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烟草BY-2细胞中氧化应激反应和Ca2+通透通道NtTPC1A/B的细胞周期依赖性调控

Cell-cycle-dependent regulation of oxidative stress responses and Ca2+ permeable channels NtTPC1A/B in tobacco BY-2 cells.

作者信息

Kadota Yasuhiro, Furuichi Takuya, Sano Toshio, Kaya Hidetaka, Gunji Wataru, Murakami Yasufumi, Muto Shoshi, Hasezawa Seiichiro, Kuchitsu Kazuyuki

机构信息

Department of Applied Biological Science, Tokyo University of Science, Noda, Chiba, Japan.

出版信息

Biochem Biophys Res Commun. 2005 Nov 4;336(4):1259-67. doi: 10.1016/j.bbrc.2005.09.004.

Abstract

Plants are always exposed to the menace of oxidative stress and protect themselves by activating a variety of defense responses. However, molecular mechanisms for oxidative stress-induced gene expression are largely unknown. We here studied the roles of the oxidative stress-responsive putative voltage-dependent Ca(2+) permeable channels, NtTPC1A and NtTPC1B, and cell cycle in H(2)O(2)-induced expression of antioxidant enzymes, glutathione peroxidase (GPX) and ascorbate peroxidase (APX), in tobacco BY-2 cells. H(2)O(2)-induced Ca(2+) rise and expression of GPX and APX were inhibited by the cosuppression of NtTPC1A/B as well as Al ion, a specific blocker for NtTPC1s, and enhanced by overexpression of AtTPC1, suggesting that NtTPC1s are the major Ca(2+)-permeable channels activated by H(2)O(2) and that Ca(2+) influx via NtTPC1s is involved in induction of H(2)O(2)-triggered gene expression. Oxidative stress-induced signal transduction mechanisms were highly dependent on the phases of the cell cycle; H(2)O(2)-induced Ca(2+) rise and expression of GPX and APX as well as the level of NtTPC1s transcripts correlated with each other and were maximal at G1 phase. In contrast, the cell cycle-dependence of hypoosmotic shock-induced Ca(2+) rise that is known to be independent of NtTPC1s was almost reverse and maximal at S phase. These results suggest that the cell cycle-dependent regulation of oxidative stress-induced Ca(2+) rise and expression of NtTPC1s contribute to the cell cycle dependence of H(2)O(2)-induced expression of peroxidases. Various Ca(2+)-mediated signal transduction pathways are differentially regulated by the cell cycle.

摘要

植物总是面临氧化应激的威胁,并通过激活多种防御反应来保护自身。然而,氧化应激诱导基因表达的分子机制大多未知。我们在此研究了氧化应激反应性推定电压依赖性Ca(2+) 通透通道NtTPC1A和NtTPC1B以及细胞周期在烟草BY-2细胞中H(2)O(2) 诱导的抗氧化酶谷胱甘肽过氧化物酶(GPX)和抗坏血酸过氧化物酶(APX)表达中的作用。NtTPC1A/B的共抑制以及NtTPC1s的特异性阻滞剂Al离子抑制了H(2)O(2) 诱导的Ca(2+) 升高以及GPX和APX的表达,而AtTPC1的过表达则增强了这些反应,这表明NtTPC1s是由H(2)O(2) 激活的主要Ca(2+) 通透通道,并且通过NtTPC1s的Ca(2+) 内流参与了H(2)O(2) 触发的基因表达诱导。氧化应激诱导的信号转导机制高度依赖于细胞周期阶段;H(2)O(2) 诱导的Ca(2+) 升高、GPX和APX的表达以及NtTPC1s转录本水平相互关联,并且在G1期达到最大值。相反,已知与NtTPC1s无关的低渗休克诱导的Ca(2+) 升高的细胞周期依赖性几乎相反,在S期达到最大值。这些结果表明,氧化应激诱导的Ca(2+) 升高和NtTPC1s表达的细胞周期依赖性有助于H(2)O(2) 诱导的过氧化物酶表达的细胞周期依赖性。各种Ca(2+) 介导的信号转导途径受到细胞周期的差异调节。

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