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质膜蛋白 OsMCA1 参与调控低渗胁迫诱导的 Ca2+内流,并调节培养水稻细胞中活性氧的产生。

Plasma membrane protein OsMCA1 is involved in regulation of hypo-osmotic shock-induced Ca2+ influx and modulates generation of reactive oxygen species in cultured rice cells.

机构信息

Department of Applied Biological Science, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba, Japan.

出版信息

BMC Plant Biol. 2012 Jan 23;12:11. doi: 10.1186/1471-2229-12-11.

Abstract

BACKGROUND

Mechanosensing and its downstream responses are speculated to involve sensory complexes containing Ca2+-permeable mechanosensitive channels. On recognizing osmotic signals, plant cells initiate activation of a widespread signal transduction network that induces second messengers and triggers inducible defense responses. Characteristic early signaling events include Ca2+ influx, protein phosphorylation and generation of reactive oxygen species (ROS). Pharmacological analyses show Ca2+ influx mediated by mechanosensitive Ca2+ channels to influence induction of osmotic signals, including ROS generation. However, molecular bases and regulatory mechanisms for early osmotic signaling events remain poorly elucidated.

RESULTS

We here identified and investigated OsMCA1, the sole rice homolog of putative Ca2+-permeable mechanosensitive channels in Arabidopsis (MCAs). OsMCA1 was specifically localized at the plasma membrane. A promoter-reporter assay suggested that OsMCA1 mRNA is widely expressed in seed embryos, proximal and apical regions of shoots, and mesophyll cells of leaves and roots in rice. Ca2+ uptake was enhanced in OsMCA1-overexpressing suspension-cultured cells, suggesting that OsMCA1 is involved in Ca2+ influx across the plasma membrane. Hypo-osmotic shock-induced ROS generation mediated by NADPH oxidases was also enhanced in OsMCA1-overexpressing cells. We also generated and characterized OsMCA1-RNAi transgenic plants and cultured cells; OsMCA1-suppressed plants showed retarded growth and shortened rachises, while OsMCA1-suppressed cells carrying Ca2+-sensitive photoprotein aequorin showed partially impaired changes in cytosolic free Ca2+ concentration ([Ca2+]cyt) induced by hypo-osmotic shock and trinitrophenol, an activator of mechanosensitive channels.

CONCLUSIONS

We have identified a sole MCA ortholog in the rice genome and developed both overexpression and suppression lines. Analyses of cultured cells with altered levels of this putative Ca2+-permeable mechanosensitive channel indicate that OsMCA1 is involved in regulation of plasma membrane Ca2+ influx and ROS generation induced by hypo-osmotic stress in cultured rice cells. These findings shed light on our understanding of mechanical sensing pathways.

摘要

背景

机械感知及其下游反应被推测涉及包含 Ca2+渗透性机械敏感通道的感觉复合物。在识别渗透信号时,植物细胞启动广泛的信号转导网络的激活,该网络诱导第二信使并触发诱导性防御反应。特征性的早期信号事件包括 Ca2+内流、蛋白磷酸化和活性氧物质(ROS)的产生。药理学分析表明,机械敏感 Ca2+通道介导的 Ca2+内流影响渗透信号的诱导,包括 ROS 的产生。然而,早期渗透信号事件的分子基础和调节机制仍未得到充分阐明。

结果

我们在这里鉴定并研究了 OsMCA1,它是拟南芥中潜在的 Ca2+渗透性机械敏感通道(MCAs)在水稻中的唯一同源物。OsMCA1 特异性定位于质膜。启动子报告测定表明,OsMCA1 mRNA 在水稻种子胚胎、茎的近端和顶端区域以及叶片和根的叶肉细胞中广泛表达。在 OsMCA1 过表达悬浮培养细胞中,Ca2+摄取增强,表明 OsMCA1 参与 Ca2+穿过质膜的内流。在 OsMCA1 过表达细胞中,NADPH 氧化酶介导的低渗冲击诱导的 ROS 生成也增强。我们还生成并表征了 OsMCA1-RNAi 转基因植物和培养细胞;OsMCA1 抑制的植物表现出生长迟缓、节间缩短,而 OsMCA1 抑制的细胞携带 Ca2+敏感的萤光蛋白 aequorin,其对低渗冲击和三硝基苯酚(机械敏感通道的激活剂)诱导的细胞质游离 Ca2+浓度 ([Ca2+]cyt) 的变化部分受损。

结论

我们在水稻基因组中鉴定了一个 MCA 直系同源物,并开发了过表达和抑制系。对改变该潜在 Ca2+渗透性机械敏感通道水平的培养细胞的分析表明,OsMCA1 参与调节培养水稻细胞中低渗胁迫诱导的质膜 Ca2+内流和 ROS 生成。这些发现为我们理解机械感应途径提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e805/3313898/b93b0bcdd098/1471-2229-12-11-1.jpg

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