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Biomedical subjects

T Browning

Publications and source records attributed to T Browning.

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Aminopeptidase-N (CD13; gp 150): contrasting patterns of enzymatic activity in blood from patients with myeloid or lymphoid leukemia.

We have investigated the compartmentalization of aminopeptidase-N-like activity in various blood fractions obtained from patients with acute lymphoid (ALL) or myeloid (AML) leukemia. The primary difference appears not to be the absolute level of overall activity, but rather the relative proportions of the different forms of activity detected. Thus, despite similar levels of total aminopeptidase-N-like activity detected in cells from different leukemic groups, true aminopeptidase-N/CD13 activity was only detected in cells derived from AML patients. Even in these patients, however, most of the detected aminopeptidase-N-like activity ( > 80%) could not be attributed to aminopeptidase-N/CD13. In marked contrast, plasma from leukemic patients also contained substantial total aminopeptidase-N-like activity, of which (irrespective of leukemic group) most could be attributed to aminopeptidase-N/CD13. Whilst slightly higher levels of total activity were obtained in plasma from AML patients compared to ALL patients, there was no difference in the relative proportion attributable to aminopeptidase-N/CD13 (approximately 80% of total aminopeptidase-N-like activity). Evaluation of total aminopeptidase-N-like activity present in whole blood gave differential patterns, and whilst only a proportion (20-40% of total aminopeptidase-N-like activity) could be attributed to true aminopeptidase-N/CD13, blood from patients with CD13+ AML showed the greatest activity so attributable. In total, our results outline the complexities of peptidase activities present within blood of leukemic individuals, and may, in part, explain the variability of previous studies attempting to associate prognostic features with phenotypic expression of CD13.

Antibodies, Blocking

Functional and phenotypic upregulation of CD13/aminopeptidase-N on precursor-B acute lymphoblastic leukemia after in vitro stimulation.

Acute lymphoblastic leukemia (ALL) cells of precursor-B type were assessed for expression of the cell surface peptidase CD13 (aminopeptidase-N) after 72 hours' culture in 10% B cell growth factor (BCGF), TPA, or medium alone. CD13 was analyzed phenotypically using a specific monoclonal antibody (mAb) by flow cytometry, and also with a spectrophotometric enzyme assay to measure the cleavage of specific peptide substrates. CD13 antigen was induced in all 10 cases of precursor-B ALL after culture with BCGF, with weaker expression seen in cells incubated with TPA or in medium alone. Aminopeptidase-N-like enzymatic activity was also demonstrated in cultured cells, particularly after BCGF exposure. Using the mAb WM-15, which specifically inhibits aminopeptidase-N function, we demonstrated that induction of true aminopeptidase-N activity was largely restricted to BCGF-treated cells, in which approximately 20% of total aminopeptidase activity was due to aminopeptidase-N. Phenotypic expression of the peptidase CD10 (neutral endopeptidase) was not altered on cultured cells. These findings indicate that CD13 expression can be selectively upregulated on ALL cells in response to proliferative stimuli. This peptidase, in cooperation with CD10 and perhaps other surface enzymes, may act to regulate the concentration of molecules at the cell surface which influence the growth of precursor-B ALL cells.

Adolescent