Müller A, Fishel R (2002). "Mismatch repair and the hereditary non-polyposis colorectal cancer syndrome (HNPCC)". Cancer Invest. 20 (1): 102–9. doi:10.1081/cnv-120000371. PMID11852992. S2CID3581304.
Brown KD, Rathi A, Kamath R, Beardsley DI, Zhan Q, Mannino JL, Baskaran R (January 2003). "The mismatch repair system is required for S-phase checkpoint activation". Nat. Genet. 33 (1): 80–4. doi:10.1038/ng1052. PMID12447371. S2CID20616220.
Rasmussen LJ, Rasmussen M, Lee B, Rasmussen AK, Wilson DM, Nielsen FC, Bisgaard HC (June 2000). "Identification of factors interacting with hMSH2 in the fetal liver utilizing the yeast two-hybrid system. In vivo interaction through the C-terminal domains of hEXO1 and hMSH2 and comparative expression analysis". Mutat. Res. 460 (1): 41–52. doi:10.1016/S0921-8777(00)00012-4. PMID10856833.
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Dietlein F, Reinhardt HC (December 2014). "Molecular pathways: exploiting tumor-specific molecular defects in DNA repair pathways for precision cancer therapy". Clinical Cancer Research. 20 (23): 5882–7. doi:10.1158/1078-0432.CCR-14-1165. PMID25451105. S2CID16005088.
Ling ZQ, Li P, Ge MH, Hu FJ, Fang XH, Dong ZM, Mao WM (2011). "Aberrant methylation of different DNA repair genes demonstrates distinct prognostic value for esophageal cancer". Dig. Dis. Sci. 56 (10): 2992–3004. doi:10.1007/s10620-011-1774-z. PMID21674174. S2CID22913110.
Hsu HS, Wen CK, Tang YA, Lin RK, Li WY, Hsu WH, Wang YC (2005). "Promoter hypermethylation is the predominant mechanism in hMLH1 and hMSH2 deregulation and is a poor prognostic factor in nonsmoking lung cancer". Clin. Cancer Res. 11 (15): 5410–6. doi:10.1158/1078-0432.CCR-05-0601. PMID16061855. S2CID14444548.
Lee KH, Lee JS, Nam JH, Choi C, Lee MC, Park CS, Juhng SW, Lee JH (2011). "Promoter methylation status of hMLH1, hMSH2, and MGMT genes in colorectal cancer associated with adenoma-carcinoma sequence". Langenbecks Arch Surg. 396 (7): 1017–26. doi:10.1007/s00423-011-0812-9. PMID21706233. S2CID8069716.
Ling ZQ, Zhao Q, Zhou SL, Mao WM (2012). "MSH2 promoter hypermethylation in circulating tumor DNA is a valuable predictor of disease-free survival for patients with esophageal squamous cell carcinoma". Eur J Surg Oncol. 38 (4): 326–32. doi:10.1016/j.ejso.2012.01.008. PMID22265839.
Sengupta S, Chakrabarti S, Roy A, Panda CK, Roychoudhury S (2007). "Inactivation of human mutL homolog 1 and mutS homolog 2 genes in head and neck squamous cell carcinoma tumors and leukoplakia samples by promoter hypermethylation and its relation with microsatellite instability phenotype". Cancer. 109 (4): 703–12. doi:10.1002/cncr.22430. PMID17219447. S2CID20191692. (This paper currently has an expression of concern, see doi:10.1002/cncr.35645, PMID39558863. If this is an intentional citation to a such a paper, please replace {{expression of concern|...}} with {{expression of concern|...|intentional=yes}}.)
Malhotra P, Anwar M, Kochhar R, Ahmad S, Vaiphei K, Mahmood S (2014). "Promoter methylation and immunohistochemical expression of hMLH1 and hMSH2 in sporadic colorectal cancer: a study from India". Tumour Biol. 35 (4): 3679–87. doi:10.1007/s13277-013-1487-3. PMID24317816. S2CID10615946.
Müller A, Fishel R (2002). "Mismatch repair and the hereditary non-polyposis colorectal cancer syndrome (HNPCC)". Cancer Invest. 20 (1): 102–9. doi:10.1081/cnv-120000371. PMID11852992. S2CID3581304.
Brown KD, Rathi A, Kamath R, Beardsley DI, Zhan Q, Mannino JL, Baskaran R (January 2003). "The mismatch repair system is required for S-phase checkpoint activation". Nat. Genet. 33 (1): 80–4. doi:10.1038/ng1052. PMID12447371. S2CID20616220.
Rasmussen LJ, Rasmussen M, Lee B, Rasmussen AK, Wilson DM, Nielsen FC, Bisgaard HC (June 2000). "Identification of factors interacting with hMSH2 in the fetal liver utilizing the yeast two-hybrid system. In vivo interaction through the C-terminal domains of hEXO1 and hMSH2 and comparative expression analysis". Mutat. Res. 460 (1): 41–52. doi:10.1016/S0921-8777(00)00012-4. PMID10856833.
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Scherer SJ, Welter C, Zang KD, Dooley S (April 1996). "Specific in vitro binding of p53 to the promoter region of the human mismatch repair gene hMSH2". Biochem. Biophys. Res. Commun. 221 (3): 722–8. doi:10.1006/bbrc.1996.0663. PMID8630028.
Dietlein F, Reinhardt HC (December 2014). "Molecular pathways: exploiting tumor-specific molecular defects in DNA repair pathways for precision cancer therapy". Clinical Cancer Research. 20 (23): 5882–7. doi:10.1158/1078-0432.CCR-14-1165. PMID25451105. S2CID16005088.
Ling ZQ, Li P, Ge MH, Hu FJ, Fang XH, Dong ZM, Mao WM (2011). "Aberrant methylation of different DNA repair genes demonstrates distinct prognostic value for esophageal cancer". Dig. Dis. Sci. 56 (10): 2992–3004. doi:10.1007/s10620-011-1774-z. PMID21674174. S2CID22913110.
Hsu HS, Wen CK, Tang YA, Lin RK, Li WY, Hsu WH, Wang YC (2005). "Promoter hypermethylation is the predominant mechanism in hMLH1 and hMSH2 deregulation and is a poor prognostic factor in nonsmoking lung cancer". Clin. Cancer Res. 11 (15): 5410–6. doi:10.1158/1078-0432.CCR-05-0601. PMID16061855. S2CID14444548.
Lee KH, Lee JS, Nam JH, Choi C, Lee MC, Park CS, Juhng SW, Lee JH (2011). "Promoter methylation status of hMLH1, hMSH2, and MGMT genes in colorectal cancer associated with adenoma-carcinoma sequence". Langenbecks Arch Surg. 396 (7): 1017–26. doi:10.1007/s00423-011-0812-9. PMID21706233. S2CID8069716.
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Ling ZQ, Zhao Q, Zhou SL, Mao WM (2012). "MSH2 promoter hypermethylation in circulating tumor DNA is a valuable predictor of disease-free survival for patients with esophageal squamous cell carcinoma". Eur J Surg Oncol. 38 (4): 326–32. doi:10.1016/j.ejso.2012.01.008. PMID22265839.
Sengupta S, Chakrabarti S, Roy A, Panda CK, Roychoudhury S (2007). "Inactivation of human mutL homolog 1 and mutS homolog 2 genes in head and neck squamous cell carcinoma tumors and leukoplakia samples by promoter hypermethylation and its relation with microsatellite instability phenotype". Cancer. 109 (4): 703–12. doi:10.1002/cncr.22430. PMID17219447. S2CID20191692. (This paper currently has an expression of concern, see doi:10.1002/cncr.35645, PMID39558863. If this is an intentional citation to a such a paper, please replace {{expression of concern|...}} with {{expression of concern|...|intentional=yes}}.)
Vlaykova T, Mitkova A, Stancheva G, Kadiyska T, Gulubova M, Yovchev Y, Cirovski G, Chilingirov P, Damyanov D, Kremensky I, Mitev V, Kaneva R (2011). "Microsatellite instability and promoter hypermethylation of MLH1 and MSH2 in patients with sporadic colorectal cancer". J BUON. 16 (2): 265–73. PMID21766496.
Malhotra P, Anwar M, Kochhar R, Ahmad S, Vaiphei K, Mahmood S (2014). "Promoter methylation and immunohistochemical expression of hMLH1 and hMSH2 in sporadic colorectal cancer: a study from India". Tumour Biol. 35 (4): 3679–87. doi:10.1007/s13277-013-1487-3. PMID24317816. S2CID10615946.
Müller A, Fishel R (2002). "Mismatch repair and the hereditary non-polyposis colorectal cancer syndrome (HNPCC)". Cancer Invest. 20 (1): 102–9. doi:10.1081/cnv-120000371. PMID11852992. S2CID3581304.
Brown KD, Rathi A, Kamath R, Beardsley DI, Zhan Q, Mannino JL, Baskaran R (January 2003). "The mismatch repair system is required for S-phase checkpoint activation". Nat. Genet. 33 (1): 80–4. doi:10.1038/ng1052. PMID12447371. S2CID20616220.
Dietlein F, Reinhardt HC (December 2014). "Molecular pathways: exploiting tumor-specific molecular defects in DNA repair pathways for precision cancer therapy". Clinical Cancer Research. 20 (23): 5882–7. doi:10.1158/1078-0432.CCR-14-1165. PMID25451105. S2CID16005088.
Ling ZQ, Li P, Ge MH, Hu FJ, Fang XH, Dong ZM, Mao WM (2011). "Aberrant methylation of different DNA repair genes demonstrates distinct prognostic value for esophageal cancer". Dig. Dis. Sci. 56 (10): 2992–3004. doi:10.1007/s10620-011-1774-z. PMID21674174. S2CID22913110.
Hsu HS, Wen CK, Tang YA, Lin RK, Li WY, Hsu WH, Wang YC (2005). "Promoter hypermethylation is the predominant mechanism in hMLH1 and hMSH2 deregulation and is a poor prognostic factor in nonsmoking lung cancer". Clin. Cancer Res. 11 (15): 5410–6. doi:10.1158/1078-0432.CCR-05-0601. PMID16061855. S2CID14444548.
Lee KH, Lee JS, Nam JH, Choi C, Lee MC, Park CS, Juhng SW, Lee JH (2011). "Promoter methylation status of hMLH1, hMSH2, and MGMT genes in colorectal cancer associated with adenoma-carcinoma sequence". Langenbecks Arch Surg. 396 (7): 1017–26. doi:10.1007/s00423-011-0812-9. PMID21706233. S2CID8069716.
Sengupta S, Chakrabarti S, Roy A, Panda CK, Roychoudhury S (2007). "Inactivation of human mutL homolog 1 and mutS homolog 2 genes in head and neck squamous cell carcinoma tumors and leukoplakia samples by promoter hypermethylation and its relation with microsatellite instability phenotype". Cancer. 109 (4): 703–12. doi:10.1002/cncr.22430. PMID17219447. S2CID20191692. (This paper currently has an expression of concern, see doi:10.1002/cncr.35645, PMID39558863. If this is an intentional citation to a such a paper, please replace {{expression of concern|...}} with {{expression of concern|...|intentional=yes}}.)
Malhotra P, Anwar M, Kochhar R, Ahmad S, Vaiphei K, Mahmood S (2014). "Promoter methylation and immunohistochemical expression of hMLH1 and hMSH2 in sporadic colorectal cancer: a study from India". Tumour Biol. 35 (4): 3679–87. doi:10.1007/s13277-013-1487-3. PMID24317816. S2CID10615946.