Zeng Zhao, Leng Tiandong, Feng Xuechao, Sun Huawei, Inoue Koichi, Zhu Li, Xiong Zhi-Gang
Cyrus Tang Hematology center, Collaborative Innovation Center of Hematology, MOH Key Lab of Thrombosis and Hemostasis, Jiangsu Key Lab of Preventive and translational Medicine for Geriatric Diseases, Soochow University, Suzhou, Jiangsu, China.
Neuroscience Institute, Morehouse School of Medicine, Atlanta, GA, United States of America.
PLoS One. 2015 Mar 23;10(3):e0119912. doi: 10.1371/journal.pone.0119912. eCollection 2015.
Transient receptor potential melastatin 7 (TRPM7), a non-selective cation channel, is highly expressed expressed in the brain and plays a critical role in ischemic neuronal death. Astrocyte, the most abundant cell type in central nervous system (CNS), exerts many essential functions in the physiological and pathological conditions. Here we investigated the expression and functions of the TRPM7 channel in mouse cortical astrocytes. Using reverse transcription (RT)-PCR, immunostaining, western blot and patch clamp recording, we showed that functional TRPM7 channel is expressed in cultured mouse cortical astrocytes. Knocking down TRPM7 with specific siRNA impairs the proliferation and migration of astrocytes by 40.2% ± 3.9% and 40.1% ± 11.5%, respectively. Consistently, inhibition of TRPM7 with 2-aminoethoxydiphenyl borate (2-APB) also decreases astrocyte proliferation and migration by 46.1% ± 2.5% and 64.2% ± 2.4%. MAPKs and Akt signaling pathways have been shown to be implicated in TRPM7-mediated responses including cell proliferation and migration. Our data show that suppression of TRPM7 in astrocytes reduces the phosphorylation of extracellular signal-regulated kinases (ERK) and c-Jun N-terminal kinases (JNK), but not p38 mitogen-activated protein kinase and Akt. In addition, TRPM7, as a cation channel, has been involved in the Ca²⁺ and Mg²⁺ homeostasis in several types of cells. In our study, we found that silencing TRPM7 decreases the intracellular basal Mg²⁺ concentration without affecting Ca²⁺ concentration in astrocytes. However, an addition of Mg²⁺ to the growth medium could not rescue the impaired proliferation of astrocytes. Together, our data suggest that TRPM7 channel may play a critical role in the proliferation and migration of astrocytes via the ERK and JNK pathways.
瞬时受体电位褪黑素7(TRPM7)是一种非选择性阳离子通道,在大脑中高度表达,在缺血性神经元死亡中起关键作用。星形胶质细胞是中枢神经系统(CNS)中最丰富的细胞类型,在生理和病理条件下发挥许多重要功能。在这里,我们研究了TRPM7通道在小鼠皮质星形胶质细胞中的表达和功能。通过逆转录(RT)-PCR、免疫染色、蛋白质印迹和膜片钳记录,我们发现功能性TRPM7通道在培养的小鼠皮质星形胶质细胞中表达。用特异性小干扰RNA(siRNA)敲低TRPM7分别使星形胶质细胞的增殖和迁移受损40.2%±3.9%和40.1%±11.5%。同样,用2-氨基乙氧基二苯硼酸(2-APB)抑制TRPM7也使星形胶质细胞的增殖和迁移分别减少46.1%±2.5%和64.2%±2.4%。丝裂原活化蛋白激酶(MAPKs)和蛋白激酶B(Akt)信号通路已被证明与TRPM7介导的反应有关,包括细胞增殖和迁移。我们的数据表明,抑制星形胶质细胞中的TRPM7可降低细胞外信号调节激酶(ERK)和c-Jun氨基末端激酶(JNK)的磷酸化,但不影响p38丝裂原活化蛋白激酶和Akt。此外,TRPM7作为一种阳离子通道,已参与多种细胞类型的钙(Ca²⁺)和镁(Mg²⁺)稳态。在我们的研究中,我们发现沉默TRPM7可降低星形胶质细胞内的基础镁离子浓度,而不影响钙离子浓度。然而,在生长培养基中添加镁离子并不能挽救受损的星形胶质细胞增殖。总之,我们的数据表明,TRPM7通道可能通过ERK和JNK途径在星形胶质细胞的增殖和迁移中起关键作用。