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1 hesis of NAD (+) and clearing the neurotoxin quinolinate.
2 he phthalate catabolic pathway cometabolizes quinolinate.
3                      This pathway results in quinolinate, an excitotoxin that is an NMDA receptor ago
4 e enzymatic product subsequently cyclizes to quinolinate, an intermediate in the biosynthesis of nico
5                                 In contrast, quinolinate, an NMDA receptor agonist, produced only min
6 elis complex is approximated by PRPP and the quinolinate analogue phthalate bound to the active site.
7  formation of nicotinate mononucleotide from quinolinate and 5-phosphoribosyl-1-pyrophosphate (PRPP).
8 o and singly bound forms with the substrates quinolinate and PRPP.
9 ntrastriatal injection of either malonate or quinolinate and systemic administration of 3-NP resulted
10 e "activity" reported does not correspond to quinolinate formation.
11                                              Quinolinate has also been implicated in important neurol
12                               High levels of quinolinate have been correlated with the etiology of ne
13                                              Quinolinate-induced stimulation of intracellular NAD in
14 h necrotic morphologies were detected in the quinolinate-injected striata.
15 cted outside the needle track 10 hours after quinolinate injection and, on average, 20% of neurons ex
16 ced hippocampal cell death, are resistant to quinolinate, malonate, and 3-nitropropionic acid (3-NP).
17 Rats were killed 6, 8, 10, or 12 hours after quinolinate or vehicle injection.
18 of two metabolic pathways: the tryptophan to quinolinate pathway and the bacterial 2-nitrobenzoic aci
19  NCQDs were immobilized with an enzyme named quinolinate phoshphoribosyl transferase (QPRTase).
20             The fact that elevated levels of quinolinate phosphoribosyl transferase enhance growth on
21                 A gene coding for an enzyme (quinolinate phosphoribosyl transferase) involved in the
22 e biosynthetic pathway including NtPMT1a and quinolinate phosphoribosyltransferase (NtQPT2), and lowe
23                                              Quinolinate phosphoribosyltransferase (QAPRTase, EC 2.4.
24                                              Quinolinate phosphoribosyltransferase (QAPRTase, EC 2.4.
25 ave one de novo pathway gene, nadC, encoding quinolinate phosphoribosyltransferase.
26 tructural similarities between phthalate and quinolinate: phthalate is a competitive inhibitor of thi
27     When supplied as the sole NAD precursor, quinolinate promoted B. bronchiseptica growth, and the a
28                                  Indeed, the quinolinate (Qa) phosphoribosyltransferase activity of N
29                                              Quinolinate (Quin), a metabolite in the kynurenine pathw
30                                              Quinolinate synthase (NadA) catalyzes a unique condensat
31                                              Quinolinate synthase (NadA) catalyzes a unique condensat
32                                              Quinolinate synthase (NadA) is a Fe4S4 cluster-containin
33 DHAP) and aspartate-enamine by the action of quinolinate synthase (NadA).
34 S cysteine desulfurase activity 70-fold) and quinolinate synthase activity.
35 ike and one with similarity to the bacterial quinolinate synthase, NadA.
36 study concludes that all currently annotated quinolinate synthases harbor a [4Fe-4S] cluster, that th
37  the biosynthetic pathway from tryptophan to quinolinate, the universal de novo precursor to the pyri
38  ratios of 3-sialyllactose to xanthosine and quinolinate to X-16397 and our previously reported urina

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