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M R Kula

Publications and source records attributed to M R Kula.

132 records · Page 8Linked to original sources

Human chymotrypsinogen B production from Pichia pastoris by integrated development of fermentation and downstream processing. Part 2. Protein recovery.

The purification of human chymotrypsinogen B (hCTRB) after expression and secretion by the yeast Pichia pastoris is described based on two different approaches using integrated initial recovery. Extraction employing aqueous two-phase systems (ATPS) from poly(ethylene glycol) and sodium sulfate allows direct processing of cell containing yeast suspensions of 50% wet weight. The target protein is obtained partially purified in the top phase while cells and cell debris are partitioned to the bottom phase of the system. hCTRB is further purified by adsorption from the top phase to the cation exchanger SP Sepharose Big Beads and elution in a salt step. The single step isolation of hCTRB is possible by expanded bed adsorption (EBA) using a fluidized cation exchanger (Streamline SP XL). A design strategy is shown taking both target protein binding and stable fluidization of the stationary phase in cell containing suspensions into consideration. For the example of hCTRB isolation from cell containing P. pastoris suspensions, a successful use of this strategy is demonstrated. Both initial recovery strategies deliver a product that can be further purified and formulated by ultrafiltration/diafiltration followed by lyophilization, resulting in a homogeneous product. Scale-up to 30-90 L of culture suspension was shown for both methods, resulting in a product of similar quality. Comparing both strategies reveals that the two-step ATPS route is better suited for high cell density cultures, while the single step EBA method is preferred for cultures of moderate cell density. This is due to the fact that application of EBA is restricted to suspensions of 10-12.5% wet weight cell concentration, thus necessitating dilution of the original broth prior to sample application. The data presented show that integrated recovery operations are a valuable alternative to traditional processing for systems that are problematic during initial solid-liquid separation.

Chymotrypsinogen↗

Studies on the extraction of DesPro(2)-Val15-Leu17-aprotinin from the culture broth of a recombinant Saccharomyces cerevisiae.

The application of an aqueous two-phase system is described for the extraction of DesPro(2)-Val15-Leu17-aprotinin from yeast culture supernatant, using native chymotrypsin as affinity ligand. The interaction is driven by hydrophobic forces and leads to the accumulation of the aprotinin-chymotrypsin complex in the salt-rich (bottom) phase of a polyethyleglycol/salt system. The complex may be dissociated at low pH values. The separation of the recombinant aprotinin and the protease required chromatographic processes, which proved difficult to interface with the affinity extraction.

Aprotinin↗

[A new procedure for the direct demonstration of microbial aminoacylase on agar plates with o-phthalaldehyde].

Not less than 1 nmol of methionine and phenylalanine were detected as fluorescent spots on agar plates with o-phthalaldehyde reagent under UV light. Microorganisms were grown on thin-agar-layer coated filter papers placed on nutrient agar plates, and then transferred onto new plates lacking nutrients by moving the papers. After the background amino compounds were removed by the diffusion to the bottom plates, the paper cultures were moved and incubated on assay plates containing N-acetylmethionine or N-acetylphenylalanine. The amino acids formed around the colonies were visualized by the o-phthaladehyde procedure to indicate aminoacylase activity of microorganisms. The substrate-and stereospecificity of the enzyme was shown for some strains on the agar plates by this procedure.

Agar↗

[Development of new plate tests for the detection of microbial hydrolysis of esters and oxidation of 2-hydroxycarboxylic acids].

The application of the thin-agar-layer coated filter culture technique (Z. Naturforsch. 42c, 1082 (1987)) has been extended to the detection of ester hydrolysis and 2-hydroxyacid oxidation by microbial colonies. The former was performed by spraying with bromocresol purple and the latter with a salicylhydrazide reagent. Under the optimized conditions, the hydrolysis activity of more than 20 mumol/h.g-wet cells and the oxidation activity of more than 40 mumol/h.g-wet cells were usually detected directly on the filter-plate cultures of bacteria, yeasts and molds.

Alcaligenes↗

Purification of human fibroblast interferon by extraction in aqueous two-phase systems.

Liquid-liquid extraction offers a new method for the concentration and purification of human fibroblast interferon (IFN-beta). Different derivatives of polyethylene glycol (PEG)--liquid ion exchangers or affinity ligands--can be effectively used for the extraction of IFN-beta in combination with Dextran-T 500 or orthophosphate. Important parameters for the partition of IFN-beta have been investigated, e.g., the influence of the concentrations of the phase-forming components, the addition of salts, the volume ratio of the top and bottom phases, and the content of crude IFN-beta. Systems containing polyethylene glycol-phosphate ester/orthophosphate/sodium chloride (1/19.5/2.9% w/w at pH 6.9 or 2/19/7.5% w/w at pH 5-5.9, respectively) resulted in up to 350-fold purified IFN-beta in the top phases with a yield of 74-100% and a specific activity of 3-7 X 10(6) units/mg. The efficiency of extraction in the aqueous phase system is a consequence of an extremely limited solubility of IFN-beta in the bottom phase. One of the advantages of the new method is that it is independent of the process volume and can be performed easily and quickly.

Humans↗

Rapid SDS gel capillary electrophoretic analysis of proteins.

Capillary sodium dodecyl sulfate (SDS) electrophoresis is a powerful and sensitive method for the qualitative and quantitative microanalysis of molecular mass for biopolymers. Usually, a separation is carried out in the long part of the capillary (20-50 cm), before the detection window, with separation times of 15-50 min. The separation of model proteins and real fractions of cell culture broth in the short part (7 cm) of the capillary, behind the window, was investigated. The analysis time could be reduced to less than 5 min. A comparison with established separation techniques is presented. Different modes of injection (by pressure and electrokinetic) were considered. The proposed method can be used for on-line monitoring of biotechnological processes.

Animals↗