박사

Induction of apoptosis by microRNA-203 via targeting Bmi-1 in YD-38 cancer cells = YD-38 암세포에서 Bmi-1 표적작용을 통한 microRNA-203의 세포사멸 유도

최대우 2018년
논문상세정보
' Induction of apoptosis by microRNA-203 via targeting Bmi-1 in YD-38 cancer cells = YD-38 암세포에서 Bmi-1 표적작용을 통한 microRNA-203의 세포사멸 유도' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 의료과학 약
  • Bmi-1
  • microRNA-203
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
3,959 0

0.0%

' Induction of apoptosis by microRNA-203 via targeting Bmi-1 in YD-38 cancer cells = YD-38 암세포에서 Bmi-1 표적작용을 통한 microRNA-203의 세포사멸 유도' 의 참고문헌

  • Zhong D, Huang G, Zhang Y, Zeng Y, Xu Z, Zhao Y, He X and He F: MicroRNA-1 and microRNA-206 suppress LXRα-induced lipogenesis in hepatocytes. Cell Signal 25: 1429-1437, 2013.
  • Zhao Y, Li Y, Lou G, Zhao L, Xu Z, Zhang Y and He F: MiR-137 targets estrogen-related receptor alpha and impairs the proliferative and migratory capacity of breast cancer cells. PLoS One 7: e39102, 2012.
  • Yang MH, Hsu DS, Wang HW, Wang HJ, Lan HY, Yang WH, Huang CH, Kao SY, Tzeng CH, Tai SK, Chang SY, Lee OK and Wu KJ: Bmi1 is essential in Twist1-induced epithelial-mesenchymal transition. Nat Cell Biol 12: 982-992, 2010.
  • Wu KJ: Direct activation of Bmi1 by Twist1: implications in cancer stemness, epithelial-mesenchymal transition, and clinical significance. Chang Gung Med J 34: 229-238, 2011.
  • Wei W, Wanjun L, Hui S, Dongyue C, Xinjun Y and Jisheng Z: miR-203 inhibits proliferation of HCC cells by targeting survivin. Cell Biochem Funct 31: 82-85, 2013.
  • Wang C, Zheng X, Shen C and Shi Y: MicroRNA-203 suppresses cell proliferation and migration by targeting BIRC5 and LASP1 in human triple-negative breast cancer cells. J Exp Clin Cancer Res 31: 58, 2012.
  • Venkataraman S, Alimova I, Fan R, Harris P, Foreman N and Vibhakar R: MicroRNA 128a increases intracellular ROS level by targeting Bmi-1 and inhibits medulloblastoma cancer cell growth by promoting senescence. PLoS One 5: e10748, 2010.
  • Valencia-Sanchez, M. A., Liu, J., Hannon, G. J., and Parker, R.: Control of translation and mRNA degradation by miRNAs and siRNAs, Genes Dev, 20, 515-524 (2006).
  • Tian, L., Li, M., Ge, J., Guo, Y., Sun, Y., Liu, M., and Xiao, H.: MiR-203 is downregulated in laryngeal squamous cell carcinoma and can suppress proliferation and induce apoptosis of tumours, Tumour Biol, 35, 5953-5963 (2014).
  • Takeshita N, Mori M, Kano M, Hoshino I, Akutsu Y, Hanari N, Yoneyama Y, Ikeda N, Isozaki Y, Maruyama T, Akanuma N, Miyazawa Y and Matsubara H: miR-203 inhibits the migration and invasion of esophageal squamous cell carcinoma by regulating LASP1. Int J Oncol 41: 1653-1661, 2012.
  • Sun L, Yao Y, Liu B, Lin Z, Lin L, Yang M, Zhang W, Chen W, Pan C, Liu Q, Song E and Li J: MiR-200b and miR-15b regulate chemotherapy-induced epithelial-mesenchymal transition in human tongue cancer cells by targeting BMI1. Oncogene 31: 432-445, 2012.
  • Sugihara H, Ishimoto T, Watanabe M, Sawayama H, Iwatsuki M, Baba Y, Komohara Y, Takeya M and Baba H: Identification of miR-30e regulation of Bmi1 expression mediated by tumor-associated macrophages in gastrointestinal cancer. PLoS One 8: e81839, 2013.
  • Song W, Tao K, Li H, Jin C, Song Z, Li J, Shi H, Li X, Dang Z and Dou K: Bmi-1 is related to proliferation, survival and poor prognosis in pancreatic cancer. Cancer Sci 101: 1754-1760, 2010.
  • Saini, S., Majid, S., Yamamura, S., Tabatabai, L., Suh, S. O., Shahryari, V., Chen, Y., Deng, G., Tanaka, Y., and Dahiya, R.: Regulatory Role of mir-203 in Prostate Cancer Progression and Metastasis, Clin Cancer Res, 17, 5287-5298 (2011).
  • Proctor E, Waghray M, Lee CJ, Heidt DG, Yalamanchili M, Li C, Bednar F and Simeone DM: Bmi1 enhances tumorigenicity and cancer stem cell function in pancreatic adenocarcinoma. PLoS One 8: e55820, 2013.
  • Nahvi, A., Shoemaker, C. J., and Green, R.: An expanded seed sequence definition accounts for full regulation of the hid 3' UTR by bantam miRNA, RNA, 15, 814-822 (2009).
  • Linder P, Lasko PF, Ashburner M, Leroy P, Nielsen PJ, Nishi K, Schnier J and Slonimski PP: Birth of the D-E-A-D box. Nature 337: 121-122, 1989.
  • Lin F, Wang R, Shen JJ, Wang X, Gao P, Dong K and Zhang HZ: Knockdown of RCK/p54 expression by RNAi inhibits proliferation of human colorectal cancer cells in vitro and in vivo. Cancer Biol Ther 7: 1669-1676, 2008.
  • Lim HS, Kim CS, Kim JS, Yu SK, Go DS, Lee SA, Moon SM, Chun HS, Kim SG and Kim DK: Suppression of oral carcinoma oncogenic activity by microRNA-203 via down-regulation of SEMA6A. Anticancer Res 37: 5425-5433, 2017.
  • Li, B., Sun, M., Gao, F., Liu, W., Yang, Y., Liu, H., Cheng, Y., Liu, C., and Cai, J.: Up-regulated expression of miR-23a/b targeted the pro-apoptotic Fas in radiation-induced thymic lymphoma, Cell Physiol Biochem, 32, 1729-1740 (2013).
  • Li AM, Tian AX, Zhang RX, Ge J, Sun X and Cao XC: Protocadherin-7 induces bone metastasis of breast cancer. Biochem Biophys Res Commun 436: 486-490, 2013.
  • Kim JH, Yoon SY, Kim CN, Joo JH, Moon SK, Choe IS, Choe YK and Kim JW: The Bmi-1 oncoprotein is overexpressed in human colorectal cancer and correlates with the reduced p16INK4a/p14ARF proteins. Cancer Lett 203: 217-224, 2004.
  • Kim JH, Yoon SY, Jeong SH, Kim SY, Moon SK, Joo JH, Lee Y, Choe IS and Kim JW: Overexpression of Bmi-1 oncoprotein correlates with axillary lymph node metastases in invasive ductal breast cancer. Breast 13: 383-388, 2004.
  • Kano, M., Seki, N., Kikkawa, N., Fujimura, L., Hoshino, I., Akutsu, Y., Chiyomaru, T., Enokida, H., Nakagawa, M., and Matsubara, H.: miR-145, miR-133a and miR-133b: Tumor-suppressive miRNAs target FSCN1 in esophageal squamous cell carcinoma, Int J Cancer, 127, 2804-2814 (2010).
  • Jiang X, Xiang G, Wang Y, Zhang L, Yang X, Cao L, Peng H, Xue P and Chen D: MicroRNA-590-5p regulates proliferation and invasion in human hepatocellular carcinoma cells by targeting TGF-β RII. Mol Cells 33: 545-551, 2012.
  • Jacobs JJ, Kieboom K, Marino S, DePinho RA and van Lohuizen M: The oncogene and Polycomb-group gene bmi-1 regulates cell proliferation and senescence through the ink4a locus. Nature 397: 164-168, 1999.
  • Honig A, Weidler C, H usler S, Krockenberger M, Buchholz S, K ster F, Segerer SE, Dietl J and Engel JB: Overexpression of polycomb protein BMI-1 in human specimens of breast, ovarian, endometrial and cervical cancer. Anticancer Res 30: 1559-1564, 2010.
  • Haupt Y, Bath ML, Harris AW and Adams JM: bmi-1 transgene induces lymphomas and collaborates with myc in tumorigenesis. Oncogene 8: 3161-3164, 1993.
  • Guney I, Wu S and Sedivy JM: Reduced c-Myc signaling triggers telomere-independent senescence by regulating Bmi-1 and p16(INK4a). Proc Natl Acad Sci USA 103: 3645-3650, 2006.
  • Ding X, Park SI, McCauley LK and Wang CY: Signaling between transforming growth factor β (TGF-β) and transcription factor SNAI2 represses expression of microRNA miR-203 to promote epithelial-mesenchymal transition and tumor metastasis. J Biol Chem 288: 10241-10253, 2013.
  • Dhawan S, Tschen SI and Bhushan A: Bmi-1 regulates the Ink4a/Arf locus to control pancreatic beta-cell proliferation. Genes Dev 23: 906-911, 2009.
  • Cho JH, Dimri M and Dimri GP: A positive feedback loop regulates the expression of polycomb group protein BMI1 via WNT signaling pathway. J Biol Chem 288: 3406-3418, 2013.
  • Chitwood, D. H. and Timmermans, M. C.: Small RNAs are on the move, Nature, 467, 415-419 (2010).
  • Chim, C. S., Wong, K. Y., Qi, Y., Loong, F., Lam, W. L., Wong, L. G., Jin, D. Y., Costello, J. F., and Liang, R.: Epigenetic inactivation of the miR-34a in hematological malignancies, Carcinogenesis, 31, 745-750 (2010).
  • Carrington JC and Ambros V: Role of microRNAs in plant and animal development. Science 301: 336-338, 2003.
  • Calin, G. A. and Croce, C. M.: MicroRNA signatures in human cancers, Nat Rev Cancer, 6, 857-866 (2006).
  • Brennecke J, Hipfner DR, Stark A, Russell RB and Cohen SM: bantam encodes a developmentally regulated microRNA that controls cell proliferation and regulates the proapoptotic gene hid in Drosophila. Cell 113: 25-36, 2003.
  • Bonnet, E., Wuyts, J., Rouze, P., and Van de Peer, Y.: Evidence that microRNA precursors, unlike other non-coding RNAs, have lower folding free energies than random sequences, Bioinformatics, 20, 2911-2917 (2004).
  • Bo J, Yang G, Huo K, Jiang H, Zhang L, Liu D and Huang Y: microRNA-203 suppresses bladder cancer development by repressing bcl-w expression. FEBS J 278: 786-792, 2011.
  • Bentwich I: A postulated role for microRNA in cellular differentiation. FASEB J 19: 875-879, 2005.
  • Akao Y, Matsumoto K, Ohguchi K, Nakagawa Y and Yoshida H: Human DEAD-box/RNA unwindase rck/p54 contributes to maintenance of cell growth by affecting cell cycle in cultured cells. Int J Oncol 29: 41-48, 2006.