Important roles of the AKR1C2 and SRD5A1 enzymes in progesterone metabolism in endometrial cancer model cell lines

被引:30
|
作者
Sinreih, Masa [1 ]
Anko, Maja [1 ]
Zukunft, Sven [2 ]
Adamski, Jerzy [2 ,3 ,4 ]
Rizner, Tea Lanisnik [1 ]
机构
[1] Univ Ljubljana, Fac Med, Inst Biochem, Ljubljana 1000, Slovenia
[2] Helmholtz Zentrum Munchen, Genome Anal Ctr, Inst Expt Genet, Munich, Germany
[3] Tech Univ Munich, Lehrstuhl Expt Genet, D-85356 Freising Weihenstephan, Germany
[4] German Ctr Diabet Res, D-85764 Neuherberg, Germany
关键词
3-Keto/20-keto-reductases; 5; alpha-Reductases; Pre-receptor metabolism; alpha-Pregnanes; 4-Pregnenes; BREAST-CANCER; YOUNG-WOMEN; ESTROGEN; ADENOCARCINOMA; EXPRESSION; RISK; GENES;
D O I
10.1016/j.cbi.2014.11.012
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
Endometrial cancer is the most frequently diagnosed gynecological malignancy. It is associated with prolonged exposure to estrogens that is unopposed by progesterone, whereby enhanced metabolism of progesterone may decrease its protective effects, as it can deprive progesterone receptors of their active ligand. Furthermore, the 5 alpha-pregnane metabolites formed can stimulate proliferation and may thus contribute to carcinogenesis. The aims of our study were to: (I) identify and quantify progesterone metabolites formed in the HEC-1A and Ishikawa model cell lines of endometrial cancer; and (2) pinpoint the enzymes involved in progesterone metabolism, and delineate their roles. Progesterone metabolism studies combined with liquid chromatography-tandem mass spectrometry enabled identification and quantification of the metabolites formed in these cells. Further quantitative PCR analysis and small-interfering-RNA-mediated gene silencing identified individual progesterone metabolizing enzymes and their relevant roles. In Ishikawa and HEC-1A cells, progesterone was metabolized mainly to 20 alpha-hydroxy-pregn-4-ene-3-one, 20 alpha-hydroxy-5 alpha-pregnane-3-one, and 5 alpha-pregnane-3 alpha/beta,20 alpha-diol. The major difference between these cell lines was rate of progesterone metabolism, which was faster in HEC-1A cells. In the Ishikawa and HEC-1A cells, expression of AKR1C2 was 110-fold and 6800-fold greater, respectively, than expression of AKR1C1, which suggests that 20-ketosteroid reduction of 5 alpha-pregnanes and 4-pregnenes is catalyzed mainly by AKR1C2. AKR1C1/AKR1C2 gene silencing showed decreased progesterone metabolism in both cell lines, thus further supporting the significant role of AKR1C2. SRD5A1 was also expressed in these cells, and its silencing confirmed that 5 alpha-reduction is catalyzed by 5 alpha-reductase type I. Silencing of SRD5A1 also had the most pronounced effects, with decreased rate of progesterone metabolism, and consequently higher concentrations of unmetabolized progesterone. Our data confirm that in model cell lines of endometrial cancer, AKR1C2 and SRD5A1 have crucial roles in progesterone metabolism, and may represent novel targets for treatment. (C) 2014 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:297 / 308
页数:12
相关论文
共 50 条
  • [1] Selective loss of SRD5A2 but not AKR1C1, AKR1C2, AKR1C3, and SRD5A1 in the myometrium of pregnant humans:: Potential effects on progesterone metabolism
    Lee, RH
    Stanczyk, FZ
    Ji, Q
    Andrew, S
    Wang, G
    Jain, JK
    Goodwin, TM
    JOURNAL OF THE SOCIETY FOR GYNECOLOGIC INVESTIGATION, 2006, 13 (02) : 252A - 252A
  • [2] Expression of progesterone metabolizing enzyme genes (AKR1C1, AKR1C2, AKR1C3, SRD5A1, SRD5A2) is altered in human breast carcinoma
    Lewis, MJ
    Wiebe, JP
    Heathcote, JG
    BMC CANCER, 2004, 4 (1)
  • [3] Expression of progesterone metabolizing enzyme genes (AKR1C1, AKR1C2, AKR1C3, SRD5A1, SRD5A2) is altered in human breast carcinoma
    Michael J Lewis
    John P Wiebe
    J Godfrey Heathcote
    BMC Cancer, 4
  • [4] Selective loss of AKR1C1 and AKR1C2 in breast cancer and their potential effect on progesterone signaling
    Ji, Q
    Aoyama, C
    Nien, YD
    Liu, PI
    Chen, PK
    Chang, L
    Stanczyk, FZ
    Stolz, A
    CANCER RESEARCH, 2004, 64 (20) : 7610 - 7617
  • [5] Aldo-keto reductases AKR1C1, AKR1C2 and AKR1C3 may enhance progesterone metabolism in ovarian endometriosis
    Hevir, N.
    Vouk, K.
    Sinkovec, J.
    Ribic-Pucelj, M.
    Rizner, Lanisnik
    CHEMICO-BIOLOGICAL INTERACTIONS, 2011, 191 (1-3) : 217 - 226
  • [6] The A-ring reduction of 11-ketotestosterone is efficiently catalysed by AKR1D1 and SRD5A2 but not SRD5A1
    Barnard, Lise
    Nikolaou, Nikolaos
    Louw, Carla
    Schiffer, Lina
    Gibson, Hylton
    Gilligan, Lorna C.
    Gangitano, Elena
    Snoep, Jacky
    Arlt, Wiebke
    Tomlinson, Jeremy W.
    Storbeck, Karl-Heinz
    JOURNAL OF STEROID BIOCHEMISTRY AND MOLECULAR BIOLOGY, 2020, 202
  • [7] AKR1C1 and SRD5A1 Messenger RNA Expression at Term in the Human Myometrium and Chorioamniotic Membranes
    Lee, Richard H.
    Stanczyk, Frank Z.
    Stolz, Andrew
    Ji, Qing
    Yang, Gloria
    Goodwin, T. Murphy
    AMERICAN JOURNAL OF PERINATOLOGY, 2008, 25 (09) : 577 - 582
  • [8] The roles of AKR1C1 and AKR1C2 in ethyl-3,4-dihydroxybenzoate-induced esophageal squamous cell carcinoma cell death
    Li, Wei
    Hou, Guixue
    Zhou, Dianrong
    Lou, Xiaomin
    Xu, Yang
    Liu, Siqi
    Zhao, Xiaohang
    ONCOTARGET, 2016, 7 (16) : 21542 - 21555
  • [9] Selective reduction of AKR1C2 in prostate cancer and its role in DHT metabolism
    Ji, Q
    Chang, L
    VanDenBerg, D
    Stanczyk, FZ
    Stolz, A
    PROSTATE, 2003, 54 (04): : 275 - 289
  • [10] Ruthenium complexes show potent inhibition of AKR1C1, AKR1C2, and AKR1C3 enzymes and anti-proliferative action against chemoresistant ovarian cancer cell line
    Kljun, Jakob
    Pavlic, Renata
    Hafner, Eva
    Lipec, Tanja
    Moreno-Da Silva, Sara
    Tic, Primoz
    Turel, Iztok
    Budefeld, Tomaz
    Stojan, Jure
    Rizner, Tea Lanisnik
    FRONTIERS IN PHARMACOLOGY, 2022, 13