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氧化应激对瞬时受体电位香草酸亚型7的镁离子和三磷酸腺苷依赖性抑制作用

Mg(2+)- and ATP-dependent inhibition of transient receptor potential melastatin 7 by oxidative stress.

作者信息

Inoue Hana, Murayama Takashi, Tashiro Michiko, Sakurai Takashi, Konishi Masato

机构信息

Department of Physiology, Tokyo Medical University, 160-8402 Tokyo, Japan.

Cellular and Molecular Pharmacology, Juntendo University Graduate School of Medicine, Tokyo, Japan.

出版信息

Free Radic Biol Med. 2014 Jul;72:257-66. doi: 10.1016/j.freeradbiomed.2014.04.015. Epub 2014 Apr 18.

Abstract

Transient receptor potential melastatin 7 (TRPM7) is a Ca(2+)- and Mg(2+)-permeable nonselective cation channel that contains a unique carboxyl-terminal serine/threonine protein kinase domain. It has been reported that reactive oxygen species associated with hypoxia or ischemia activate TRPM7 current and then induce Ca(2+) overload resulting in neuronal cell death in the brain. In this study, we aimed to investigate the molecular mechanisms of TRPM7 regulation by hydrogen peroxide (H2O2) using murine TRPM7 expressed in HEK293 cells. Using the whole-cell patch-clamp technique, it was revealed that the TRPM7 current was inhibited, not activated, by the application of H2O2 to the extracellular solution. This inhibition was not reversed after washout or treatment with dithiothreitol, suggesting irreversible oxidation of TRPM7 or its regulatory factors by H2O2 under whole-cell recording. Application of an electrophile, N-methylmaleimide (NMM), which covalently modifies cysteine residues in proteins, also inhibited TRPM7 current irreversibly. The effects of H2O2 and NMM were dependent on free [Mg(2+)]i; the inhibition was stronger when cells were perfused with higher free [Mg(2+)]i solutions via pipette. In addition, TRPM7 current was not inhibited by H2O2 when millimolar ATP was included in the intracellular solution, even in the presence of substantial free [Mg(2+)]i, which is sufficient for TRPM7 inhibition by H2O2 in the absence of ATP. Moreover, a kinase-deficient mutant of TRPM7 (K1645R) was similarly inhibited by H2O2 just like the wild-type TRPM7 in a [Mg(2+)]i- and [ATP]i-dependent manner, indicating no involvement of the kinase activity of TRPM7. Thus, these data suggest that oxidative stress inhibits TRPM7 current under pathological conditions that accompany intracellular ATP depletion and free [Mg(2+)]i elevation.

摘要

瞬时受体电位褪黑素7(TRPM7)是一种可通透Ca(2+)和Mg(2+)的非选择性阳离子通道,其含有一个独特的羧基末端丝氨酸/苏氨酸蛋白激酶结构域。据报道,与缺氧或缺血相关的活性氧会激活TRPM7电流,进而诱导Ca(2+)过载,导致大脑中的神经元细胞死亡。在本研究中,我们旨在利用在HEK293细胞中表达的小鼠TRPM7来研究过氧化氢(H2O2)对TRPM7调控的分子机制。采用全细胞膜片钳技术发现,向细胞外溶液中加入H2O2会抑制而非激活TRPM7电流。在洗脱或用二硫苏糖醇处理后,这种抑制作用并未逆转,这表明在全细胞记录条件下,H2O2会使TRPM7或其调节因子发生不可逆氧化。应用亲电试剂N - 甲基马来酰亚胺(NMM),其可共价修饰蛋白质中的半胱氨酸残基,也会不可逆地抑制TRPM7电流。H2O2和NMM的作用取决于游离的[Mg(2+)]i;当通过移液管向细胞灌注更高游离[Mg(2+)]i溶液时,抑制作用更强。此外,即使存在大量游离的[Mg(2+)]i(在无ATP时足以使TRPM7被H2O2抑制),当细胞内溶液中含有毫摩尔浓度的ATP时,TRPM7电流也不会被H2O2抑制。此外,TRPM7的激酶缺陷型突变体(K1645R)与野生型TRPM7一样,以[Mg(2+)]i和[ATP]i依赖的方式被H2O2类似地抑制,这表明TRPM7的激酶活性未参与其中。因此,这些数据表明,在伴有细胞内ATP耗竭和游离[Mg(2+)]i升高的病理条件下,氧化应激会抑制TRPM7电流。

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