Perspectives on alkaline phosphatase isoenzymes.
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Biomedical subjects
Publications and source records attributed to W H Fishman.
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Human placental alkaline phosphatase was chromatographed on Sepharose derivatives of d- and l-phenylalanine, l-leucine, glycine, aniline and p-aminobenzoic acid in high concentrations of (NH(4))(2)SO(4). Retention on these columns was greatest at the highest concentrations of (NH(4))(2)SO(4). By using decreasing concentrations and changing the types of salts, elution was effected from each of the columns. The (NH(4))(2)SO(4)-mediated retention appeared to be related to the hydrophobic character of the substituted Sepharose, rather than to any specific binding site of the enzyme. It is suggested that this provides a way of controlling hydrophobic affinity chromatography. By use of chromatography on l-phenylalanine-Sepharose and of DEAE-Sephadex chromatography in the presence of Triton X-100 detergent, a preparation of highly purified (1000-fold) human placental alkaline phosphatase was obtained in 22% yield.
Subcellular fractions were prepared from mouse kidney homogenates by differential and sucrose-gradient centrifugation. A fraction enriched in Golgi apparatus was obtained, which had considerably enriched galactosyltransferase and thiamin pyrophosphatase activities, and was morphologically typical of Golgi material. This preparation also had high beta-glucuronidase activity, which increased concomitantly with microsomal beta-glucuronidase activity during the specific stimulation of the enzyme in male mouse kidney after androgen administration. The degree of stimulation was much greater in the Golgi fraction. Gel-electrophoretic patterns of Golgi beta-glucuronidase resembled more closely those of the enzyme located within lysosomes, but contained minor bands similar to those described previously (Swank & Paigen, 1973) as characteristic of the microsomal enzyme. It was concluded that the Golgi complex is involved in the distribution of the enzyme after its synthesis to both lysosomal and microsomal fractions.
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1. The response of renal beta-glucuronidase with time to the injection of gonadotrophin was investigated in each submicrosomal fraction of rough and smooth microsomal fractions of mouse kidney homogenate. 2. The increase in beta-glucuronidase activity appeared initially in membranes of the rough microsomal fraction, 24h after injection. 3. Afterwards the newly synthesized enzyme appeared in the contents of the rough microsomal fraction and was subsequently found in the smooth microsomal fraction, reaching a maximum concentration in this fraction at 72h. 4. At this juncture, a decrease in the enzyme activity was observed in rough microsomal contents whereas the lysosomal fraction had reached its maximum value. 5. The time-course of the appearance of beta-glucuronidase in the submicrosomal fractions after the gonadotrophin stimulation suggests that the newly synthesized enzyme at the site of membrane-bound ribosomes is transferred across the membrane into cisternae of the rough endoplasmic reticulum, and then is transported into lysosomes via the smooth endoplasmic reticulum. 6. The properties of microsomal and lysosomal beta-glucuronidases were compared.