Biomedical subjects
A Jagendorf
Publications and source records attributed to A Jagendorf.
Artificial reductant enhancement of the Lowry method for protein determination.
Addition of dithiothreitol in the Lowry procedure 3 min after adding the Folin-Ciocalteau reagent produces immediate color development, with 35 to 60% greater absorbance per mass of protein used.
Inhibition of chloroplast coupling factor ATPase by 5'-p-fluorosulfonylbenzoyl adenosine.
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Isolation and composition of the subunits of spinach chloroplast coupling factor protein.
A more convenient method for preparing large amounts of spinach chloroplast coupling factor is described, in which centrifugation of the EDTA-extracted chloroplasts is replaced by batchwise adsorption on DEAE-cellulose followed by filtration through Miracloth. Methods have been developed to purify the subunits from coupling factor dissociated by sodium dodecyl sulfate, involving hydroxylapatite chromatography followed by gel filtration with the detergent still present. The amino acid composition of the subunits purified by these methods was determined, with some differences noted in values for cysteine, tyrosine, phenylalanine, and methionine compared to previously published values. The stoichiometry of the subunits was estimated as 2:2:1:1:2 from their relative adsorption of dye after gel electrophoresis, compared to dye adsorbed by known amounts of the purified subunits. Estimates of subunit stoichiometry are rounded off to nearest whole numbers; actual preparations of coupling factor usually show less than complete amounts of the two smallest subunits.
Exposure of free amino groups in the coupling factor of energized spinach chloroplasts.
Spinach chloroplasts were incubated in the dark with methyl acetimidate in order to amidinate and thereby protect free amino groups. An energy-dependent attack on the coupling factor (CF1) of these amidinated chloroplasts by trinitrobenzenesulfonate was apparent in a second reaction, as long as the reagent was applied in the light or after an acid-base transition. Trinitrophenyl residues approached one each on the alpha and beta subunits, and two to three on the gamma subunit polypeptide of CF1. Accompanying trinitrophenylation was an inhibition of the ATPase activity of CF1 due to a major decrease in the affinity for ATP; however, neither the maximal ATPase rate nor the ability of the protein to serve as a coupling factor for EDTA-extracted chloroplasts was affected. Trinitrophenylation and consequent inhibition of ATPase were 50% prevented by the presence of phosphate, or ADP, or ATP during exposure to trinitrobenzenesulfonate. The protective effects of adenylates were additive with those of phosphate. The ratio of trinitrophenyl groups on the three subunits concerned was the same whether phosphate or ATP was providing 50% protection, or whether neither was present. It is inferred that a conformational change occurs in the amidinated coupling factor when a proton activity gradient is placed across the membranes, and effective ligands tend to prevent the resulting exposure of free amino groups from a previously hidden location.
Uncoupling photophosphorylation by detergents.
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