaged by the Preiss-Handler p
10                                              Nicotinamidases are also regulators of intracellular nic
11                                              Nicotinamidases are salvage enzymes that convert nicotin
12 AD(+) homeostasis has stimulated interest in nicotinamidases as possible antibiotic targets.
13            Bacterial pyrazinamidase (PZAase)/nicotinamidase converts pyrazinamide (PZA) to ammonia an
14 ochemical characterization of the Drosophila nicotinamidase, D-NAAM, and demonstrate that its overexp
15 ogy to the other M. smegmatis pyrazinamidase/nicotinamidase, encoded by the pzaA gene.
16 ly high levels in mature seed, and encodes a nicotinamidase enzyme with homology to yeast and bacteri
17 al high-resolution crystal structures of the nicotinamidase from Streptococcus pneumoniae (SpNic) in
18                                    The yeast nicotinamidase gene pnc1 was identified as a key transcr
19 tablish a life span extending the ability of nicotinamidase in flies and offer a role for nicotinamid
20               The function and regulation of nicotinamidases in higher organisms has not been determi
21 s demonstrate that the gene BBE22 encoding a nicotinamidase is capable of replacing the requirement f
22                             However, loss of nicotinamidase PNC-1 activity slows reproductive develop
23      Mutations in the Caenorhabditis elegans nicotinamidase PNC-1 cause developmental and functional
24       C. elegans males with mutations in the nicotinamidase pnc-1, which catalyzes the first step of
25 ve uncovered novel developmental roles for a nicotinamidase (PNC), the first enzyme in the NAD(+) sal
26 , and ultimately converted to NAD(+) via the nicotinamidase Pnc1 and the Preiss-Handler pathway.
27             In Saccharomyces cerevisiae, the nicotinamidase Pnc1 converts NAM to nicotinic acid (NA),
28 iction is known to up-regulate expression of nicotinamidase Pnc1, an enzyme that enhances Sir2, Hst3,
29                 One of these proteins is the nicotinamidase Pnc1, that is co-imported with the PTS2-c
30                        Overexpression of the nicotinamidase, Pnc1p, prevents inhibition of Sir2p by t
31 rified, as well as the essential role of the nicotinamidase PncA in the utilization of nicotinamide (
32  reported defective due to a mutation in the nicotinamidase PncA.
33                                              Nicotinamidase/pyrazinamidase (PncA) is involved in the
34  Mycobacterium smegmatis pncA gene, encoding nicotinamidase/pyrazinamidase, was identified.
35 caused by mutation of pnc-1, which encodes a nicotinamidase required for NAD(+) salvage biosynthesis,
36                                    Pnc1 is a nicotinamidase that converts NAM to nicotinic acid.
37 rabidopsis thaliana gene At2g22570 encodes a nicotinamidase, which is expressed in all tissues, with
38 NAD(+) salvage pathway, Pnc1p; (ii) Pnc1p, a nicotinamidase without functional PTS2, is co-imported i

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