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2 phosphoryl transfer reactions involving both phosphagens and other biochemically important "high-ener
6 family of phosphoryl transfer enzymes called phosphagen (guanidino) kinases which play a central role
8 ms and tissue-specific expression of certain phosphagens in an evolutionary and functional context.
10 bond is central to the physiological role of phosphagens involving phosphoryl transfer reactions impo
11 ke Schistosoma mansoni (SmTK) belongs to the phosphagen kinase (PK) family and catalyzes the reversib
14 ase is an annelid enzyme that belongs to the phosphagen kinase family of which creatine kinase and ar
16 Glycocyamine kinase (GK), a member of the phosphagen kinase family, catalyzes the Mg(2+)-dependent
18 ginine kinase (AK), which is a member of the phosphagen kinase family, serves as a model system for s
24 gy state and ATP hydrolysis by corresponding phosphagen kinase reactions: phosphagen + MgADP + H(+) <
27 our understanding of how the active sites of phosphagen kinases have evolved to recognize their respe
28 adopt the same overall fold as that of other phosphagen kinases of known structure (the homodimeric c
30 Substrate binding synergy observed in many phosphagen kinases was reduced or eliminated in mutant e
31 of these new CK sequences with other CKs and phosphagen kinases yielded a consensus tree containing a
32 ght different phosphagens (and corresponding phosphagen kinases) are found in the animal kingdom dist
39 y corresponding phosphagen kinase reactions: phosphagen + MgADP + H(+) <--> guanidine acceptor + MgAT
40 echanism by which an arginine residue of the phosphagen specificity loop is crucial for substrate spe
43 This review evaluates the distribution of phosphagen systems and tissue-specific expression of cer
44 differences in thermodynamic poise, and the phosphagens themselves differ in terms of certain physic
45 rformed on a model N-phosphorylguanidine, or phosphagen, to understand the stereoelectronic factors c
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