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K Y Look

Publications and source records attributed to K Y Look.

57 records · Page 4Linked to original sources

Increased signal transduction activity and down-regulation in human cancer cells.

The purpose of this study was to elucidate the behavior of signal transduction activity in rat and human carcinoma cells. Signal transduction activity was measured by the steady-state activity of the three enzymes involved in the conversion of 1-phosphatidylinositol (PI) to IP3, PI 4-kinase, PI 4-phosphate 5-kinase, and phospholipase C activities were measured by our methods. The results indicate that the steady-state activities of the three signal transduction enzymes and the end-product, IP3, were up-regulated in a transformation- and progression-linked fashion. In rat liver PI kinase, PIP kinase and PLC activities were 0.4, O.04, and 800 nmol/hour/mg protein, respectively. PI and PIP kinase and PLC activities were increased 2- to 8-fold in five rat hepatomas and 29-, 45-, and 4-fold, respectively, in rapidly growing hepatoma 3924A. PI and PIP kinase activities as compared to normal ovary were elevated in human ovarian epithelial carcinomas (4- and 3-fold) and in OVCAR-5 cells in culture (31- and 11-fold). Compared to normal breast parenchymal cells, PI and PIP kinase activities were increased in human breast carcinoma cells (96- and 16-fold). When breast carcinoma cells were plated and expressed their neoplastic proliferative program. IP3 concentration increased 20-fold in early log phase: PI and PIP kinase activities increased 11-fold in mid log phase: PLC activity did not change throughout. PI and PIP kinase activities in bone marrow had short half-lives (t1/2 = 8 minutes) but PLC had a long one (t1/2 > 6 hours). The elevated signal transduction activity was down-regulated by the anti-cancer drug, tiazofurin, and also by quercetin, an inhibitor of PI kinase. The addition of these drugs to cultured carcinoma cells reduced the IP3 concentration, and the cells were killed. These integrated studies are the first showing that signal transduction activity is stringently linked with transformation and progression in rat and human solid tumors and carcinoma cells. Down-regulation (by tiazofurin) or inhibition of PI and PIP kinase activities (by quercetin) in human carcinoma cells led to a marked reduction of IP3 concentration and to cell death. Tiazofurin and quercetin may be useful in the treatment of carcinomas with increased signal transduction capacity.

1-Phosphatidylinositol 4-Kinase↗

Tiazofurin: molecular and clinical action.

UNLABELLED: The purpose is to provide an overview of the molecular and clinical impact of tiazofurin. METHOD: The biochemical and clinical techniques were reported (1, 2). RESULTS: IMP DH activity increased in various animal and human tumors and was particularly high in leukemic blast cells. The increased activity was due to an elevation in the mRNA concentration of type II isozyme. Tiazofurin, a C-nucleoside, was converted in sensitive cells to the active metabolite, TAD, which tightly bound at the NADH site inhibited IMP DH activity. The inhibition led to decreased GTP concentration, down-regulation of ras and myc oncogenes and induced maturation of blast cells. New evidence shows that tiazofurin injection downregulated signal transduction activity due to a reduction of the activities of PI and PIP kinases leading to a decrease in the concentration of the second messenger, IP3. In patients; tiazofurin infusion and allopurinol administration led to reduction of IMP DH activity and GTP concentration. Allopurinol inhibited xanthine oxidase activity leading to a marked rise in hypoxanthine concentration which inhibited the increased guanine salvage pathway. In the clinic, the increase in serum hypoxanthine concentration is essential for the success of tiazofurin treatment. Tiazofurin showed additivity or synergism with ribavirin, retinoic acid, taxol, quercetin, gemcitabin, dipyridamole and brefeldin. Ribavirin which inhibits IMP DH at the IMP site has been shown to prolong the IMP depressing action of tiazofurin in rat bone marrow cells. CONCLUSION: Tiazofurin and allopurinol achieve reduction of GTP concentration in leukemic blast cells through inhibition of IMP DH and GPRT activities. As a result, induced maturation occurs with down-regulation of ras and myc oncogenes and probably reduced signal transduction capacity. Tiazofurin in leukemic patients provides over 75% therapeutic responses and patients can be treated with this combination for many months with good quality of life. These clinical and biochemical results were recently confirmed independently (3).

Allopurinol↗

Increased thymidine kinase and thymidylate synthase activities in human epithelial ovarian carcinoma.

BACKGROUND: Thymidylate synthase (dTMP synthase, EC 2.1.1.45) is responsible for the de novo biosynthesis of thymidylate (dTMP) whereas thymidine kinase (TdR kinase, EC 2.7.1.21) is the salvage enzyme which leads to the production of dTMP even in presence of d TMP synthase inhibition. The current study was undertaken to compare the steady-state activities of d TMP synthase and TdR kinase in extracts of human epithelial ovarian carcinoma and normal ovaries. MATERIAL AND METHODS: Tissue extracts of epithelial ovarian carcinomas and normal ovaries were analyzed for activities of d TMP synthase (by a method that measures released 3H2O) and TdR kinase (by polyethyleneimine impregnated (PEI) cellulose plate radioassay), methods established in this laboratory. RESULTS: The dTMP synthase activity (mean +/- S.E.) in extracts of ovarian carcinomas (N = 11) was 0.198 +/- 0.069 and in extracts of normal ovaries (N = 12) it was 0.025 +/- 0.0004 nmol/hr/mg protein. By contrast, TdR kinase activity in extracts of ovarian carcinoma (N = 13) was 27.7 +/- 8.5 compared to 1.0 +/- 0.3 nmol/hr/mg protein in extracts of normal ovaries (N = 15). CONCLUSION: The observed 140-fold higher TdR kinase activity suggests that DNA synthesis may continue despite inhibition of dTMP synthase with current schedules of 5-fluorouracil (5-FU) and leucovorin. The addition of azidothymidine, a competitive inhibitor of TdR kinase, to 5-FU and leucovorin might be a rational biochemical strategy to employ in patients with refractory ovarian carcinoma.

Adult↗