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1  of which is critical for the Mn2+-dependent phosphomonoesterase.
2 roduced high levels of a membrane-associated phosphomonoesterase.
3 same seven side chains as the Ni2+-dependent phosphomonoesterase.
4 ubstrates for phosphate-starvation-inducible phosphomonoesterases.
5 ere we report that the phosphodiesterase and phosphomonoesterase activities are both dependent on the
6 stinctions between the phosphodiesterase and phosphomonoesterase activities are underscored by the re
7                                  Phytase and phosphomonoesterase activities were positively correlate
8 protein possesses both phosphodiesterase and phosphomonoesterase activities.
9 enate, and sulfate were shown to inhibit the phosphomonoesterase activity of lambdaPP, albeit with in
10             Here we find that Mn2+-dependent phosphomonoesterase activity requires two additional res
11                         The enzyme displayed phosphomonoesterase activity toward a broad range of pep
12 Root arbuscular mycorrhizal colonization and phosphomonoesterase activity were coordinated and driven
13                           The association of phosphomonoesterase activity with a protein that has als
14 ses single strand nuclease (DNA and RNA) and phosphomonoesterase activity, with a preference for UMP
15 possesses distinctive manganese-dependent 3'-phosphomonoesterase and 3'-phosphodiesterase activities.
16 for studies on the mechanism and kinetics of phosphomonoesterases and as a reporter in enzyme-linked
17 tol monophosphatase and structurally related phosphomonoesterases, and thus additional approaches are
18 these transition metal oxoanions may inhibit phosphomonoesterases by forming complexes that resemble
19                                          The phosphomonoesterase converts a terminal ribonucleoside 3
20                                          The phosphomonoesterase converts the terminal ribonucleoside
21                      In the case of the dual phosphomonoesterase/diesterase enzyme CthPnkp, a phospha
22 aracterization of a novel, surface-localized phosphomonoesterase from a nontypeable H. influenzae str
23 ymological properties distinguish this lipid phosphomonoesterase from PAP2.
24 phocholine:phosphocholine hydrolase and acid phosphomonoesterase observed in the low-phosphate cultur
25  member of metal-dependent/lithium-inhibited phosphomonoesterase protein family defined by a conserve
26  conserved metal-dependent lithium-inhibited phosphomonoesterase protein family has identified severa
27 all-DNA primer-template, signifying that the phosphomonoesterase reaction does not depend on a 2'-OH.
28 es manganese-dependent phosphodiesterase and phosphomonoesterase reactions at a duplex primer-templat
29 talyze metal-dependent phosphodiesterase and phosphomonoesterase reactions at a primer-template with
30 es manganese-dependent phosphodiesterase and phosphomonoesterase reactions at the 3' end of the prime
31 conserved aspartic acid is essential for the phosphomonoesterase reactions catalyzed by protein phosp
32 e phosphatase (EC 3.1.3.1) is a non-specific phosphomonoesterase that catalyzes the hydrolysis reacti
33 li alkaline phosphatase (AP) is a proficient phosphomonoesterase with two Zn(2+) ions in its active s