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异丙肾上腺素依赖的TRPM7激活可保护神经母细胞瘤细胞免受神经毒素诱导的损失。

Isoproterenol-Dependent Activation of TRPM7 Protects Against Neurotoxin-Induced Loss of Neuroblastoma Cells.

作者信息

Sun Yuyang, Kamat Amrita, Singh Brij B

机构信息

Department of Periodontics, School of Dentistry, University of Texas Health Science Center at San Antonio, San Antonio, TX, United States.

Geriatric Research, Education and Clinical Center, South Texas Veterans Health Care System, University of Texas Health Science Center at San Antonio, San Antonio, TX, United States.

出版信息

Front Physiol. 2020 Apr 24;11:305. doi: 10.3389/fphys.2020.00305. eCollection 2020.

Abstract

Neuronal function and their survival depend on the activation of ion channels. Loss of ion channel function is known to induce neurodegenerative diseases such as Parkinson's that exhibit loss of dopaminergic neurons; however, mechanisms that could limit neuronal loss are not yet fully identified. Our data suggest that neurotoxin-mediated loss of neuroblastoma SH-SY5Y cells is inhibited by the addition of β-adrenergic receptor (β-AR) agonist isoproterenol. The addition of isoproterenol to SHSY-5Y cells showed increased Mg influx and cell survival in the presence of neurotoxin especially at higher concentration of isoproterenol. Importantly, isoproterenol potentiated transient receptor potential melastatin-7 (TRPM7) channel activation that leads to an increase in intracellular Mg levels. The addition of 2APB, which is a known TRPM7 channel blocker, significantly decreased the TRPM7 function and inhibited isoproterenol-mediated protection against neurotoxins. Moreover, neurotoxins inhibited TRPM7 expression and function, but the restoration of TRPM7 expression increased neuroblastoma cell survival. In contrast, TRPM7 silencing increased cell loss, decreased Mg homeostasis, and inhibited mitochondrial function. Moreover, isoproterenol treatment prevented neurotoxin-mediated loss of TRPM7 expression and inhibited Bax expression that induces cell survival. These effects were dependent on the neurotoxin-induced increase in oxidative stress, which inhibits TRPM7 expression and function. Together, our results suggest a positive role for β-AR in activating TRPM7 channels that regulate Mg homeostasis and are essential for the survival of SH-SY5Y cells from neurotoxin.

摘要

神经元功能及其存活依赖于离子通道的激活。已知离子通道功能丧失会诱发神经退行性疾病,如帕金森病,其表现为多巴胺能神经元丧失;然而,能够限制神经元丧失的机制尚未完全明确。我们的数据表明,添加β-肾上腺素能受体(β-AR)激动剂异丙肾上腺素可抑制神经毒素介导的神经母细胞瘤SH-SY5Y细胞的丧失。在存在神经毒素的情况下,尤其是在较高浓度的异丙肾上腺素存在时,向SHSY-5Y细胞中添加异丙肾上腺素显示镁内流增加和细胞存活。重要的是,异丙肾上腺素增强了瞬时受体电位香草酸亚型7(TRPM7)通道的激活,导致细胞内镁水平升高。添加已知的TRPM7通道阻滞剂2-氨基乙氧基二苯硼酸(2APB)可显著降低TRPM7功能,并抑制异丙肾上腺素介导的对神经毒素的保护作用。此外,神经毒素抑制TRPM7表达和功能,但TRPM7表达的恢复增加了神经母细胞瘤细胞的存活。相反,TRPM7沉默增加了细胞丧失,降低了镁稳态,并抑制了线粒体功能。此外,异丙肾上腺素处理可防止神经毒素介导的TRPM7表达丧失,并抑制诱导细胞存活的Bax表达。这些作用依赖于神经毒素诱导的氧化应激增加,氧化应激会抑制TRPM7表达和功能。总之,我们的结果表明β-AR在激活TRPM7通道方面具有积极作用,该通道调节镁稳态,对于SH-SY5Y细胞免受神经毒素的存活至关重要。

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