Insulin-Like Growth Factor-I-Forkhead Box O Transcription Factor 3a Counteracts High Glucose/Tumor Necrosis Factor-α-Mediated Neuronal Damage: Implications for Human Immunodeficiency Virus Encephalitis

被引:24
|
作者
Wilk, Anna
Urbanska, Katarzyna [2 ]
Yang, Shuo [3 ]
Wang, Jin Ying [4 ]
Amini, Shohreh [4 ]
Del Valle, Luis
Peruzzi, Francesca
Meggs, Leonard [5 ]
Reiss, Krzysztof [1 ]
机构
[1] Louisiana State Univ, Stanley S Scott Canc Ctr, Dept Med, Hlth Sci Ctr, New Orleans, LA 70112 USA
[2] Univ Penn, Sch Med, Dept Genet, Philadelphia, PA 19104 USA
[3] Northwestern Univ, Div Hematol & Oncol, Chicago, IL 60611 USA
[4] Temple Univ, Dept Neurosci, Ctr Neurovirol, Sch Med, Philadelphia, PA 19122 USA
[5] Ochsner Med Ctr, Dept Nephrol, New Orleans, LA USA
关键词
IGF-I; FOXO3a; ROS; neuronal apoptosis; HIV encephalitis; ACTIVE ANTIRETROVIRAL THERAPY; HIV-INFECTED PATIENTS; NF-KAPPA-B; OXIDATIVE STRESS; IGF-I; PROTEASE INHIBITORS; DIABETES-MELLITUS; FACTOR RECEPTOR; HOMOLOGOUS RECOMBINATION; HIV-1-INFECTED PATIENTS;
D O I
10.1002/jnr.22542
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In HIV patients, antiretroviral medications trigger metabolic abnormalities, including insulin resistance. In addition, the inflammatory cytokine tumor necrosis factor-alpha (TNF alpha), which is elevated in human immunodeficiency virus encephalitis (HIVE), also induces insulin resistance and inflicts neuronal damage in vitro. In differentiated PC12 cells and rat cortical neurons, high glucose (HG; 25 mM) triggers reactive oxygen species (ROS) accumulation, contributing to the retraction of neuronal processes, with only a minimal involvement of neuronal apoptosis. In the presence of TNF alpha, HG-treated neurons undergo massive apoptosis. Because mammalian homolog of the Forkhead family of transcription factors, Forkhead box O transcription factor 3a (FOXO3a), controls ROS metabolism, we asked whether FOXO3a could affect the fate of differentiated neurons in the paradigm of HIVE. We observed FOXO3a nuclear translocation in HG-treated neuronal cultures, accompanied by partial loss of mitochondrial potential and gradual retraction of neuronal processes. Addition of TNF alpha to HG-treated neurons increased expression of the FOXO-dependent proapoptotic gene Bim, which resulted in extensive apoptotic death. Insulin-like growth factor-I (IGF-I) significantly lowered intracellular ROS, which was accompanied by IGF-I-mediated FOXO3a nuclear export and decrease in its transcriptional activity. The clinical relevance of these findings is supported by detection of nuclear FOXO3a in TUNEL-positive cortical neurons from HIVE, especially in brain areas characterized by elevated TNF alpha. (C) 2010 Wiley-Liss, Inc.
引用
收藏
页码:183 / 198
页数:16
相关论文
共 50 条
  • [41] Insulin-like growth factor-I inhibits high-glucose-induced oxidative stress and neuronal cell death in a model of diabetic neuropathy
    Russell, JW
    Golovoy, D
    Mahendru, PI
    Feldman, EL
    ANNALS OF NEUROLOGY, 2000, 48 (03) : 472 - 472
  • [42] INVITRO INSULIN-LIKE GROWTH FACTOR-I RESISTANCE OCCURS IN CHILDREN INFECTED WITH HUMAN IMMUNODEFICIENCY VIRUS-1 (HIV-1)
    YEH, DY
    GEFFNER, ME
    SCOTT, ML
    STIEHM, ER
    BRYSON, YJ
    BRUNELL, PA
    CLINICAL RESEARCH, 1992, 40 (01): : A77 - A77
  • [43] Insulin-like growth factor-I (IGF-I) inhibits high glucose induced oxidative stress and neuronal cell death in a model of diabetic neuropathy
    Russell, JW
    Golovoy, D
    Mahendru, P
    Feldman, EL
    DIABETES, 2000, 49 : A55 - A56
  • [44] Insulin-like growth factor-binding protein-3 promotes transforming growth factor-β1-mediated epithelial-to-mesenchymal transition and motility in transformed human esophageal cells
    Natsuizaka, Mitsuteru
    Ohashi, Shinya
    Wong, Gabrielle S.
    Ahmadi, Azal
    Kalman, Ross A.
    Budo, Daniela
    Klein-Szanto, Andres J.
    Herlyn, Meenhard
    Diehl, J. Alan
    Nakagawa, Hiroshi
    CARCINOGENESIS, 2010, 31 (08) : 1344 - 1353
  • [45] Proteolysis of insulin-like growth factor-binding protein-3 in human immunodeficiency virus-positive children who fail to thrive
    Frost, RA
    Nachman, SA
    Lang, CH
    Gelato, MC
    JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1996, 81 (08): : 2957 - 2962
  • [46] Insulin-like growth factor I inhibits high glucose-induced neuronal oxidative stress and loss of mitochondrial membrane integrity in models of diabetes.
    Russell, J
    Mahendru, P
    Sullivan, K
    Feldmnn, E
    Zehra, J
    ANNALS OF NEUROLOGY, 1999, 46 (03) : 460 - 460
  • [47] Effects of Insulin-Like Growth Factor (IGF)-I/IGF-Binding Protein-3 Treatment on Glucose Metabolism and Fat Distribution in Human Immunodeficiency Virus-Infected Patients with Abdominal Obesity and Insulin Resistance
    Rao, Madhu N.
    Mulligan, Kathleen
    Tai, Viva
    Wen, Michael J.
    Dyachenko, Artem
    Weinberg, Melissa
    Li, Xiaojuan
    Lang, Thomas
    Grunfeld, Carl
    Schwarz, Jean-Marc
    Schambelan, Morris
    JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2010, 95 (09): : 4361 - 4366
  • [48] A high expression level of insulin-like growth factor I receptor is associated with increased expression of transcription factor Sp1 and regional lymph node metastasis of human gastric cancer
    Yixing Jiang
    Liwei Wang
    Weida Gong
    Daoyan Wei
    Xiangdong Le
    James Yao
    Jaffer Ajani
    James L. Abbruzzese
    Suyun Huang
    Keping Xie
    Clinical & Experimental Metastasis, 2005, 21 : 755 - 764
  • [49] A high expression level of insulin-like growth factor I receptor is associated with increased expression of transcription factor Sp1 and regional lymph node metastasis of human gastric cancer
    Jiang, YX
    Wang, LW
    Gong, WD
    Wei, DY
    Le, XD
    Yao, J
    Ajani, J
    Abbruzzese, JL
    Huang, SY
    Xie, KP
    CLINICAL & EXPERIMENTAL METASTASIS, 2004, 21 (08) : 755 - 764
  • [50] EPIDERMAL GROWTH-FACTOR BUT NOT INSULIN-LIKE GROWTH FACTOR-I POTENTIATES ADENOSINE 3',5'-MONOPHOSPHATE-MEDIATED CHORIONIC-GONADOTROPIN SECRETION BY CULTURED HUMAN CHORIOCARCINOMA CELLS
    RITVOS, O
    JALKANEN, J
    PEKONEN, F
    STENMAN, UH
    RANTA, T
    ENDOCRINOLOGY, 1988, 123 (02) : 859 - 865