Oxidative Damage in Sporadic Colorectal Cancer: Molecular Mapping of Base Excision Repair Glycosylases in Colorectal Cancer Patients

被引:33
作者
Vodicka, Pavel [1 ,2 ,3 ]
Urbanova, Marketa [3 ]
Makovicky, Pavol [4 ]
Tomasova, Kristyna [1 ,2 ]
Kroupa, Michal [1 ,2 ]
Stetina, Rudolf [5 ]
Opattova, Alena [1 ,2 ,3 ]
Kostovcikova, Klara [6 ]
Siskova, Anna [1 ,3 ]
Schneiderova, Michaela [7 ]
Vymetalkova, Veronika [1 ,2 ,3 ]
Vodickova, Ludmila [1 ,2 ,3 ]
机构
[1] Czech Acad Sci, Inst Expt Med, Dept Mol Biol Canc, Videnska 1083, Prague 14220, Czech Republic
[2] Charles Univ Prague, Fac Med Pilsen, Biomed Ctr, Alej Svobody 1655, Plzen 32300, Czech Republic
[3] Charles Univ Prague, Fac Med 1, Inst Biol & Med Genet, Albertov 4, Prague 12800, Czech Republic
[4] J Selye Univ, Fac Educ, Dept Biol, Bratislavska 3322, Komarno 94501, Slovakia
[5] Univ Def, Fac Mil Hlth Sci, Dept Toxicol & Mil Pharm, Trebesska 1575, Hradec Kralove 50001, Czech Republic
[6] Czech Acad Sci, Inst Microbiol, Lab Cellular & Mol Immunol, Videnska 1083, Prague 14220, Czech Republic
[7] Charles Univ Prague, Med Fac 3, Univ Hosp Kralovske Vinohrady Prague, Dept Surg, Ruska 87, Prague 10000, Czech Republic
关键词
oxidative DNA damage; DNA repair; base excision repair (BER)glycosylases; colorectal cancer; THYMINE DNA GLYCOSYLASE; CHROMOSOMAL-ABERRATIONS; GENETIC POLYMORPHISMS; DIETARY FACTORS; OVARIAN-CANCER; ASSOCIATION; EXPRESSION; MICROBIOTA; COLON; OGG1;
D O I
10.3390/ijms21072473
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
Oxidative stress with subsequent premutagenic oxidative DNA damage has been implicated in colorectal carcinogenesis. The repair of oxidative DNA damage is initiated by lesion-specific DNA glycosylases (hOGG1, NTH1, MUTYH). The direct evidence of the role of oxidative DNA damage and its repair is proven by hereditary syndromes (MUTYH-associated polyposis, NTHL1-associated tumor syndrome), where germline mutations cause loss-of-function in glycosylases of base excision repair, thus enabling the accumulation of oxidative DNA damage and leading to the adenoma-colorectal cancer transition. Unrepaired oxidative DNA damage often results in G:C>T:A mutations in tumor suppressor genes and proto-oncogenes and widespread occurrence of chromosomal copy-neutral loss of heterozygosity. However, the situation is more complicated in complex and heterogeneous disease, such as sporadic colorectal cancer. Here we summarized our current knowledge of the role of oxidative DNA damage and its repair on the onset, prognosis and treatment of sporadic colorectal cancer. Molecular and histological tumor heterogeneity was considered. Our study has also suggested an additional important source of oxidative DNA damage due to intestinal dysbiosis. The roles of base excision repair glycosylases (hOGG1, MUTYH) in tumor and adjacent mucosa tissues of colorectal cancer patients, particularly in the interplay with other factors (especially microenvironment), deserve further attention. Base excision repair characteristics determined in colorectal cancer tissues reflect, rather, a disease prognosis. Finally, we discuss the role of DNA repair in the treatment of colon cancer, since acquired or inherited defects in DNA repair pathways can be effectively used in therapy.
引用
收藏
页数:20
相关论文
共 152 条
[1]   MTH1 deficiency selectively increases non-cytotoxic oxidative DNA damage in lung cancer cells: more bad news than good? [J].
Abbas, Hussein H. K. ;
Alhamoudi, Kheloud M. H. ;
Evans, Mark D. ;
Jones, George D. D. ;
Foster, Steven S. .
BMC CANCER, 2018, 18
[2]   SPONTANEOUS AND 2-NITROPROPANE INDUCED LEVELS OF 8-HYDROXY-2'-DEOXYGUANOSINE IN LIVER DNA OF RATS FED IRON-DEFICIENT OR MANGANESE-DEFICIENT AND COPPER-DEFICIENT DIETS [J].
ADACHI, S ;
TAKEMOTO, K ;
HIROSUE, T ;
HOSOGAI, Y .
CARCINOGENESIS, 1993, 14 (02) :265-268
[3]   PRDX1 and MTH1 cooperate to prevent ROS-mediated inhibition of telomerase [J].
Ahmed, Wareed ;
Lingner, Joachim .
GENES & DEVELOPMENT, 2018, 32 (9-10) :658-669
[4]   Prognostic impact of MutT homolog-1 expression on esophageal squamous cell carcinoma [J].
Akiyama, Shingo ;
Saeki, Hiroshi ;
Nakashima, Yuichiro ;
Iimori, Makoto ;
Kitao, Hiroyuki ;
Oki, Eiji ;
Oda, Yoshinao ;
Nakabeppu, Yusaku ;
Kakeji, Yoshihiro ;
Maehara, Yoshihiko .
CANCER MEDICINE, 2017, 6 (01) :258-266
[5]   Excision of uracil from DNA by hSMUG1 includes strand incision and processing [J].
Alexeeva, Marina ;
Moen, Marivi N. ;
Grosvik, Kristin ;
Tesfahun, Almaz N. ;
Xu, Xiang Ming ;
Muruzabal-Lecumberri, Izaskun ;
Olsen, Kristine M. ;
Rasmussen, Anette ;
Ruoff, Peter ;
Kirpekar, Finn ;
Klungland, Arne ;
Bjelland, Svein .
NUCLEIC ACIDS RESEARCH, 2019, 47 (02) :779-793
[6]  
[Anonymous], STATPEARLS
[7]  
[Anonymous], 2013, TRANSL CANC RES
[8]   Intestinal Inflammation Targets Cancer-Inducing Activity of the Microbiota [J].
Arthur, Janelle C. ;
Perez-Chanona, Ernesto ;
Muehlbauer, Marcus ;
Tomkovich, Sarah ;
Uronis, Joshua M. ;
Fan, Ting-Jia ;
Campbell, Barry J. ;
Abujamel, Turki ;
Dogan, Belgin ;
Rogers, Arlin B. ;
Rhodes, Jonathan M. ;
Stintzi, Alain ;
Simpson, Kenneth W. ;
Hansen, Jonathan J. ;
Keku, Temitope O. ;
Fodor, Anthony A. ;
Jobin, Christian .
SCIENCE, 2012, 338 (6103) :120-123
[9]   Functional characterization of human MutY homolog (hMYH) missense mutation (R231L) that is linked with hMYH-associated polyposis [J].
Bai, Haibo ;
Grist, Scott ;
Gardner, Justin ;
Suthers, Graeme ;
Wilson, Teresa M. ;
Lu, A-Lien .
CANCER LETTERS, 2007, 250 (01) :74-81
[10]   Distinct gut microbiota profiles in patients with primary sclerosing cholangitis and ulcerative colitis [J].
Bajer, Lukas ;
Kverka, Miloslav ;
Kostovcik, Martin ;
Macinga, Peter ;
Dvorak, Jiri ;
Stehlikova, Zuzana ;
Brezina, Jan ;
Wohl, Pavel ;
Spicak, Julius ;
Drastich, Pavel .
WORLD JOURNAL OF GASTROENTEROLOGY, 2017, 23 (25) :4548-4558