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1 nt for the catalytic activity of B. subtilis adenylosuccinate lyase.
2 41 is the reaction product of 6-BDB-TAMP and adenylosuccinate lyase.
3  the substrate binding site of rabbit muscle adenylosuccinate lyase.
4                Asn(276) of Bacillus subtilis adenylosuccinate lyase, a residue corresponding to the l
5 tetramer and this structure is essential for adenylosuccinate lyase activity.
6                                              Adenylosuccinate lyase (ADSL) deficiency is a rare autos
7                                              Adenylosuccinate lyase, an enzyme catalyzing two reactio
8 d Arg(301) are indispensable to catalysis by adenylosuccinate lyase and probably interact noncovalent
9 ate sites in adenylosuccinate synthetase and adenylosuccinate lyase and to regulatory sites of glutam
10  kinase, anaerobic ribonucleotide reductase, adenylosuccinate lyase, and a hypothetical protein.
11                                        Human adenylosuccinate lyase (ASL) deficiency is an inherited
12  Both adenylosuccinate synthetase (ADSS) and adenylosuccinate lyase (ASL) have been identified as vit
13                                   Tetrameric adenylosuccinate lyase (ASL) of Bacillus subtilis cataly
14                                              Adenylosuccinate lyase (ASL) of Bacillus subtilis is a h
15                                              Adenylosuccinate lyase (ASL), a catalyst of key reaction
16 ygous for two mutations in the gene encoding adenylosuccinate lyase (ASL), resulting in the protein m
17                  Thus 2-BDB-TAMP reacts with adenylosuccinate lyase at a site distinct from the His14
18  studies suggest that 2-BDB-TAMP inactivates adenylosuccinate lyase by specific reaction at the subst
19                                              Adenylosuccinate lyase catalyzes two separate reactions
20  show here for the first time that wild-type adenylosuccinate lyase exhibits a protein concentration
21                                           In adenylosuccinate lyase from Bacillus subtilis, Gln(212),
22               Surprisingly, the structure of adenylosuccinate lyase from P. aerophilum reveals that t
23                     The crystal structure of adenylosuccinate lyase from the hyperthermophilic archae
24 re of the tetrameric assembly are similar to adenylosuccinate lyase from the thermophilic eubacterium
25                                        Thus, adenylosuccinate lyase has four active sites per enzyme
26 d not inhibit adenylosuccinate synthetase or adenylosuccinate lyase isolated from Zea mays.
27 esidue Glu275 (both His141 and Glu275 are in adenylosuccinate lyase numbering), acts as the general b
28                                              Adenylosuccinate lyase of Bacillus subtilis is a tetrame
29                                              Adenylosuccinate lyase of Bacillus subtilis is inactivat
30                                              Adenylosuccinate lyase of Bacillus subtilis is inactivat
31                                       Mutant adenylosuccinate lyases of Bacillus subtilis were prepar
32     Through its dual action in this pathway, adenylosuccinate lyase plays an integral part in cellula
33 ase (hpt), adenylosuccinate synthase (purA), adenylosuccinate lyase (purB), auxiliary protein (nrdI),
34 he de novo purine biosynthesis pathway, ASL (adenylosuccinate lyase, Step 8) and ATIC (5-aminoimidazo
35                                Rabbit muscle adenylosuccinate lyase upon incubation with 7.5-50 muM 2
36                    A tetrameric structure of adenylosuccinate lyase was constructed by homology model
37 ying His141 in the substrate-binding site of adenylosuccinate lyase, where it may serve as a general
38 position 276 result in structurally impaired adenylosuccinate lyases which are assembled into defecti

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