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P M Lee

Publications and source records attributed to P M Lee.

10 recordsLinked to original sources

Immobilization of aminoacylase by encapsulation in poly-L-lysine-stabilized calcium alginate beads.

Aminoacylase I (EC 3.5.1.14) encapsulated in calcium alginate beads stabilized with poly-L-lysine was used for the production of L-phenylalanine by the hydrolysis of a racemic mixture of N-acetyl-DL-phenylalanine. The immobilized aminoacylase was studied with respect to operational stability, thermal stability, effects of pH and temperature and kinetic constants. The leakage of enzyme from the stabilized beads was eliminated. The immobilized enzyme retained high biological activity. The Km and Vmax values for the stabilized beads were 11.11 mmol dm-3 and 0.076 mumol min-1 respectively. The optimum pH and temperature for the hydrolysis were 6.5 and 55 degrees C respectively. Scanning electron micrographs revealed crosslinked structures on the surface of the beads. The operational performances of the beads in a batch reaction and a packed-bed bioreactor for continuous reaction were investigated. With batch reaction, only about 5% of enzyme activity was lost within ten reaction cycles and there was no significant loss of activity over 600 h of continuous operation after equilibrium was reached, and a conversion yield of about 80% was obtained.

Alginates↗

Covalent immobilization of aminoacylase to alginate for L-phenylalanine production.

Aminoacylase I (EC. 3.5.1.14) was immobilized by covalent crosslinking to alginate molecules with 1-ethyl-3-(3-dimethyl-aminopropyl)-carbodiimide HCl followed by calcium alginate bead formation for the production of L-phenylalanine from the racemic mixtures of N-acetyl-DL-phenylalanine. Different concentrations of the coupling reagent were tested and the coupling process was optimized. The immobilized and the partially purified aminoacylase were characterized in terms of the activity, operational stability, thermal stability, pH and temperature optima and kinetic constants, Km and Vmax. The activity of the enzyme covalently immobilized in calcium alginate beads was enhanced by about 75% compared to that of free enzyme. The beads showed stable activity under operational conditions, they lost about 40% of their activity after four reaction cycles. The immobilized aminoacylase was more stable over a broader pH range. Thus this simple method provides irreversible immobilization of aminoacylase to give a biocatalyst with good operational stability and enhanced activity.

Alginates↗

Immobilization of aminoacylase in polyethyleneimine stabilized calcium alginate beads for L-phenylalanine production.

Aminoacylase I (E.C.3.5.1.14) was immobilized by entrapment in calcium alginate beads coated with polyethyleneimine for the production of L-phenylalanine by the hydrolysis of a racemic mixture of N-acetyl-DL-phenylalanine. The operational stability in terms of batch operation and continuous reaction in packed-bed bioreactor were studied. Kinetic constants, Km and Vmax values of free and immobilized enzymes were studied. Polyethyleneimine treatment was found to enhance the operational stability of the enzyme though its activity was substantially reduced. When polyethyleneimine-coated calcium alginate beads were packed into packed bed bioreactor, it was stable for at least 25 days under continuous operation without appreciable loss of activity.

Alginates↗

Competitive binding of gangliosides and glycophorin to wheat germ agglutinin.

Gangliosides and glycophorin are receptors for wheat germ agglutinin. The competitive binding of these molecules to wheat germ agglutinin is studied by electron spin resonance spectroscopy with spin labels attached to the oligosaccharide chains of gangliosides. Evidence shows that glycophorin is more accessible to wheat germ agglutinin binding than gangliosides. The interactions of gangliosides and glycophorin in liposomes is disrupted on low level binding of WGA.

Animals↗

Correlation of rotational mobility and flexibility of Sendai virus spike glycoproteins with fusion activity.

The rotational mobility of Sendai virus glycoprotein spikes was measured by flash-induced transient dichroism of eosin triplet probes. The possible importance of this molecular motion for function was investigated by parallel assays of hemagglutination and fusion with erythrocytes. For mobility measurements, the glycoproteins were labeled on amino groups with eosin-5-isothiocyanate and on the galactose residues of the oligosaccharide chains with eosin-5-thiosemicarbazide. The decay of the absorption anisotropy of both probes, which has a time constant of about 100-200 musec at 37 degrees is attributed to the rotation of the proteins about an axis normal to the plane of the membrane. This motion was inhibited by crosslinking of the spike proteins with glutaraldehyde or by the specific binding of human erythrocyte glycophorin (a virus receptor) to the HN glycoprotein. Low values of the initial anisotropy for both probes indicate the existence of a second, faster motion. This is attributed to segmental motion of the glycoproteins. Segmental motion is inhibited by crosslinking with glutaraldehyde but appears to be little affected by interaction with glycophorin. The temperature dependence of the segmental and rotational motion of the proteins revealed a pronounced increase in mobility in the range of 30-35 degrees which was not paralleled by the lipid motion of the Sendai virus envelope membrane. Since the temperature dependence of virus-induced hemolysis has a similar characteristic, the mobility of glycoproteins appears to be correlated with the fusion activity. The hemagglutination activity, however, is not dependent on the mobility of the glycoprotein spikes.

Chemical Phenomena↗

Ganglioside headgroup dynamics.

Gangliosides, spin-labelled specifically on N-acetylneuraminic acid residues or on random-headgroup sugars, have been used to extend previous studies of headgroup behaviour. Headgroup sugar mobility is seen to be homogeneous and relatively unrestricted in a range of systems including three lines of cultured cells. The effects of temperature and pH have been considered. Binding of small quantities of the lectin, wheat germ agglutinin, was found to increase average headgroup mobility for gangliosides in lipid bilayers, most likely as a result of a disordering effect on ganglioside clusters.

Animals↗

Headgroup oligosaccharide dynamics of a transmembrane glycoprotein.

Glycophorin, a major integral membrane glycoprotein of the human erythrocyte, has been spin labelled on oligosaccharide chains. Electron paramagnetic resonance studies of this glycoprotein in systems of controlled complexity have provided a degree of insight into its headgroup behaviour. (i) When glycophorin is free in solution its oligosaccharide chains exhibit uniformly high freedom of motion. This motional freedom is not attributable to the presence of N-acetyl-neuraminic acid residues. (ii) No evidence has been found of a finite tendency for headgroup sugars to associate with hydrophobic regions of phospholipid or glycoprotein. (iii) Headgroup oligosaccharide dynamics are essentially independent of the state of and interactions of the polypeptide hydrophobic portion (that portion which traverses the membrane). (iv) Nonspecific interaction with proteins and polysaccharides can readily reduce oligosaccharide chain mobility by some 25%, but does not alter their basic behaviour. (v) Binding of wheat germ agglutinin, dramatically immobilizes (terminal) N-acetylneuraminic acid residues. (vi) The above observations hold over the temperature range 0-40 degrees C. (vii) Headgroup carbohydrate mobility is at a minimum in the region of headgroup neutrality (pH 2.6-3.5) and is pH invariant over several pH units in the physiological range.

Carbohydrate Conformation↗

Response of rat lung to tobacco smoke condensate or fractions derived from it administered repeatedly by intratracheal instillation.

The repeated intratracheal instillation of cigarette smoke condensate (SWS) in rats at close to maximum tolerated dose levels failed to induce squamous neoplasms in the lungs although such treatment was associated with an increased incidence of cuboidal/columnar metaplasia (CCM) and squamous metaplasia (Sq.M) of alveolar epithelium. With one exception, various fractions of SWS had no effect on lung tumour incidence though some were more effective than SWS in increasing the incidence of CCM and Sq.M. The exceptional fraction, Fraction P, which contains most of the polycyclic aromatic hydrocarbons of smoke and is the most effective of the fractions tested in producing tumours in mouse skin, gave rise to 4 squamous tumours of doubtful malignancy and one metastasizing squanmous carcinoma among 3 groups of 18 animals exposed at 3 different dose levels. The results are discussed in relation to the possible development of a method for comparing condensates for relative lung carcinogenicity.

Animals↗