OXIDATIVE AND REDUCTIVE PATHWAYS OF ESTROGENS IN HORMONE-RESPONSIVE AND NONRESPONSIVE HUMAN BREAST-CANCER CELLS IN-VITRO

被引:11
作者
CASTAGNETTA, LAM
GRANATA, OM
FARRUGGIO, R
CANNELLA, S
MONTESANTI, A
OLIVERI, G
SORCI, C
MESITI, M
CARRUBA, G
机构
[1] M ASCOLI CANC HOSP CTR, NATL INST CANC RES, PALERMO BRANCH, MOLEC ENDOCRINOL UNIT, I-90141 PALERMO, ITALY
[2] UNIV PALERMO, SCH MED, POLICLIN PALERMO, HORMONE BIOCHEM LABS, PALERMO, ITALY
[3] UNIV MESSINA, INST ONCOL, MESSINA, ITALY
关键词
D O I
10.1016/0960-0760(95)00081-A
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In order to measure the formation and degradation rates of estradiol by human breast cancer cells, after assessing the biochemical basis of hormone responsiveness and growth response to estrogens, we considered both responsive, estrogen receptor (ER) positive, and non-responsive, ER-negative, breast cancer cell lines, i.e. MCF7, ZR75-1 and MDA-MB231. To this end, we employed a novel ''intact cell'' approach which allows us, after 24 h incubation, to analyze several enzyme activities in sequence, concurrently with the monitoring of labeled precursor degradation. Our investigations led to the following evidence: (a) the reductive activity of the 17 beta-hydroxysteroid oxoreductase (17 beta-HSOR) appears to be higher than the oxidative only in responsive, ER-rich MCF7 and ZR75-1 cells, as also previously observed by others; (b) this activity is, on the contrary, much lower in MDA-MB231 cells and other unresponsive, ER-poor breast cancer cell lines; (c) conversely, the oxidative activity shows an opposite pattern, being limited in MCF7 and ZR75-1 cells and much higher in MDA-MB231 cells. Overall, a 17 beta-HSOR reductive pathway prevails in both MCF7 and ZR75-1 cells, whilst the oxidative pathway is prevalent in MDA-MB231 cells, leading to a large formation of estrone that is no further metabolized, at least in the experimental conditions used. Our results may provide a likely explanation of previous data on the different estrogen content of breast tumor tissues.
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页码:367 / 374
页数:8
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共 27 条
  • [1] Castagnetta, D'Aquino, Labrie, Bradlow, Steroid formation degradation and action in peripheral tissues, Annals of the New York Academy of Sciences, 595, pp. 1-498, (1990)
  • [2] Van Landeghem, Poortman, Thijssen, Endogenous concentration and subcellular distribution of estrogens in normal and malignant human breast tissue, Cancer Res., 45, pp. 2900-2906, (1985)
  • [3] Pasqualini, Gelly, Nguyen, Vella, Importance of estrogen sulfates in breast cancer, J. Steroid Biochem., 34, pp. 155-163, (1989)
  • [4] Abul-Hajj, Relationship between estrogen receptors, 17β-hydroxysteroid dehydrogenase and estrogen content in human breast cancer, Steroids, 34, pp. 217-225, (1979)
  • [5] Leszczynsky, Santner, Feil, Santen, 17β-hydroxysteroid dehydrogenase in human breast cancer: analysis of kinetic and clinical parameters, Steroids, 51, pp. 299-316, (1988)
  • [6] Schneider, Huh, Bradlow, Fishman, Antiestrogen action of 2-hydroxyestrone on MCF-7 human breast cancer cells, J. Biol. Chem., 259, pp. 4840-4845, (1984)
  • [7] Schneider, Kinne, Fracchia, Pierce, Anderson, Bradlow, Fishman, Abnormal oxidative metabolism of estradiol in women with breast cancer, Proc. Natn. Acad. Sci. U.S.A., 79, pp. 3047-3051, (1982)
  • [8] Vermeulen, Deslypere, Paridaens, Steroid dynamics in the normal and carcinomatous mammary gland, J. Steroid Biochem., 25, pp. 799-802, (1986)
  • [9] Adams, Phillips, Hall, Metabolic fate of estradiol in human mammary cancer cells in culture estrogen sulfate formation and cooperativity exhibited by estrogen sulfotransferase, Molecular and Cellular Endocrinology, 58, pp. 231-242, (1988)
  • [10] Castagnetta, Granata, Lo Casto, Arcuri, Carruba, Simple approach to measure metabolic pathways of steroids in living cells, J. Chromatogr., 572, pp. 25-39, (1991)