» Articles » PMID: 27203547

Functional Role and Tobacco Smoking Effects on Methylation of CYP1A1 Gene in Prostate Cancer

Abstract

Cytochrome P450 (CYP) 1A1 is a phase I enzyme that can activate various compounds into reactive forms and thus, may contribute to carcinogenesis. In this study, we investigated the expression, methylation status, and functional role of CYP1A1 on prostate cancer cells. Increased expression of CYP1A1 was observed in all cancer lines (PC-3, LNCaP, and DU145) compared to BPH-1 (P < 0.05); and was enhanced further by 5-aza-2'-deoxycytidine treatment (P < 0.01). Methylation-specific PCR (MSP) and sequencing of bisulfite-modified DNA of the xenobiotic response element (XRE) enhancer site XRE-1383 indicated promoter methylation as a regulator of CYP1A1 expression. In tissue, microarrays showed higher immunostaining of CYP1A1 in prostate cancer than normal and benign prostatic hyperplasia (BPH; P < 0.001), and methylation analyses in clinical specimens revealed significantly lower methylation levels in cancer compared to BPH at all enhancer sites analyzed (XRE-1383, XRE-983, XRE-895; P < 0.01). Interestingly, smoking affected the XRE-1383 site where the methylation level was much lower in cancer tissues from smokers than non-smokers (P < 0.05). CYP1A1 levels are thus increased in prostate cancer and to determine the functional effect of CYP1A1 on cells, we depleted the gene in LNCaP and DU145 by siRNA. We observe that CYP1A1 knockdown decreased cell proliferation (P < 0.05) and increased apoptosis (P < 0.01) in both cell lines. We analyzed genes affected by CYP1A1 silencing and found that apoptosis-related BCL2 was significantly down-regulated. This study supports an oncogenic role for CYP1A1 in prostate cancer via promoter hypomethylation that is influenced by tobacco smoking, indicating CYP1A1 to be a promising target for prostate cancer treatment.

Citing Articles

Novel DNA methylation changes in mouse lungs associated with chronic smoking.

Onuzulu C, Lee S, Basu S, Comte J, Hai Y, Hizon N Epigenetics. 2024; 19(1):2322386.

PMID: 38436597 PMC: 10913724. DOI: 10.1080/15592294.2024.2322386.


Associations of breast cancer related exposures and gene expression profiles in normal breast tissue-The Norwegian Women and Cancer normal breast tissue study.

Krum-Hansen S, Olsen K, Anderssen E, Frantzen J, Lund E, Paulssen R Cancer Rep (Hoboken). 2023; 6(4):e1777.

PMID: 36617746 PMC: 10075301. DOI: 10.1002/cnr2.1777.


Crosstalk between aryl hydrocarbon receptor (AhR) and BCL-2 pathways suggests the use of AhR antagonist to maintain normal differentiation state of mammary epithelial cells during BCL-2 inhibition therapy.

Al-Dhfyan A, Alaiya A, Al-Mohanna F, Attwa M, Alasmari A, Bakheet S J Adv Res. 2022; 50:177-192.

PMID: 36307019 PMC: 10403657. DOI: 10.1016/j.jare.2022.10.006.


Evidence of Association of CYP1A1 Expression in Blood Lymphocytes and Clinicopathological Variables in Oral Cancer.

Singh R, Patel K, Patel J, Pandya S, Patel P Indian J Clin Biochem. 2022; 37(2):178-184.

PMID: 35463108 PMC: 8993998. DOI: 10.1007/s12291-021-00958-1.


Methylation of CYP1A1 and VKORC1 promoter associated with stable dosage of warfarin in Chinese patients.

He S, Wu Y, Yan S, Liu J, Zhao L, Xie H PeerJ. 2021; 9:e11549.

PMID: 34221714 PMC: 8231338. DOI: 10.7717/peerj.11549.


References
1.
Hruba E, Trilecova L, Marvanova S, Krcmar P, Vykopalova L, Milcova A . Genotoxic polycyclic aromatic hydrocarbons fail to induce the p53-dependent DNA damage response, apoptosis or cell-cycle arrest in human prostate carcinoma LNCaP cells. Toxicol Lett. 2010; 197(3):227-35. DOI: 10.1016/j.toxlet.2010.06.004. View

2.
Murray G, Shaw D, Weaver R, McKay J, Ewen S, Melvin W . Cytochrome P450 expression in oesophageal cancer. Gut. 1994; 35(5):599-603. PMC: 1374739. DOI: 10.1136/gut.35.5.599. View

3.
Solhaug A, Refsnes M, Holme J . Role of cell signalling involved in induction of apoptosis by benzo[a]pyrene and cyclopenta[c,d]pyrene in Hepa1c1c7 cells. J Cell Biochem. 2004; 93(6):1143-54. DOI: 10.1002/jcb.20251. View

4.
Murray G, Patimalla S, Stewart K, Miller I, Heys S . Profiling the expression of cytochrome P450 in breast cancer. Histopathology. 2010; 57(2):202-11. DOI: 10.1111/j.1365-2559.2010.03606.x. View

5.
Nebert D, Dalton T . The role of cytochrome P450 enzymes in endogenous signalling pathways and environmental carcinogenesis. Nat Rev Cancer. 2006; 6(12):947-60. DOI: 10.1038/nrc2015. View