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Molecular mechanism underlying differential apoptosis between human melanoma cell lines UACC903 and UACC903(+6) revealed by mitochondria-focused cDNA microarrays
Authors:Qiuyang Zhang  Jun Wu  AnhThu Nguyen  Bi-Dar Wang  Ping He  Georges St. Laurent  Owen M. Rennert  Yan A. Su
Affiliation:(1) Department of Biochemistry and Molecular Biology and the Catherine Birch McCormick Genomics Center, The George Washington University School of Medicine and Health Sciences, Ross Hall, Room 555, 2300 I Street NW, Washington, DC 20037, USA;(2) Laboratory of Cellular Hemostasis, Division of Hematology, Center for Biological Evaluation and Research, Food and Drug Administration, Bethesda, MD 20892, USA;(3) Immunovirology - Biogenesis Group, University of Antioquia, A.A. 126, Medellin, Colombia;(4) Laboratory of Clinical Genomics, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892, USA;
Abstract:Human malignant melanoma cell line UACC903 is resistant to apoptosis while chromosome 6-mediated suppressed cell line UACC903(+6) is sensitive. Here, we describe identification of differential molecular pathways underlying this difference. Using our recently developed mitochondria-focused cDNA microarrays, we identified 154 differentially expressed genes including proapoptotic (BAK1 [6p21.3], BCAP31, BNIP1, CASP3, CASP6, FAS, FDX1, FDXR, TNFSF10 and VDAC1) and antiapoptotic (BCL2L1, CLN3 and MCL1) genes. Expression of these pro- and anti-apoptotic genes was higher in UACC903(+6) than in UACC903 before UV treatment and was altered after UV treatment. qRT-PCR and Western blots validated microarray results. Our bioinformatic analysis mapped these genes to differential molecular pathways that predict resistance and sensitivity of UACC903 and UACC903(+6) to apoptosis respectively. The pathways were functionally confirmed by the FAS ligand-induced cell death and by siRNA knockdown of BAK1 protein. These results demonstrated the differential molecular pathways underlying survival and apoptosis of UACC903 and UACC903(+6) cell lines. Electronic supplementary material  The online version of this article (doi:) contains supplementary material, which is available to authorized users. Qiuyang Zhang, Jun Wu, and AnhThu Nguyen made equal contributions to this work.
Keywords:Melanoma  Apoptosis  Pathways  FAS  FASLG  BAK1
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