MUTYH, an adenine DNA glycosylase, mediates p53 tumor suppression via PARP-dependent cell death

被引:0
|
作者
S Oka
J Leon
D Tsuchimoto
K Sakumi
Y Nakabeppu
机构
[1] Medical Institute of Bioregulation,Division of Neurofunctional Genomics, Department of Immunobiology and Neuroscience
[2] Kyushu University,undefined
[3] Fukuoka,undefined
[4] Japan,undefined
[5] Research Center for Nucleotide Pool,undefined
[6] Kyushu University,undefined
来源
Oncogenesis | 2014年 / 3卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
p53-regulated caspase-independent cell death has been implicated in suppression of tumorigenesis, however, the regulating mechanisms are poorly understood. We previously reported that 8-oxoguanine (8-oxoG) accumulation in nuclear DNA (nDNA) and mitochondrial DNA triggers two distinct caspase-independent cell death through buildup of single-strand DNA breaks by MutY homolog (MUTYH), an adenine DNA glycosylase. One pathway depends on poly-ADP-ribose polymerase (PARP) and the other depends on calpains. Deficiency of MUTYH causes MUTYH-associated familial adenomatous polyposis. MUTYH thereby suppresses tumorigenesis not only by avoiding mutagenesis, but also by inducing cell death. Here, we identified the functional p53-binding site in the human MUTYH gene and demonstrated that MUTYH is transcriptionally regulated by p53, especially in the p53/DNA mismatch repair enzyme, MLH1-proficient colorectal cancer-derived HCT116+Chr3 cells. MUTYH-small interfering RNA, an inhibitor for p53 or PARP suppressed cell death without an additive effect, thus revealing that MUTYH is a potential mediator of p53 tumor suppression, which is known to be upregulated by MLH1. Moreover, we found that the p53-proficient, mismatch repair protein, MLH1-proficient colorectal cancer cell line express substantial levels of MUTYH in nuclei but not in mitochondria, suggesting that 8-oxoG accumulation in nDNA triggers MLH1/PARP-dependent cell death. These results provide new insights on the molecular mechanism of tumorigenesis and potential new strategies for cancer therapies.
引用
收藏
页码:e121 / e121
相关论文
共 50 条
  • [1] MUTYH, an adenine DNA glycosylase, mediates p53 tumor suppression via PARP-dependent cell death
    Oka, S.
    Leon, J.
    Tsuchimoto, D.
    Sakumi, K.
    Nakabeppu, Y.
    ONCOGENESIS, 2014, 3 : e121 - e121
  • [2] Erratum: MUTYH, an adenine DNA glycosylase, mediates p53 tumor suppression via PARP-dependent cell death
    S Oka
    J Leon
    D Tsuchimoto
    K Sakumi
    Y Nakabeppu
    Oncogenesis, 2015, 4 : e142 - e142
  • [3] MUTYH, an adenine DNA glycosylase, mediates p53 tumor suppression via PARP-dependent cell death (vol 3, e121, 2014)
    Oka, S.
    Leon, J.
    Tsuchimoto, D.
    Sakumi, K.
    Nakabeppu, Y.
    ONCOGENESIS, 2015, 4 : e142 - e142
  • [4] The impact of p53 polymorphisms on tumor suppression and programmed cell death
    Murphy, Maureen
    Pietsch, E. Christine
    Humbey, Olivier
    Hollstein, Monica
    George, Donna L.
    CANCER RESEARCH, 2006, 66 (08)
  • [5] Tumor suppressor p53 mediates apoptotic cell death triggered by cyclosporin A
    Pyrzynska, B
    Serrano, M
    Martínez-A, C
    Kaminska, B
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (16) : 14102 - 14108
  • [6] p53 talks to PARP: the increasing complexity of p53-induced cell death
    Wiman, K. G.
    CELL DEATH AND DIFFERENTIATION, 2013, 20 (11): : 1438 - 1439
  • [7] p53 talks to PARP: the increasing complexity of p53-induced cell death
    K G Wiman
    Cell Death & Differentiation, 2013, 20 : 1438 - 1439
  • [8] TNFSF10 (TRAIL), a p53 target gene that mediates p53-dependent cell death
    Kuribayashi, Kageaki
    Krigsfeld, Gabriel
    Wang, Wenge
    Xu, Jing
    Mayes, Patrick A.
    Dicker, David T.
    Wu, Gen Sheng
    El-Deiry, Wafik S.
    CANCER BIOLOGY & THERAPY, 2008, 7 (12) : 2034 - 2038
  • [9] Role of Mieap-regulated non-canonical mitophagy in p53 tumor suppression via iron-dependent cell death
    Yamamoto, Makoto
    Nakamura, Yasuyuki
    Tsukimata, Naoki
    Ikari, Naoki
    Suzuki, Hidefumi
    Shibata, Takahiro
    Yoshida, Yoshio
    Arakawa, Hirofumi
    CANCER SCIENCE, 2018, 109 : 1110 - 1110
  • [10] Transcriptional regulation of thymine DNA glycosylase (TDG) by the tumor suppressor protein p53
    da Costa, Nathalia Meireles
    Hautefeuille, Agnes
    Cros, Marie-Pierre
    Melendez, Matias Eliseo
    Waters, Timothy
    Swann, Peter
    Hainaut, Pierre
    Ribeiro Pinto, Luis Felipe
    CELL CYCLE, 2012, 11 (24) : 4570 - 4578