Signalling Mechanism in TRPM2-dependent Copper- induced HT22 Cell Death

Sharani Rathakrishnan, Iffa Nadhira Hazanol, Mohd Haziq Izzazuddin Dali, Muhammad Syahreel Azhad Sha'fie, Syahida Ahmad, N. Alitheen, S. S. Mortadza
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Abstract

Copper (Cu) is one of the critical elements needed by the human body. However, this metal can cause cytotoxicity when present in excess amounts. In this study, we used HT22 hippocampus cells to examine the function of the Ca2+-permeable transient receptor melastatin 2 (TRPM2) channel in Cu-induced neuronal cell death and the underlying mechanisms. Immunocytochemistry, single-cell imaging, acridine orange/propidium iodide (AO/PI) cell death assay and immunofluorescence microscopy were applied to interpret the mechanisms involved in Cu-induced HT22 cell death. Treatment of 30-300 μM Cu induced an increase in the [Ca2+]i in HT22 cells. Further analysis indicates that Cu exposure induced substantial HT22 cell death. Such response on HT22 cells was significantly inhibited by 2-aminoethoxydiphenyl borate (2-APB) and N-(p-amylcinnamoyl)anthranilic acid (ACA), TRPM2 channel inhibitors. Furthermore, Cu-induced HT22 cell death was suppressed by pharmacologically inhibiting poly(ADPR) polymerase (PARP) using PJ-34 and DPQ. It is known that the activation of TRPM2 channel is via the increase of intracellular reactive oxygen species (ROS). A significant concentration-dependent increase in the generation of ROS was observed in HT22 following the treatment with 30-300 μM Cu. Additionally, Cu-induced HT22 cell death was ablated by inhibiting PKC using CTC, a PKC inhibitor and NADPH oxidase (NOX) using DPI, a NOX generic inhibitor and GKT137831, a NOX1/4-specific inhibitor. Overall, our present study provides evidence suggesting that PKC/NOX/ROS/PARP is an important signalling pathway in Cu-induced activation of the TRPM2 channel and increase in the [Ca2+]i which eventually results in the toxicity of HT22 cells. These results provide new insights into the mechanisms of neurological-associated Cu-induced diseases.
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TRPM2依赖性铜诱导HT22细胞死亡的信号机制
铜(Cu)是人体所需的重要元素之一。然而,这种金属在过量存在时会引起细胞毒性。在本研究中,我们使用 HT22 海马细胞研究了钙离子渗透性瞬时受体美司他丁 2(TRPM2)通道在铜诱导的神经细胞死亡中的功能及其内在机制。应用免疫细胞化学、单细胞成像、吖啶橙/碘化丙啶(AO/PI)细胞死亡检测和免疫荧光显微镜解释了铜诱导 HT22 细胞死亡的机制。30-300 μM Cu 处理可诱导 HT22 细胞中[Ca2+]i 的增加。进一步分析表明,铜暴露诱导 HT22 细胞大量死亡。TRPM2 通道抑制剂 2-aminoethoxydiphenyl borate(2-APB)和 N-(p-amylcinnamoyl)anthranilic acid(ACA)可明显抑制 HT22 细胞的这种反应。此外,通过使用 PJ-34 和 DPQ 从药理学角度抑制聚(ADPR)聚合酶(PARP),可抑制铜诱导的 HT22 细胞死亡。众所周知,TRPM2 通道是通过增加细胞内活性氧(ROS)来激活的。在用 30-300 μM Cu 处理 HT22 后,观察到 ROS 的生成呈明显的浓度依赖性增加。此外,使用 PKC 抑制剂 CTC 抑制 PKC,使用 NOX 通用抑制剂 DPI 和 NOX1/4 特异性抑制剂 GKT137831 抑制 NADPH 氧化酶(NOX),可消除铜诱导的 HT22 细胞死亡。总之,本研究提供的证据表明,PKC/NOX/ROS/PARP 是铜诱导 TRPM2 通道活化和[Ca2+]i 增加的重要信号通路,最终导致 HT22 细胞中毒。这些结果为研究铜诱导的神经相关疾病的机制提供了新的视角。
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