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Biomedical subjects

A L Dawson

Publications and source records attributed to A L Dawson.

4 recordsLinked to original sources

The cytochemical localization of nucleotide pyrophosphatase activity in plant tissues using naphthyl esters of thymidine-5'-phosphate.

A cytochemical method for the localization of nucleotide pyrophosphatase activity in plants employing naphthol AS-BI thymidine 5'-monophosphate and alpha-naphthyl thymidine 5'-monophosphate as specific substrates is reported. Biochemical evidence for the validity of this method is presented and the synthesis of the naphthol AS-BI ester is described. The application of this cytochemical technique to shoots of Triticum sp. and roots of Vicia faba has shown nucleotide pyrophosphatase to be ubiquitous in its distribution in these organs and to occur in a structurally-bound form in the cytoplasm. The highest activity was detected in developing fibres adjacent to the leaf vascular bundles, in the coleoptile epidermal and hypodermal cells and in the coleoptile and leaf xylem.

Chemical Phenomena

The demonstration of acid phosphatase in cultured 3T3 mouse cells.

Acid phosphatase has been demonstrated ultrastructurally in 3T3 and SV40-3T3 mouse cells using sodium beta-glycerophosphate and p-nitrophenyl phosphate as substrate. The former substrate only demonstrates the enzyme in lysosomes and elements of the Golgi apparatus while the latter demonstrates it in the cisternae of the endoplasmic reticulum and in the cell surface as well as at lysosomal sites. The significance of surface acid phosphatase activity is discussed in terms of sublethal autolysis.

4-Nitrophenylphosphatase

A histochemical study of acid phosphatase in normal and virus-transformed cultured fibroblasts.

The distribution of acid phosphatase has been investigated in normal and virus-transformed cultured hamster and mouse fibroblasts. The enzyme was found to be present in lysosomes, autophagic vacuoles and elements of the Golgi apparatus. It was also found to be associated with a surface coat in some virus-transformed mouse cells and in the cytoplasm of both normal and transformed hamster cells.

Acid Phosphatase