DNMT1, a Novel Regulator Mediating mTORC1/mTORC2 Pathway-Induced NGF Expression in Schwann Cells

被引:0
作者
Meijuan Cheng
Xin Lv
Cuihong Zhang
Wei Du
Yaping Liu
Lin Zhu
Jun Hao
机构
[1] Hebei Medical University,Department of Pathology
[2] Bethune International Peace Hospital,Department of Radiation Oncology
[3] The Third Hospital of Hebei Medical University,Department of Electromyogram
来源
Neurochemical Research | 2018年 / 43卷
关键词
mTOR; S6K1; DNMT1; NGF; Schwann cell;
D O I
暂无
中图分类号
学科分类号
摘要
Schwann cells play an important role in maintaining the normal function of peripheral nerves via the secretion of nerve growth factor (NGF). The mTOR signaling pathway is known as a kind of Ser/Thr protein kinase that regulates various cell functions. DNA methyltransferase 1 (DNMT1) is an epigenetic regulator and downstream target of the mTOR pathway. In the present study, we explored the relationship between NGF expression and the mTOR pathway/DNMT1 in RSC96 cells. The results showed that both rapamycin and Torin 1 downregulated NGF expression via the inhibition of phospho-mTOR (Ser 2448) and phospho-S6K1 (Thr 389). Similarly, the silencing of RAPTOR and RICTOR decreased NGF expression by 56.7% and 52.4%, respectively, in RSC96 cells compared with the control siRNA treatment, which was accompanied by reduced phospho-S6K1 (Thr 389). The mTOR/S6K1 activator MHY1485 increased NGF expression by 28.7% and 17.1% 1 day and 2 day after stimulation, respectively, compared to the corresponding control group in RSC96 cells. Furthermore, DNMT1 was enhanced by 94.5% and 42.5% with mTOR pathway inhibitor (rapamycin and Torin 1, respectively) treatment for 3 day compared with the control group. Additionally, the inhibition of DNMT1 with a chemical inhibitor or a specific shRNA plasmid upregulated NGF in RSC96 cells. In summary, our findings suggest that DNMT1 is the downstream target of the mTOR pathway and mediates the mTOR pathway inhibition-induced reduction in NGF expression in Schwann cells. Activation of the mTOR signaling pathway and/or inhibition of DNMT1 increased NGF expression, which may benefit patients suffering from NGF deficiencies, such as diabetic peripheral neuropathy.
引用
收藏
页码:2141 / 2154
页数:13
相关论文
共 138 条
[1]  
Godinho MJ(2013)Immunohistochemical, ultrastructural and functional analysis of axonal regeneration through peripheral nerve grafts containing Schwann cells expressing BDNF, CNTF or NT3 PloS ONE 8 e69987-1685
[2]  
Teh L(2006)Neuroprotection in the peripheral nervous system: rationale for more effective therapies Arch Neurol 63 1681-175
[3]  
Pollett MA(2013)GDNF, NGF and BDNF as therapeutic options for neurodegeneration Pharmacol Ther 138 155-1421
[4]  
Goodman D(2015)c-Jun gene-modified Schwann cells: upregulating multiple neurotrophic factors and promoting neurite outgrowth Tissue Eng Part A 21 1409-1651
[5]  
Hodgetts SI(2010)Effect of NRG1, GDNF, EGF and NGF in the migration of a Schwann cell precursor line Neurochem Res 35 1643-1999
[6]  
Sweetman I(2013)Diabetic Schwann cells suffer from nerve growth factor and neurotrophin-3 underproduction and poor associability with axons Glia 61 1990-162
[7]  
Walters M(2014)Making new contacts: the mTOR network in metabolism and signalling crosstalk Nature reviews Molecular cell biology 15 155-293
[8]  
Verhaagen J(2012)mTOR signaling in growth control and disease Cell 149 274-52934
[9]  
Plant GW(2017)Effect and mechanism of inhibition of PI3K/Akt/mTOR signal pathway on chronic neuropathic pain and spinal microglia in a rat model of chronic constriction injury Oncotarget 8 52923-66
[10]  
Harvey AR(2011)DNA methyl transferase 1: regulatory mechanisms and implications in health and disease Int J Biochem Mol Biol 2 58-408