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1.
Diphtheria toxin fragment A interacts with Cibacron blue in solution, although it is not retained by blue Sepharose columns. Difference spectral titration of fragment A with the dye gives a dissociation constant of the order of 10–5 M and a 11 stoichiometry for the complex. In equilibrium dialysis experiments Cibacron blue behaves as a competitive inhibitor of the binding of NAD to diphtheria toxin fragment A. The dye inhibits in a non-competitive way the fragment A-catalysed transfer of ADP-ribose from NAD to elongation factor 2 (EF2). By affinity chromatography on blue Sepharose a binding of EF2 and of ADP-ribosyl-EF2 with the dye is also demonstrated. GDP, GTP and GDP(CH2)P are able to displace EF2 from blue Sepharose.  相似文献   
2.
As demonstrated by indirect immunoprecipitation and polyacrylamide gel electrophoresis, an 85S particle separated by sucrose density-gradient centrifugation from the postribosomal pellet of rabbit liver, is able to synthesize serum albumin if supplemented with both ribosomal subunits and sources of energy. It is retained on heparin bound to Sepharose 4B, contains translatable mRNA and apparently all protein factors required for translation. This particle may represent a highly organized protein synthesizing machinery, the combination of which with ribosomes results in formation of new protein molecules.  相似文献   
3.
By coupling Anisakis larval hemoglobin with cyanogen bromide-activated Sepharose, a stable and sensitive antigen for the indirect fluorescent antibody test for anisakiasis was prepared. Using this antigen, cross-reaction with other helminth infections was minimized and the test was greatly simplified.Furthermore, the results obtained indicate that this technique may be useful not only in the sero-diagnosis of anisakiasis but may also be applicable to the diagnosis of other helminthic diseases.  相似文献   
4.
A rapid two-step procedure has been developed for the purification of Despro(2)-Val15-Leu17-aprotinin from the culture supernatant of a recombinant yeast by affinity and ion-exchange chromatography. DesPro(2)-Val15-Leu17-aprotinin was purified to homogeneity, as demonstrated by dodecylsulfate gel electrophoresis and analysis of the N-terminal amino acid sequence. (c) 1993 John Wiley & Sons, Inc.  相似文献   
5.
6.
Six pigs had been immunized with multiple dose of embryonated eggs and an isolated intestinal loop was prepared in each animal. Specific antibodies to Ascaris suum were detected in the soluble protein fraction of washings from the intestinal loops using an indirect fluorescent antibody test. The specific antibodies belonged to the IgA, IgG and IgE classes of immunoglobulins. In contrast, specific antibodies were not detected in the soluble protein fraction from the accumulated fluid from the intestinal loop of one pig. Soluble proteins from the washings of intestinal loops consisted of serum albumin, a large molecular size glycoprotein, and variable amounts of several α-globulins, transferrin, and immunoglobulins. The individual soluble protein solutions were efficiently fractionated using DEAE-cellulose, Sephadex G-200, and Sepharose 6B Chromatographic columns.  相似文献   
7.
The lactate dehydrogenase (LDH) from soya bean has been purified to homogeneity by affinity chromatography. The enzyme was purified by sequential adsor  相似文献   
8.
A series of paraquat-protein conjugates of different molecular size has been prepared by the coupling of paraquat hexanoate to the proteins lysozyme, ovalbumin, bovine serum albumin. The characteristics of the adsorption of these conjugates to an immunosorbent consisting of monoclonal anti-paraquat antibodies covalently immobilised to Sepharose 4B have been determined. Equilibrium adsorption isotherms were found to obey the Langmuir equation and indicated that 80% or more of the antibody binding sites were accessible to the conjugates. The rates of mass transfer of the conjugates to their adsorption sites on the immobilised antibodies was well described by a model in which mass transfer is controlled by transfer across the external film and diffusion within the porous adsorbent bead. The effective diffusivities of the conjugates within the immunosorbent were measured and has allowed the effect of the size of the adsorbing molecule on the rate of adsorption to be considered. The amount of paraquat that could be adsorbed and the rates of adsorption decreased as the size of the protein to which it is conjugated increased. The diffusivity of the conjugates within the pores of the adsorbent is reduced between two and five times compared to their diffusivities in free solution. The reduction is greater for the larger proteins and the variations of the effective diffusivities and the pore diffusivities with the molecular weight of the conjugate can be well described with simple correlations.  相似文献   
9.
The heterologous recombinant expression of proteins in Escherichia coli without start–methionine is a common problem. The nitrophorin 7 heme properties and function strongly depend on the accurate N-terminal amino acid sequence. Leading protein expression into the periplasm by fusion with the leader peptide pelB yields functional protein; however, the folded protein sticks to the cell debris. Therefore, the periplasmic fraction was dissolved in guanidinium chloride and folded by a drop-in method. Separation from impurities including residual pelB–nitrophorin 7 required establishing an unconventional chromatographic technique using calcium-loaded Chelating Sepharose as cation exchanger and elution by a linear CaCl2 gradient.  相似文献   
10.
In this study, a new Pirkle‐type chiral column stationary phase for resolution of β‐methylphenylethyl amine was described by using activated Sepharose 4B as a matrix, L ‐tyrosine as a spacer arm, and an aromatic amine derivative of L ‐glutamic acid as a ligand. The binding capacities of the stationary phase were determined at different pH values (pH = 6, 7, and 8) using buffer solutions as mobile phase, and enantiomeric excess (ee) was determined by HPLC equipped with chiral column. The ee was found to be 47%. Chirality, 2010. © 2009 Wiley‐Liss, Inc.  相似文献   
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