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1 IX domain found in MutT and other nucleotide diphosphatases.
2 ecognizes dCTP; 2) dCTP deamination and dUTP diphosphatase activities occur independently at the same
3                  Recombinant X29 protein has diphosphatase activity that removes m(7)G and m(227)G ca
4 eNTPDase6 preferentially exhibits nucleoside diphosphatase activity, which is dependent on the presen
5 hat resulted in 74.4-100% loss of nucleotide diphosphatase activity.
6 keys were incubated postmortem for adenosine diphosphatase (ADPase) activity (labels viable retinal b
7 ns with angiopathic changes in the adenosine diphosphatase (ADPase) flat-embedded fellow retinas was
8 om some animals were processed for adenosine diphosphatase (ADPase) flat-embedding.
9 s of age and tissues examined with adenosine diphosphatase (ADPase) histochemical staining of blood v
10  and retinal NV was assessed using adenosine diphosphatase (ADPase) histochemical staining.
11                       Retinas were adenosine diphosphatase (ADPase) stained, and flatmounted to deter
12 cal scores, slit lamp examination, adenosine diphosphatase (ADPase), and acid phosphatase staining as
13 ounting clock hours in flatmounted adenosine diphosphatase (ADPase)-stained rat retinas is analogous
14 at pups by computerized imaging of adenosine diphosphatase (ADPase)-stained retinal flatmounts.
15                                    Adenosine diphosphatase (ADPase)-stained retinas were analyzed to
16 as were dissected and stained with adenosine diphosphatase (ADPase).
17 e measured in retinas stained with adenosine diphosphatase (ADPase).
18 inas were removed and stained with adenosine diphosphatase and analyzed for peripheral avascularity,
19  (ymfB) is a nonspecific nucleoside tri- and diphosphatase and atypically releases inorganic orthopho
20 ctions containing the Golgi marker guanosine diphosphatase, and is associated with an ATP-dependent,
21 ge of glucose-6-phosphatase and fructose-1,6-diphosphatase at 100-120 days gestation makes possible t
22 e catalyzes the formation of dUTP and a dUTP diphosphatase catalyzes pyrophosphate release.
23  fusion of thymidylate kinase (tmk) and dUTP diphosphatase (dut).
24 ecombinant proteins have intrinsic guanosine diphosphatase (GDPase) activity.
25  Golgi-localized membrane protein, guanosine diphosphatase (GDPase).
26 aromyces cerevisiae Golgi complex, guanosine diphosphatase (GDPase).
27             Whether FIT2 acts as an acyl-CoA diphosphatase in vivo and how this activity affects the
28 port the model that FIT2 acts as an acyl-CoA diphosphatase in vivo and is crucial for normal hepatocy
29                              This nucleoside diphosphatase is a ubiquitously expressed, soluble 45 kD
30 >> ADP) suggests that soluble eNTPDase6 is a diphosphatase most likely not involved in regulation of
31 enting incorporation via the oxidized purine diphosphatase MTH1 remains under debate.
32 and by histochemical staining for nucleoside diphosphatase (NDPase).
33                                    Recently, diphosphatase NUDT15 was linked to thiopurine metabolism
34 mologue H29K (Nudt16) are nuclear nucleoside diphosphatase proteins localized within foci in the nucl
35 eovascularization were assessed by adenosine diphosphatase staining of retinal flatmounts and by coun
36 nd preretinal NV was quantified by adenosine diphosphatase staining.
37 )-Golgi resident Ca(2+)-dependent nucleoside diphosphatase that has been suggested to have a role in
38 rotein FIT2 as a fatty acyl-coenzyme A (CoA) diphosphatase that hydrolyzes fatty acyl-CoA to yield ac
39 enous retrovirus K deoxyuridine triphosphate diphosphatase that is elevated in patient plasma.
40       Glucose-6-phosphatase and fructose-1,6-diphosphatase, two of the four key gluconeogenic enzymes
41 target gene, which functions as a uridine 5'-diphosphatase (UDPase) in the endoplasmic reticulum (ER)
42 of the first plant Golgi-resident nucleoside diphosphatase, using a yeast complementation assay.
43 related to the hydrolase activity (e.g. NAD+ diphosphatase), which were significantly upregulated in
44    One gene, at locus MJ1102, encodes a dUTP diphosphatase, which can scavenge deoxyuridine nucleotid
45 endothelial surface expresses ecto-adenosine diphosphatase, which degrades adenosine diphosphate and