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1 , or compounds that can be cleaved by AdoHcy nucleosidase.
2 - and poly-(ADP-ribose) polymerases, and NAD nucleosidase.
3  nicotinamide riboside kinase pathway and by nucleosidase activity and nicotinamide salvage.
4 ycolate and 3'-abasic sites, and exhibits 3'-nucleosidase activity indicating it may function as a ge
5                     We suggest that Tdp1p 3' nucleosidase activity regulates the processing of DNA en
6  spirochete, Borrelia burgdorferi, exhibited nucleosidase activity.
7 hine by the recombinant coupling enzymes SAH nucleosidase and adenine deaminase, respectively.
8 AI-2), produced by the purified enzymes Pfs (nucleosidase) and LuxS (terminal synthase) from S-adenos
9 l homocysteine/methylthioadenosine (SAH/MTA) nucleosidase are described.
10     Interestingly, the inhibitors of MTA/SAH nucleosidase are very effective against the Lyme disease
11                 MTAN (5'-methylthioadenosine nucleosidase) catalyzes the hydrolysis of the N-ribosidi
12 s, is first hydrolyzed by recombinant AdoHcy nucleosidase (EC 3.2.2.9) into adenine and S-ribosylhomo
13                                       AdoHcy nucleosidase (EC 3.2.2.9) irreversibly cleaves AdoHcy to
14 tate of Escherichia coli methylthioadenosine nucleosidase (EcMTAN) by transition state analysis and c
15 ioadenosine/S-adenosylhomocysteine (MTA/SAH) nucleosidase in bacteria has started to be appreciated o
16 dvantage of this assay which includes AdoHcy nucleosidase is the destruction of AdoHcy, thus alleviat
17  5'-methylthioadenosine-adenosylhomocysteine nucleosidase is used to hydrolyze AdoHcy to adenine.
18 employed them to measure methylthioadenosine nucleosidase (MTAN) activity in live Escherichia coli.
19 sphorylase (MTAP) and 5'-methylthioadenosine nucleosidase (MTAN) catalyze the phosphorolysis and hydr
20   Methylthioadenosine/S-adenosylhomocysteine nucleosidase (MTAN) catalyzes reactions linked to polyam
21 '-Methylthioadenosine/S-adenosylhomocysteine nucleosidase (MTAN) catalyzes the hydrolytic cleavage of
22 '-methylthioadenosine/S-adenosylhomocysteine nucleosidase (MTAN) catalyzing an essential step.
23 '-methylthioadenosine/S-adenosylhomocysteine nucleosidase (MTAN) enzyme is a multifunctional enzyme t
24 uctural similarity to 5'-methylthioadenosine nucleosidase (MTAN) enzymes.
25 -methylthioadenosine/S-adenosyl-homocysteine nucleosidase (MTAN) hydrolyzes its substrates to form ad
26 hate (ATP) by 5'-methylthio-adenosine/AdoHcy nucleosidase (MTAN), adenine phosphoribosyl transferase
27 '-methylthioadenosine/S-adenosylhomocysteine nucleosidase (MTAN).
28 of MTA is salvaged by 5'-methylthioadenosine nucleosidase (MTN) in a reaction producing methylthiorib
29 '-methylthioadenosine/S-adenosylhomocysteine nucleosidase (Pfs-2), previously described as Bgp, a gly
30 novel pathway in which NR is degraded by the nucleosidases Pnp1 and Urh1, with a minor role for Meu1,
31 e identified Arabidopsis methylthioadenosine nucleosidase proteins MTN1 and MTN2 as putative targets
32 for inosine, guanosine, and adenosine in the nucleosidase reaction and 45.6, 35.9, and 12.3 microM fo
33 -adenosylhomocysteine/5'-methylthioadenosine nucleosidase (SAHN/MTAN, EC 3.2.2.9).
34 Streptococcus pneumoniae methylthioadenosine nucleosidase (spMTAN).
35 ese reactions, and are substrates of MTA/SAH nucleosidase, underscoring its importance in a wide arra
36 assay is the destruction of AdoHcy by AdoHcy nucleosidase, which alleviates AdoHcy product feedback i
37 '-methylthioadenosine/S-adenosylhomocysteine nucleosidase, which hydrolyses 5'-methylthioadenosine, t

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