The PEA-15/PED protein protects glioblastoma cells from glucose deprivation-induced apoptosis via the ERK/MAP kinase pathway

被引:43
|
作者
Eckert, A. [1 ]
Boeck, B. C. [1 ]
Tagscherer, K. E. [1 ]
Haas, T. L. [1 ]
Grund, K. [1 ]
Sykora, J. [1 ]
Herold-Mende, C. [2 ]
Ehemann, V. [3 ]
Hollstein, M. [4 ]
Chneiweiss, H. [5 ]
Wiestler, O. D. [1 ]
Walczak, H. [1 ]
Roth, W. [1 ,3 ]
机构
[1] German Canc Res Ctr, Div Apoptosis Regulat, D-69120 Heidelberg, Germany
[2] Univ Heidelberg, Dept Neurosurg, Div Neurosurg Res, Heidelberg, Germany
[3] Univ Heidelberg, Inst Pathol, D-6900 Heidelberg, Germany
[4] German Canc Res Ctr, Dept Genet Alterat Carcinogenesis, D-69120 Heidelberg, Germany
[5] INSERM, U752, Paris, France
关键词
apoptosis; brain tumors; PEA-15/PED; glucose; MAP kinases; ERK1/2;
D O I
10.1038/sj.onc.1210732
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
PEA-15 ( phosphoprotein enriched in astrocytes 15 kDa) is a death effector domain-containing protein, which is involved in the regulation of apoptotic cell death. Since PEA-15 is highly expressed in cells of glia l origin, we studied the role of PEA-15 in human malignant brain tumors. Immunohistochemical analysis of PEA-15 expression shows strong immunoreactivity in astrocytomas and glioblastomas. Phosphorylation of PEA-15 at Ser(116) is found in vivo in perinecrotic areas in glioblastomas and in vitro after glucose deprivation of glioblastoma cells. Overexpression of PEA-15 induces a marked resistance against glucose deprivation-induced apoptosis, whereas small interfering RNA (siRNA)-mediated downregulation of endogenous PEA-15 results in the sensitization to glucose withdrawal-mediated cell death. This antiapoptotic activity of PEA-15 under low glucose conditions depends on its phosphorylation at Ser116. Moreover, siRNA-mediated knockdown of PEA-15 abolishes the tumorigenicity of U87MG glioblastoma cells in vivo. PEA-15 regulates the level of phosphorylated extracellular-regulated kinase ( ERK) 1/ 2 in glioblastoma cells and the PEA-15-dependent protection from glucose deprivation-induced cell death requires ERK1/2 signaling. PEA-15 transcriptionally upregulates the Glucose Transporter 3, which is abrogated by the inhibition of ERK1/2 phosphorylation. Taken together, our findings suggest that Ser(116)-phosphorylated PEA-15 renders glioma cells resistant to glucose deprivation-mediated cell death as encountered in poor microenvironments, for example in perinecrotic areas of glioblastomas.
引用
收藏
页码:1155 / 1166
页数:12
相关论文
共 50 条
  • [21] AMP-activated Protein Kinase α2 Protects against Liver Injury from Metastasized Tumors via Reduced Glucose Deprivation-induced Oxidative Stress
    Qiu, Shu-Lan
    Xiao, Zhi-Cheng
    Piao, Chun-Mei
    Xian, Ying-Lin
    Jia, Li-Xin
    Qi, Yong-Fen
    Han, Jia-Huai
    Zhang, You-yi
    Du, Jie
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2014, 289 (13) : 9449 - 9459
  • [22] Hemin protects against oxygen-glucose deprivation-induced apoptosis activation via neuroglobin in SH-SY5Y cells
    Wang, Yun-Jia
    Peng, Qian-Yi
    Deng, Song-Yun
    Chen, Cai-Xia
    Wu, Long
    Huang, Li
    Zhang, Li-Na
    [J]. NEUROCHEMICAL RESEARCH, 2017, 42 (08) : 2208 - 2217
  • [23] GLUT1 protects prostate cancer cells from glucose deprivation-induced oxidative stress
    Gonzalez-Menendez, Pedro
    Hevia, David
    Alonso-Arias, Rebeca
    Alvarez-Artime, Alejandro
    Rodriguez-Garcia, Aida
    Kinet, Sandrina
    Gonzalez-Pola, Ivan
    Taylor, Naomi
    Mayo, Juan C.
    Sainz, Rosa M.
    [J]. REDOX BIOLOGY, 2018, 17 : 112 - 127
  • [24] Transforming growth factor β1 rescues serum deprivation-induced apoptosis via the mitogen-activated protein kinase (MAPK) pathway in macrophages
    Chin, BY
    Petrache, I
    Choi, AMK
    Choi, ME
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (16) : 11362 - 11368
  • [25] Knock-out of the neural death effector domain protein PEA-15 demonstrates that its expression protects astrocytes from TNFα-induced apoptosis
    Kitsberg, D
    Formstecher, E
    Fauquet, M
    Kubes, M
    Cordier, J
    Canton, B
    Pan, GH
    Rolli, M
    Glowinski, J
    Chneiweiss, H
    [J]. JOURNAL OF NEUROSCIENCE, 1999, 19 (19): : 8244 - 8251
  • [26] C-Phycocyanin protects cerebellar granule cells from low potassium/serum deprivation-induced apoptosis
    Víctor Rimbau
    Antoni Camins
    David Pubill
    Francesc X. Sureda
    Cheyla Romay
    Ricardo González
    Andrés Jiménez
    Elena Escubedo
    Jordi Camarasa
    Mercè Pallàs
    [J]. Naunyn-Schmiedeberg's Archives of Pharmacology, 2001, 364 : 96 - 104
  • [27] C-phycocyanin protects cerebellar granule cells from low potassium/serum deprivation-induced apoptosis
    Rimbau, V
    Camins, A
    Pubill, D
    Sureda, FX
    Romay, C
    González, R
    Jiménez, A
    Escubedo, E
    Camarasa, J
    Pallàs, M
    [J]. NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 2001, 364 (02) : 96 - 104
  • [28] Latent infection of myeloid progenitors by human cytomegalovirus protects cells from FAS-mediated apoptosis through the cellular IL-10/PEA-15 pathway
    Poole, Emma
    Lau, Jonathan C. H.
    Sinclair, John
    [J]. JOURNAL OF GENERAL VIROLOGY, 2015, 96 : 2355 - 2359
  • [29] Dexmedetomidine protects against oxygen-glucose deprivation/reoxygenation injury-induced apoptosis via the p38 MAPK/ERK signalling pathway
    Wang, Ke
    Zhu, Yuekun
    [J]. JOURNAL OF INTERNATIONAL MEDICAL RESEARCH, 2018, 46 (02) : 675 - 686
  • [30] Early-stage autophagy protects nucleus pulposus cells from glucose deprivation-induced degeneration via the p-eIF2α/ATF4 pathway
    Chang, Hongze
    Cai, Feng
    Zhang, Yan
    Xue, Mintao
    Liu, Liang
    Yang, Anli
    Liu, Xiaodong
    [J]. BIOMEDICINE & PHARMACOTHERAPY, 2017, 89 : 529 - 535