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F W Teale

Publications and source records attributed to F W Teale.

9 recordsLinked to original sources

A fluorogenic, mixed-disulfide reagent for thiol assay.

The design and synthesis of the mixed disulfide (ortho-nitroaniline-N-ethyldithio) 2-[pyridyl-5-thioureido-N'-(5-fluorescein)] are described and the chemical and spectroscopic properties of this thiol-specific fluorogenic reagent are presented. The high reactivity and sensitivity of this reagent in thiol assay are demonstrated with low-molecular-weight thiols and with human carbonmonoxyhemoglobin and its subunits. Comparison with conventional absorption methods shows that at least 100 times less material is needed; moreover, high background absorbance or turbidity do not interfere with the assay.

Carboxyhemoglobin↗

Isolation and spectral characterization of phycobiliproteins.

Several phycobiliproteins were prepared chromatographically pure and their absorption, fluorescence-emission, fluorescence-excitation and fluorescence-excitation polarization spectra determined. Changes in these spectra with ionic strength of the aqueous medium and chromoprotein concentration were interpreted in terms of interchromophore energy transfer and protein subunit equilibria. The complexity of the polarization spectra confirms the presence of different types of chromophore, designated sensitizing (;s') and fluorescing (;f'), in a single protein.

Chemical Precipitation↗

Depolarization of the intrinsic and extrinsic fluorescence of pepsinogen and pepsin.

1. The effects on the intrinsic tryptophan emission anisotropy of pepsin and pepsinogen solutions produced by (a) changes in temperature, (b) increases in viscosity with added glycerol at constant temperature and (c) decreases in lifetime through collisional quenching by potassium iodide were measured at several excitation wavelengths. The rotational-relaxation times calculated from results provided by method (b) approximate to the theoretical values for the two proteins, on taking hydration and shape factors into account, on the basis of random orientation of the tryptophan groups within the macromolecules. Differences between the results provided by methods (b) and (c) are attributable to inter-tryptophan resonance-energy-transfer depolarization, and the anomalous values recorded in method (a) can be attributed to the temperature-dependence of the limiting anisotropies. 2. Two different monomeric conjugates of pepsin, each containing one extrinsic fluorescent group per macromolecule, gave widely different relaxation times. This difference may arise from a specific orientation of the emission dipole in the enzyme. In active-site-labelled pepsin (1-dimethylaminonaphthalene-5-sulphonylphenylalanine-pepsin) this orientation would be approximately parallel to the symmetry axis of the equivalent ellipsoid, whereas in the other conjugate (1-dimethylaminonaphthalene-5-sulphonyl-pepsin) the orientation may be roughly normal to this direction, or some independent rotation of parts of the protein molecule is possible.

Binding Sites↗

Some properties of beta-fructofuranosidases partially purified from Phaseolus vulgaris and Solanum tuberosum.

1. Soluble beta-fructofuranosidases were purified 16-fold from French-bean-pod extracts and 35-fold from potato-tuber extracts. 2. The two enzymes had similar overall properties but differed from each other quantitatively in lability and reaction kinetics. 3. A non-diffusible inhibitor of beta-fructofuranosidase was present in the potato-tuber extracts but was absent from the bean extracts. This non-competitive inhibitor was acid-labile. 4. The possible roles of imidazole, carboxyl and thiol groups in beta-fructofuranosidase action are discussed, and the properties of the bean and potato enzymes are compared with published data for yeast, mould and grape-berry enzymes.

Journal Article↗