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1 origin in the duplication of a gene encoding deoxyhypusine synthase.
2 slation elongation factor eIF5A, mediated by deoxyhypusine synthase.
3 were evaluated as donor substrates for human deoxyhypusine synthase.
4  a specific lysine residue (Lys329) in human deoxyhypusine synthase.
5 a) of the conserved lysine residues in human deoxyhypusine synthase.
6 e spermidine biosynthetic pathway but retain deoxyhypusine synthase.
7                               Purified human deoxyhypusine synthase also exhibited homospermidine syn
8 endently by duplication of the gene encoding deoxyhypusine synthase, an enzyme involved in the posttr
9 pusine formation by a selective inhibitor of deoxyhypusine synthase and by its depletion with RNA int
10  two sequential enzymatic steps catalyzed by deoxyhypusine synthase and deoxyhypusine hydroxylase (DO
11 se models for the hypusine-modifying enzymes deoxyhypusine synthase and deoxyhypusine hydroxylase as
12                 The reaction is catalyzed by deoxyhypusine synthase and deoxyhypusine hydroxylase.
13                                              Deoxyhypusine synthase and eIF5A are conserved throughou
14          Here, we tested the hypothesis that deoxyhypusine synthase and, secondarily, hypusinated eIF
15   We discovered that homozygous depletion of deoxyhypusine synthase and/or deoxyhypusine hydroxylase
16                            Upon depletion of deoxyhypusine synthase, and consequently of eIF-5A, cess
17 ivity, formation of different complexes with deoxyhypusine synthase, and Km values (1.5 +/- 0.2 vs. 8
18                     Although both eIF-5A and deoxyhypusine synthase are essential genes for cell surv
19                                Inhibition of deoxyhypusine synthase blocked post-transcriptional expr
20                                              Deoxyhypusine synthase catalyzes the crucial hypusine mo
21                                              Deoxyhypusine synthase catalyzes the first step in hypus
22                                              Deoxyhypusine synthase catalyzes the first step in the p
23                                              Deoxyhypusine synthase catalyzes the first step in the p
24                                              Deoxyhypusine synthase catalyzes the first step in the t
25                                              Deoxyhypusine synthase catalyzes the formation of deoxyh
26        In the initial step of this reaction, deoxyhypusine synthase catalyzes the production of NADH
27                                          The deoxyhypusine synthase competitive inhibitor N(1)-guanyl
28 s catalyzed by two enzymatic steps involving deoxyhypusine synthase (DHPS) and deoxyhypusine hydroxyl
29 sination, which is catalyzed by two enzymes, deoxyhypusine synthase (DHPS) and deoxyhypusine hydroxyl
30        It was recently shown that the enzyme deoxyhypusine synthase (DHS) promotes early cytokine-ind
31 copies inhibition or knockdown of the enzyme deoxyhypusine synthase (DHS).
32 f eukaryotic initiation factor 5A (eIF5A) by deoxyhypusine synthase, employing spermidine as a butyla
33 SS, we identified sequences encoding HSS and deoxyhypusine synthase from various species of the Convo
34 of transcript levels have shown that HSS and deoxyhypusine synthase have also diverged with respect t
35 s suggest a previously unrecognized role for deoxyhypusine synthase in promoting T cell proliferation
36 5A-1 and -2, respectively) as substrates for deoxyhypusine synthase in vitro.
37  Th17, and Treg), but those treated with the deoxyhypusine synthase inhibitor GC7 showed a dose-depen
38 rwinian selection is sufficient to convert a deoxyhypusine synthase into a HSS.
39                                Inhibition of deoxyhypusine synthase may provide a strategy for reduci
40  chain of the deoxyhypusine residue prevents deoxyhypusine synthase-mediated reversal of the modifica
41 xyhypusine residue, was incubated with human deoxyhypusine synthase, NAD, and 1,3-diaminopropane, [3H
42                    This first structure of a deoxyhypusine synthase.NAD.inhibitor ternary complex und
43 t here at 2.2 A a new Form II crystal of the deoxyhypusine synthase:NAD holoenzyme grown at low ionic
44               Trypanosoma brucei encodes two deoxyhypusine synthase paralogs, one that is catalytical
45 f previous biochemical investigations of the deoxyhypusine synthase reaction mechanism.
46 ficity of this enzyme and versatility of the deoxyhypusine synthase reaction.
47 tion in the single copy gene, yDHS, encoding deoxyhypusine synthase results in the loss of viability
48                    A previous study of human deoxyhypusine synthase revealed four active sites of the
49 of human DOHH along with eIF5A precursor and deoxyhypusine synthase was required for overproduction o
50 nsion of this prozyme paradigm to the enzyme deoxyhypusine synthase, which is required for spermidine

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