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1 m GalNAc kinase activity on a column of DEAE-Cibacron blue.
2 two equivalents of Uniblue A, an analogue of Cibacron Blue.
3                                              Cibacron blue (1-100 microM) and d-tubocurarine (0.1-1 m
4 precipitation, Zn2+ affinity chromatography, Cibacron blue 3-GA dye affinity chromatography, ABx ion
5                    After derivatization with Cibacron-blue-3G-A, the modified polymer was used to ach
6                        Suramin (100 microm), Cibacron blue 3GA (100 microm), and pyridoxalphosphate-6
7 ith GDP-beta-S failed to block I(ATPCl), and Cibacron Blue 3GA and 4,4'-diisothyocyanostilbene-2,2'-d
8                                     Suramin, Cibacron blue 3GA, and apyrase attenuated hypoxia-induce
9 ified by chromatography on DEAE-Sephacel and Cibacron Blue 3GA-1000 agarose.
10 hotransferase can be eluted from heparin- or Cibacron blue-agarose with PtdIns.
11                       The complex effects of cibacron blue and d-tubocurarine seemed to be due to an
12  mutant did not bind the nucleotide analogue Cibacron Blue and was sensitive to proteolytic digestion
13 tional change induced by Ca(2+), as shown by Cibacron blue binding, limited proteolysis, and tryptoph
14 ore, S1 nuclease protection assays show that Cibacron blue causes a structural change in A22 and that
15 g glycoproteins were selected by immobilized Cibacron blue chromatography.
16                                  Dicoumarol, Cibacron blue, chrysin, 7,8-dihydroxyflavone, and phenin
17 ch were then selected for theability to bind Cibacron blue columns and elute with cholic acid.
18                            Chromatography on Cibacron Blue dye resin enriched M5-DLO flippase activit
19 able albumin elimination kits: one that uses Cibacron Blue F3GA, which achieves albumin depletion thr
20 several non-beta-lactam inhibitors including Cibacron blue have been found which exhibit IC50 values
21 ii) is very weakly inhibited by dicumarol or Cibacron blue; (iii) is very potently inhibited by benzo
22                      A DNA that binds either Cibacron blue or cholic acid was isolated and partially
23         First, short oligos that bind either Cibacron blue or cholic acid were enriched from random o
24 zed with taurochlorate and resolved by DEAE--Cibacron Blue--Sepharose column chromatography into two
25                                              Cibacron blue was more potent than suramin but produced

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