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Journal Abstract Search


533 related items for PubMed ID: 9673367

  • 1. Coincidental alterations of p16INK4A/CDKN2 and other genes in human lung cancer cell lines.
    Fujishita T, Mizushima Y, Kashii T, Kobayashi M.
    Anticancer Res; 1998; 18(3A):1537-42. PubMed ID: 9673367
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  • 2. Genetic and epigenetic alterations of the cyclin-dependent kinase inhibitors p15INK4b and p16INK4a in human thyroid carcinoma cell lines and primary thyroid carcinomas.
    Elisei R, Shiohara M, Koeffler HP, Fagin JA.
    Cancer; 1998 Nov 15; 83(10):2185-93. PubMed ID: 9827724
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  • 4. Mechanism of inactivation of CDKN2 and MTS2 in non-small cell lung cancer and association with advanced stage.
    Nakagawa K, Conrad NK, Williams JP, Johnson BE, Kelley MJ.
    Oncogene; 1995 Nov 02; 11(9):1843-51. PubMed ID: 7478613
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  • 5. P16Ink4a tumor suppressor function in lung cancer cells involves cyclin-dependent kinase 2 inhibition by Cip/Kip protein redistribution.
    Grimison B, Langan TA, Sclafani RA.
    Cell Growth Differ; 2000 Oct 02; 11(10):507-15. PubMed ID: 11063124
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  • 9. Molecular analysis of P16(Ink4)/CDKN2 and P15(INK4B)/MTS2 genes in primary human testicular germ cell tumors.
    Heidenreich A, Gaddipati JP, Moul JW, Srivastava S.
    J Urol; 1998 May 02; 159(5):1725-30. PubMed ID: 9554401
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  • 11. Lack of mutation in the cyclin-dependent kinase inhibitor, p19INK4d, in tumor-derived cell lines and primary tumors.
    Zariwala M, Xiong Y.
    Oncogene; 1996 Nov 07; 13(9):2033-8. PubMed ID: 8934552
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  • 12. p27/Kip1 mutation found in breast cancer.
    Spirin KS, Simpson JF, Takeuchi S, Kawamata N, Miller CW, Koeffler HP.
    Cancer Res; 1996 May 15; 56(10):2400-4. PubMed ID: 8625318
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  • 13. Homozygous codeletion and differential decreased expression of p15INK4b, p16INK4a-alpha and p16INK4a-beta in mouse lung tumor cells.
    Herzog CR, Soloff EV, McDoniels AL, Tyson FL, Malkinson AM, Haugen-Strano A, Wiseman RW, Anderson MW, You M.
    Oncogene; 1996 Nov 07; 13(9):1885-91. PubMed ID: 8934534
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  • 14. Absence of p15INK4B and p16INK4A gene alterations in primary cervical carcinoma tissues and cell lines with human papillomavirus infection.
    Kim JW, Namkoong SE, Ryu SW, Kim HS, Shin JW, Lee JM, Kim DH, Kim IK.
    Gynecol Oncol; 1998 Jul 07; 70(1):75-9. PubMed ID: 9698478
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  • 15. Hypermethylation-associated inactivation indicates a tumor suppressor role for p15INK4B.
    Herman JG, Jen J, Merlo A, Baylin SB.
    Cancer Res; 1996 Feb 15; 56(4):722-7. PubMed ID: 8631003
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  • 16. High incidence of allelic loss on chromosome 5 and inactivation of p15INK4B and p16INK4A tumor suppressor genes in oxystress-induced renal cell carcinoma of rats.
    Tanaka T, Iwasa Y, Kondo S, Hiai H, Toyokuni S.
    Oncogene; 1999 Jun 24; 18(25):3793-7. PubMed ID: 10391689
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  • 17. Comparison of the effectiveness of adenovirus vectors expressing cyclin kinase inhibitors p16INK4A, p18INK4C, p19INK4D, p21(WAF1/CIP1) and p27KIP1 in inducing cell cycle arrest, apoptosis and inhibition of tumorigenicity.
    Schreiber M, Muller WJ, Singh G, Graham FL.
    Oncogene; 1999 Mar 04; 18(9):1663-76. PubMed ID: 10208428
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  • 18. Methylation of the 5' CpG island of the p16/CDKN2 tumor suppressor gene in normal and transformed human tissues correlates with gene silencing.
    Gonzalez-Zulueta M, Bender CM, Yang AS, Nguyen T, Beart RW, Van Tornout JM, Jones PA.
    Cancer Res; 1995 Oct 15; 55(20):4531-5. PubMed ID: 7553622
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  • 19. p27Kip1: a key mediator of retinoic acid induced growth arrest in the SMS-KCNR human neuroblastoma cell line.
    Matsuo T, Thiele CJ.
    Oncogene; 1998 Jun 25; 16(25):3337-43. PubMed ID: 9681834
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  • 20. Genetic alterations of p16INK4a and p53 genes in sporadic dysplastic nevus.
    Lee JY, Dong SM, Shin MS, Kim SY, Lee SH, Kang SJ, Lee JD, Kim CS, Kim SH, Yoo NJ.
    Biochem Biophys Res Commun; 1997 Aug 28; 237(3):667-72. PubMed ID: 9299424
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