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1 upon addition of the phosphomimetic compound beryllium fluoride.
2 esence of the nonhydrolyzable ATP analog ADP-beryllium fluoride.
3 trapping is approximately 4-fold higher with beryllium fluoride.
4 mm), which is inhibited by orthovanadate and beryllium fluoride.
5 cess using complexes of ADP and aluminium or beryllium fluoride.
6 tabilizers phalloidin and to a lesser extent beryllium fluoride.
7  C but will in the presence of phalloidin or beryllium fluoride.
8 or in the presence of the MgATPase inhibitor beryllium fluoride.
9 e 5'-triphosphate, and adenosine diphosphate beryllium fluoride.
10 rmus aquaticus (Taq) MutS, we found that ADP.beryllium fluoride (ABF), acted as a strong inhibitor of
11 e specifically, as shown by vanadate-ADP and beryllium fluoride-ADP trapping experiments.
12                                              Beryllium fluoride and aluminum fluoride also reduce thi
13                            We speculate that beryllium fluoride and aluminum fluoride bind to the HPO
14                      The phosphate analogues beryllium fluoride and aluminum fluoride led to complete
15 e of bovine F1-ATPase inhibited with ADP and beryllium fluoride at 2.0 angstroms resolution contains
16 R) domain bound to both a phosphoryl analog [beryllium fluoride (BeF(3)(-))] and Mg(2+), in complex w
17                                              Beryllium fluoride (BeF(3-)) and aluminum fluoride (AlF(
18 otein) was found to be potently inhibited by beryllium fluoride (BeFx) in combination with MgATP, MgA
19 th phosphate analogs (PA), such as vanadate, beryllium fluoride (BeFx) or aluminum fluoride (AlF4-),
20  C4 (LTC(4)) significantly stimulated ABCC10 beryllium fluoride (BeFx)-sensitive ATPase activity.
21 ium fluoride (AlF4-), vanadate (VO(4)3-) and beryllium fluoride (BeFx).
22                                         With beryllium fluoride, but not phalloidin, this polymerizat
23 ha-32P]ADP.Vi and MRP4.8-azido[alpha-32P]ADP.beryllium fluoride can be generated, nucleotide trapping
24 ee complexes are very similar to that of the beryllium fluoride complex which suggests that the diffe
25 resent the crystal structure of mant-ADP and beryllium fluoride complexed with Dictyostelium discoide
26 omplexes with aluminum fluoride (E2.AlF) and beryllium fluoride (E2.BeF) as analogs of the E2.P phosp
27 -nitrophenyl-N-methyl-aminoethyl-diphosphate.beryllium fluoride have been determined to better than 2
28                        NAMPT structures with beryllium fluoride indicate a covalent H247-BeF(3)(-) as
29 ) only when Mg(2+)i was also present; and 4) beryllium fluoride induced maximal IH even in the absenc
30  increases 8-azido[alpha-32P]ATP binding and beryllium fluoride-induced 8-azido[alpha-32P]ADP trappin
31 hibition 0.19 and 0.25 mm, respectively) and beryllium fluoride-induced 8-azido[alpha-32P]ADP trappin
32 ATP during hydrolysis in the same order with beryllium fluoride occurring earliest in the ATPase cycl
33 evidence for two different binding sites for beryllium fluoride on actin.
34  ligands (transported ions, nucleotides, and beryllium fluoride) on IH and, for comparison, on transi
35 kinesin in the presence of substrate analogs beryllium fluoride or adenylyl-imidodiphosphate.
36 stored by larger amounts of wild-type actin, beryllium fluoride, or phalloidin at room temperature, a
37 inhibitors, MRP4-ATPase is more sensitive to beryllium fluoride than to orthovanadate.
38 aps nucleotide in the absence of vanadate or beryllium fluoride, the high to low affinity switch in t
39  the phosphate analogs aluminum fluoride and beryllium fluoride, to actin filaments reduces their sus
40 ing cleft closes slightly in the presence of beryllium fluoride trapped MgADP (MgADPBeFx-S1) and most
41                                 We find that beryllium fluoride, vanadate, and sulfate, phosphate ana
42 ence of the non-hydrolyzable ATP analog, ADP-beryllium fluoride, we observe additional interactions b
43 und with the non-hydrolyzable ATP analog ADP-beryllium fluoride, we studied the NtrC1-sigma(54) AID c
44  to the basal state, particularly when using beryllium fluoride, which mimics the bound phosphate in

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