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1 l as charged amino acids associated with the immobilized protein.
2 developed using magnetic beads containing an immobilized protein.
3 robing the homogeneity of the populations of immobilized protein.
4 arfarin is small compared to the size of the immobilized protein.
5 he visible range around 425nm, caused by the immobilized proteins.
6  robust single-molecule detection of surface-immobilized proteins.
7  flowed through the capillary to bind to the immobilized proteins.
8  gel matrix; and (v) in-gel immunoprobing of immobilized proteins.
9  can influence the binding activities of the immobilized proteins.
10 anic complexes shuttle electrons between the immobilized proteins.
11 nstant (Ka) for human IgG binding to surface-immobilized protein A is determined to be (3.0 +/- 0.5)
12 ques measuring biotinylated gC1qR binding to immobilized protein A revealed specific binding that was
13 o that in NHS preabsorbed by the yeast or by immobilized protein A/G to remove serum immunoglobulin.
14                                 In addition, immobilized protein activity levels were high, typically
15  of the formation of a bound complex between immobilized protein and immobilized ligand as a function
16 ays are based on the interaction between the immobilized protein and the sampled analyte directly on
17                          The activity of the immobilized protein and the surface density were determi
18 ecifically designed for staining NC membrane-immobilized proteins and is faster and more sensitive th
19 on of resolved proteins, antibody probing of immobilized proteins, and all interim wash steps.
20 s used for investigating the conformation of immobilized proteins, and then examines how protein load
21            Because no stripping is involved, immobilized proteins are not lost from the membrane, thu
22       This research describes how to prepare immobilized protein arrays and how to assay the binding
23                            RNA pull-down and immobilized protein assays showed that hrp48 protein bin
24  scaffold for subsequent antibody probing of immobilized protein bands.
25 sed on analysis of protein conformation, the immobilized proteins bind with partner antibody after SD
26                           Moreover, using an immobilized protein-binding assay, we found that phospho
27 ndent fashion, Kd (app) = 29 nM and bound to immobilized protein C in a Ca2+-dependent fashion.
28  of a complex between immobilized ligand and immobilized protein close to that for the formation of c
29 iles has been developed, based on the use of immobilized protein columns and HPLC.
30 st the epsilon subunit was passed over these immobilized protein columns, and the purified antibodies
31  residual activity of 40% for the covalently immobilized protein compared to 20% of residual activity
32 igated the binding of fluid-phase CRP to six immobilized proteins: complement factor H, oxidized low-
33  double resonance (ELDOR) spectroscopy on an immobilized protein containing RX all reveal a highly co
34                      In this experiment, the immobilized protein content and LDH activity on each mod
35 t 3 logs was observed for protein stains and immobilized protein content, with a lower limit of detec
36 obilized proteins, it was necessary that the immobilized proteins, except factor H, were also exposed
37  of high-capacity silica supports containing immobilized protein G.
38                                C4BP bound to immobilized protein H or AP1 bacteria retained its cofac
39                                    Arrays of immobilized proteins have been developed for the discove
40 dividual protein kinases on a complex mix of immobilized proteins, (ii). the fractionation of the pho
41 ely for isolating aptamers against a surface-immobilized protein (immunoglobulin E) and a solution-ph
42 d thioredoxin showed the presentation of the immobilized protein in a sterically accessible orientati
43 americ H2O2-treated CRP bound to a number of immobilized proteins including oxidized LDL, IgG, amyloi
44 d support, and because the orientation of an immobilized protein is important for its function.
45              Understanding the properties of immobilized proteins is critical to the optimal design o
46 ase interactions between small molecules and immobilized proteins is of intense interest, especially
47 fficient binding of acidic pH-treated CRP to immobilized proteins, it was necessary that the immobili
48 s developed, in which both the deposition of immobilized protein layers and the electrophoretic deliv
49 e quantify relates linearly to the number of immobilized protein molecules (R(2) = 0.98), and our pre
50                                              Immobilized protein molecules on the surface of an alumi
51 us, our procedure allows for single, surface-immobilized protein molecules to be detected with high s
52 rd compact disc (CD) as a biochip containing immobilized protein molecules.
53  of multistep reaction procedures leading to immobilized proteins on solid surfaces.
54 ction screening against a dilution series of immobilized proteins on the microarray enabling the obse
55 teins to acidic pH alter the conformation of immobilized proteins, our findings suggest that conforma
56 proach resulted in random orientation of the immobilized proteins over the surface.
57 on of low molecular weight ligand binding to immobilized protein receptors.
58                                          The immobilized proteins remain bioactive, as evidenced by e
59 gions and conditions studied for the surface immobilized proteins showed restricted motion, with indi
60 l inhibitory factor (NIF), C3bi, and certain immobilized protein substrates, represented by denatured
61  superficially inserted state; and 3), fully immobilized proteins, suggesting a fully inserted state.
62 ing between small molecules and a variety of immobilized protein targets, pairs that have binding aff
63 " packed with the same resin but without the immobilized protein to evaluate the dead volume, but thi
64 roteins on microtiter plates and exposure of immobilized proteins to acidic pH alter the conformation
65                 Subsequent incubation of the immobilized protein using a fluorescently labeled or PEG
66 on of substantial conformational changes for immobilized proteins using SPR has been reported.
67 scence from single molecules attached to the immobilized proteins was detected with a high signal/noi
68 rase and lysozyme--the highest quantities of immobilized proteins were obtained when using a low ioni
69 and binding constants for the association of immobilized protein with free and immobilized ligand.

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