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Dive into the research topics where Stephen D. Lyons is active.

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Featured researches published by Stephen D. Lyons.


The International Journal of Biochemistry & Cell Biology | 1996

EFFECTS OF CYTOSINE ARABINOSIDE ON HUMAN LEUKEMIA CELLS

Leesa B. Crisp; Suzanne M. Smith; Margaret A.G. Mathers; G. A. R. Young; Stephen D. Lyons; Richard I. Christopherson

Cytosine arabinoside (Ara-C) is used to treat leukemias, with complete remission induced by combination chemotherapy in approximately 70% of cases of acute myelogenous leukemia (AML). Ara-CTP acts as a competitive inhibitor of DNA polymerase and may also be incorporated into DNA. Accumulation of deoxyribonucleoside triphosphates (dNTPs) induced by Ara-C may indicate disruption of DNA synthesis in susceptible leukemia cells. A procedure has been developed for the quantification of Ara-CTP and dNTPs from small samples of leukaemia cells from patients (4 x 10(7) cells) activated with concanavalin A (10 micrograms/ml, 48 hr) and grown in the presence of [32P]orthophosphate (1.1 microM, 9 x 10(6) Ci/mol, 16 hr). The susceptibilities to Ara-C of the human leukemia cell lines CCRF-CEM (IC50 = 6.30 nM), CCRF-HSB-2 (IC50 = 10.4 nM) and MOLT-4 (IC50 = 10.0 nM) may be correlated with their abilities to accumulate high concentrations of Ara-CTP (> 1000 amol/cell) with increases of between 1.3- and 3.4-fold in dATP, dGTP and dTTP for the four cell lines, while dCTP decreased between 0.23- and 0.78-fold. By contrast, an Ara-C-resistant derivative of HL-60 cells (IC50 = 400 nM) accumulated only low concentrations of Ara-CTP (71 amol/cell) without significant changes in dNTPs. High concentrations of Ara-CTP in leukemia cells induce accumulations of dATP, dGTP and dTTP due to inhibition of DNA synthesis, and depletion of dCTP. This imbalance in the pools of the four dNTPs could lead to genetic miscoding and cell death.


Accounts of Chemical Research | 2002

Inhibitors of de novo nucleotide biosynthesis as drugs

Richard I. Christopherson; Stephen D. Lyons; Paul K. Wilson


Biochemistry | 1994

Cytotoxic effects of inhibitors of de novo pyrimidine biosynthesis upon Plasmodium falciparum.

Kristen K. Seymour; Stephen D. Lyons; Leonidas Phillips; Karl H. Rieckmann; Richard I. Christopherson


Medicinal Research Reviews | 1990

Potent inhibitors of de novo pyrimidine and purine biosynthesis as chemotherapeutic agents.

Richard I. Christopherson; Stephen D. Lyons


Journal of Biological Chemistry | 1990

Cytotoxic mechanisms of glutamine antagonists in mouse L1210 leukemia.

Stephen D. Lyons; M E Sant; Richard I. Christopherson


Journal of Biological Chemistry | 1986

Effects of Acivicin and Dichloroallyl Lawsone upon Pyrimidine Biosynthesis in Mouse L1210 Leukemia Cells

A J Kemp; Stephen D. Lyons; Richard I. Christopherson


Journal of Biological Chemistry | 1992

Antifolates induce inhibition of amido phosphoribosyltransferase in leukemia cells

M E Sant; Stephen D. Lyons; Leonidas Phillips; Richard I. Christopherson


Cancer Research | 1989

Dual Effects of Pyrazofurin and 3-Deazauridine upon Pyrimidine and Purine Biosynthesis in Mouse L1210 Leukemia

Melissa E. Sant; Stephen D. Lyons; Anthony J. Kemp; Linda K. McClure; Eve Szabados; Richard I. Christopherson


Cancer Research | 1990

Cytotoxic Effects of Dihydroorotase Inhibitors upon Human CCRF-CEM Leukemia

Julie Brooke; Eve Szabados; Stephen D. Lyons; Richard J. Goodridge; Michael C. Harsanyi; Anthony Poiner; Richard I. Christopherson


Analytical Biochemistry | 1989

Chromatographic analysis of purine precursors in mouse L1210 leukemia.

Melissa E. Sant; Anthony Poiner; Michael C. Harsanyi; Stephen D. Lyons; Richard I. Christopherson

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G. A. R. Young

Royal Prince Alfred Hospital

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