Czasopismo
Tytuł artykułu
Warianty tytułu
Języki publikacji
Abstrakty
MicroRNAs (miRNAs) regulate gene expression by inhibiting translation or targeting messenger RNA (mRNA) for degradation in a posttranscriptional fashion. In this study, we show that ectopic expression of miR-34a-5p reduces the mRNA and protein levels of Krüppel-like factor 4 (KLF4). We also demonstrate that miR-34a targets the 3′-untranslated mRNA region of KLF4 and show that overexpression of miR-34a induces a significant level of apoptosis in BNL CL.2 cells exposed to doxorubicin or 10 Gy X-ray. Our data suggest that the effects of miR-34a on apoptosis occur due to the downregulation of KLF4.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Numer
Opis fizyczny
p.52-64,fig.,ref.
Twórcy
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Cardiology, the First Affiliated Hospital of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou City, China
autor
- Department of Pathology, Zhongshan Hospital, Fudan University, Shanghai City, China
Bibliografia
- 1. Bartel, D.P. MicroRNAs: genomics, biogenesis, mechanism, and function. Cell 116 (2004) 281-297.
- 2. Kim, V.N. MicroRNA biogenesis: coordinated cropping and dicing. Nat. Rev. Mol. Cell. Biol. 6 (2005) 376-385.
- 3. Nilsen, T.W. Mechanisms of microRNA-mediated gene regulation in animal cells. Trends Genet. 23 (2007) 243-249.
- 4. Sunkar, R., Chinnusamy, V., Zhu, J. and Zhu, J.K. Small RNAs as big players in plant abotic stress responses and nutrient deprivation. Trends Plant Sci. 12 (2007) 301-309.
- 5. Kulshreshtha, R., Ferracin, M., Wojcik, S.E., Garzon, R., Alder, H., AgostoPerez, F.J., Davuluri, R., Liu, C.G., Croce, C.M., Negrini, M., Calin, G.A. and Ivan, M.A. microRNA signature of hypoxia. Mol. Cell. Biol. 27 (2007) 1859-1867.
- 6. Trindade, I., Capitão, C., Dalmay, T., Fevereiro, M.P. and Santos, D.M. miR398 and miR408 are up-regulated in response to water deficit in Medicago truncatula. Planta 231 (2010) 705-716.
- 7. Simone, N.L., Soule, B.P., Ly, D., Saleh, A.D., Savage, J.E., Degraff, W., Cook, J., Harris, C.C., Gius, D. and Mitchell, J.B. Ionizing radiation-induced oxidative stress alters miRNA expression. PLoS One 4 (2009) e6377.
- 8. Chaudhry, M.A. Real-time PCR analysis of micro-RNA expression in ionizing radiation-treated cells. Cancer Biother. Radiopharm. 24 (2009) 49-56.
- 9. Chaudhry, M.A. Biomarkers for human radiation exposure. J. Biomed. Sci. 15 (2008) 557-563.
- 10. Leung, A.K.L. and Sharp, P.A. MicroRNA functions in stress responses. Mol. Cell 40 (2010) 205-215.
- 11. Babar, I.A., Slack, F.J. and Weidhaas, J.B. MiRNA modulation of the cellular stress response. Future Oncol. 4 (2008) 289-298.
- 12. Ichimura, A., Ruike, Y., Terasawa, K., Shimizu, K. and Tsujimoto, G. MicroRNA-34a inhibits cell proliferation by repressing mitogen-activated protein kinase 1 during megakaryocytic differentiation of K562 cells. Mol. Pharmacol. 77 (2010) 1016-1024.
- 13. Sun, F., Fu, H., Liu, Q., Tie, Y., Zhu, J., Xing, R., Sun, Z. and Zheng, X. Downregulation of CCND1 and CDK6 by miR-34a induces cell cycle arrest. FEBS Lett. 582 (2008) 1564-1568.
- 14. Jain, A.K., Allton, K., Iacovino, M., Mahen, E., Milczarek, R.J., Zwaka, T.P., Kyba, M. and Barton, M.C. p53 Regulates Cell Cycle and MicroRNAs to Promote Differentiation of Human Embryonic Stem Cells. PLoS Biol. 10 (2012) e1001268.
- 15. Ji, X., Wang, Z., Geamanu, A., Goja, A., Sarkar, F.H. and Gupta, S.V. Delta-tocotrienol suppresses Notch-1 pathway by up-regulating miR-34a in non-small cell lung cancer cells. Int. J. Cancer 131 (2012) 2668-2677.
- 16. Chang, T.C., Wentzel, E.A., Kent, O.A., Ramachandran, K., Mullendore, M., Lee, K.H., Feldmann, G., Yamakuchi, M., Ferlito, M., Lowenstein, C.J., Arking, D.E., Beer, M.A., Maitra, A. and Mendell, J.T. Transactivation of miR-34a by p53 broadly influences gene expression and promotes apoptosis. Mol. Cell 26 (2007) 745-752.
- 17. Hermeking, H. The miR-34 family in cancer and apoptosis. Cell Death Differ. 17 (2010) 193-199.
- 18. Krek, A., Grün, D., Poy, M.N., Wolf, R., Rosenberg, L., Epstein, E.J., MacMenamin, P., da Piedade, I., Gunsalus, K.C., Stoffel, M. and Rajewsky, N. Combinatorial microRNA target predictions. Nat. Genet. 37 (2005) 495-500.
- 19. Ghaleb, A.M., Katz, J.P., Kaestner, K.H., Du, J.X. and Yang, V.W. Krüppellike factor 4 exhibits antiapoptotic activity following gamma-radiationinduced DNA damage. Oncogene 26 (2007) 2365-2373.
- 20. http://www.genepharma.com/En/productslist.asp?Parentid=15&sortname=m iRNA
- 21. http://www.microrna.org/microrna/home.do
- 22. http://www.mirbase.org
- 23. http://pictar.mdc-berlin.de
- 24. Xia, J., Duan, Q., Ahmad, A., Bao, B., Benerjee, S., Shi, Y., Ma, J., Geng, J., Chen, Z., Rahman, K.M., Miele, L., Sarkar, F.H. and Wang, Z. Genistein inhibits cell growth and induces apoptosis through up-regulation of miR-34a in pancreatic cancer cells. Curr. Drug Targets 13 (2012) 1750-1756.
- 25. Sacher, G.A. Dependence of acute radiosensitivity on age in adult female mouse. Science 125 (1957) 1039-1040.
- 26. Crosfill, M.L., Lindop, P.J. and Rotblat, J. Variation of sensitivity to ionizing radiation with age. Nature 183 (1959) 1729-1730.
- 27. Burdelya, L.G., Krivokrysenko, V.I., Tallant, T.C., Strom, E., Gleiberman, A.S., Gupta, D., Kurnasov, O.V., Fort, F.L., Osterman, A.L., Didonato, J.A., Feinstein, E. and Gudkov, A.V.. An agonist of toll-like receptor 5 has radioprotective activity in mouse and primate models. Science 320 (2008) 226-230.
- 28. Lewanski, C.R. and Gullick, W.J. Radiotherapy and cellular signaling. Lancet Oncol. 2 (2001) 366-370.
- 29. Peter, M.E. Targeting of mRNAs by multiple miRNAs: the next step. Oncogene 29 (2010) 2161-2164.
- 30. Kloosterman, W.P. and Plasterk, R.H. The diverse functions of microRNAs in animal development and disease. Dev. Cell 11 (2006) 441-450.
- 31. Esquela-Kerscher, A. and Slack, F.J. Oncomirs-microRNAs with a role in cancer. Nat. Rev. Cancer 6 (2006) 259-269.
- 32. Thalia, A.F, Jessica, I.H., Pavel, M. and Thomas, T. microRNAs in Human Cancer . Adv. Exp. Med. Biol. 774 (2013) 1-20.
- 33. Metheetrairut, C. and Slack, F.J. MicroRNAs in the ionizing radiation response and in radiotherapy. Curr. Opin. Genet. Dev. 23 (2013) 12-19.
- 34. Chang, T.C., Wentzel, E.A., Kent, O.A., Ramachandran, K., Mullendore, M., Lee, K.H, Feldmann, G., Yamakuchi, M., Ferlito, M., Lowenstein, C.J., Arking, D.E., Beer, M.A., Maitra, A. and Mendell, J.T. Transactivation of miR-34a by p53 broadly influences gene expression and promotes apoptosis. Mol. Cell 26 (2007) 745-752.
- 35. Raver-Shapira, N., Marciano, E., Meiri, E., Spector, Y., Rosenfeld, N., Moskovits, N., Bentwich, Z. and Oren, M. Transcriptional activation of miR-34a contributes to p53-mediated apoptosis. Mol. Cell 26 (2007) 731-743.
- 36. Zhang, W., Shields, J.M., Sogawa, K., Fujii-Kuriyama, Y. and Yang, V.W. The gut-enriched Kruppel-like factor suppresses the activity of the CYP1A1 promoter in a Spl-dependent fashion. J. Biol. Chem. 273 (1998) 17917-17925.
- 37. Yoon, H.S., Chen, X. and Yang, V.W. Kruppel-like factor 4 mediates p53- dependent G1/S cell cycle arrest in response to DNA damage. J. Biol. Chem. 278 (2003) 2101-2105.
- 38. Yoon, H.S. and Yang, V.W. Requirement of Kruppel-like factor 4 in preventing entry into mitosis following DNA damage. J. Biol. Chem. 279 (2004) 5035-5041.
- 39. Calin, G.A. and Croce, C.M. MicroRNA-cancer connection: the beginning of a new tale. Cancer Res. 66 (2006) 7390-7394.
- 40. Hammond, S.M. MicroRNAs as oncogenes. Curr. Opin. Genet. Dev. 16 (2006) 4-9.
- 41. Bommer, G.T., Gerin, I., Feng, Y., Kaczorowski, A.J., Kuick, R., Love, R.E., Zhai, Y., Giordano, T.J., Qin, Z.S., Moore, B.B., MacDougald, O.A., Cho, K.R. and Fearon, E.R. P53-mediated activation of miRNA34 candidate tumor-suppressor genes. Curr. Biol. 17 (2007) 1298-1307.
- 42. Fan, F., Sun, A., Zhao, H., Liu, X., Zhang, W., Jin, X., Wang, C., Ma, X., Shen, C., Zou, Y., Hu, K. and Ge, J. MicroRNA-34a promotes cardiomyocyte apoptosis post myocardial infarction through down-regulating aldehyde dehydrogenase 2. Curr. Pharm. Des. 19 (2013) 4865-4873.
- 43. Sasaki, A., Udaka, Y., Tsunoda, Y., Yamamoto, G., Tsuji, M., Oyamada, H., Oguchi, K. and Mizutani, T. Analysis of p53 and miRNA expression after irradiation of glioblastoma cell lines. Anticancer Res. 32 (2012) 4709-4713.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.agro-5b4cd85a-5f2a-48f4-8cad-fa198cd853fd