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1 dent on a key enzyme in fructose metabolism, fructokinase.
2 rom the rapid phosphorylation of fructose by fructokinase.
3 sly characterized potato (Solanum tuberosum) fructokinase.
4 ition site sequences identified in bacterial fructokinases.
5                                 In contrast, fructokinase A is widely distributed, has low affinity f
6 unt of fructose for metabolism in the liver, fructokinase A protects against fructokinase C-mediated
7  isoforms but is exacerbated in mice lacking fructokinase A.
8  in liver, renal cortex and small intestine, fructokinase activity has also been known for many years
9           This study demonstrates a role for fructokinase and endogenous fructose as mediators of acu
10  flux rate and enzyme capacity was found for fructokinase and PPi-dependent phosphofructokinase durin
11 equence identity to microbial ribokinase and fructokinases and a bacterial inosine/guanosine kinase.
12                                              Fructokinase C is expressed primarily in liver, intestin
13  hepatic metabolism of fructose catalyzed by fructokinase C, which generates substrate for de novo li
14 n the liver, fructokinase A protects against fructokinase C-mediated metabolic syndrome.
15     Two cDNA clones (Frk1 and Frk2) encoding fructokinase (EC 2.7.1.4) were isolated from tomato (Lyc
16                                              Fructokinase (FK), which phosphorylates d-fructose with
17                     Plants have two kinds of fructokinases (FRKs) that catalyze the key step of fruct
18  Alternative splicing of the ketohexokinase (fructokinase) gene generates a "central" predominantly h
19 sion was characterized by high activities of fructokinase, glucokinase, pyruvate kinase, and tricarbo
20 he polyol pathway and its metabolism through fructokinase in the pathogenesis of ischaemic acute kidn
21                    The results indicate that fructokinase in tomato is encoded by two divergent genes
22  high-affinity fructose-metabolizing enzyme, fructokinase, in an experimental setting.
23 n exposed to luteolin, a recently discovered fructokinase inhibitor.
24                              Ketohexokinase (fructokinase, KHK) catalyses the phosphorylation of fruc
25                            Wild type but not fructokinase knockout animals demonstrate severe kidney
26                           Both wild-type and fructokinase knockout mice developed obesity with mild h
27                            The protection in fructokinase knockout mice suggests a key role for fruct
28                                 Wild-type or fructokinase knockout mice were fed a low-fat (11%), hig
29          These changes were prevented in the fructokinase knockout mice.
30  show that they are members of a glucokinase/fructokinase protein family found in eubacteria and also
31 controls an adjacent PTS transporter (scrT), fructokinase (scrK) and second S-6-P hydrolase (scrH).
32    This observation and a higher activity of fructokinase than glucokinase in the embryo are both con
33 reater sequence homology with ribokinase and fructokinase than it does with other AKs.
34   The first enzyme in fructose metabolism is fructokinase, which exists as two isoforms, A and C.

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