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细胞外三磷酸腺苷对烟草蛋白质组的影响。

The effects of extracellular adenosine 5'-triphosphate on the tobacco proteome.

机构信息

Creative Gene Technology Ltd., The Integrative Cell Biology Laboratory, Durham, UK.

出版信息

Proteomics. 2010 Jan;10(2):235-44. doi: 10.1002/pmic.200900454.

Abstract

Extracellular adenosine 5'-triphosphate (eATP) is emerging as an important plant signalling compound capable of mobilising intracellular second messengers such as Ca(2+), nitric oxide, and reactive oxygen species. However, the downstream molecular targets and the spectrum of physiological processes that eATP regulates are largely unknown. We used exogenous ATP and a non-hydrolysable analogue as probes to identify the molecular and physiological effects of eATP-mediated signalling in tobacco. 2-DE coupled with MS/MS analysis revealed differential protein expression in response to perturbation of eATP signalling. These proteins are in several functional classes that included photosynthesis, mitochondrial ATP synthesis, and defence against oxidative stress, but the biggest response was in the pathogen defence-related proteins. Consistent with this, impairment of eATP signalling induced resistance against the bacterial pathogen Erwinia carotovora subsp. carotovora. In addition, disease resistance activated by a fungal pathogen elicitor (xylanase from Trichoderma viride) was concomitant with eATP depletion. These results reveal several previously unknown putative molecular targets of eATP signalling, which pinpoint eATP as an important hub at which regulatory signals of some major primary metabolic pathways and defence responses are integrated.

摘要

细胞外三磷酸腺苷(eATP)正在成为一种重要的植物信号化合物,能够动员细胞内的第二信使,如 Ca(2+)、一氧化氮和活性氧。然而,eATP 调节的下游分子靶标和生理过程的范围在很大程度上是未知的。我们使用外源性 ATP 和一种不可水解的类似物作为探针,来鉴定烟草中 eATP 介导的信号转导的分子和生理效应。2-DE 与 MS/MS 分析相结合,揭示了对 eATP 信号转导的干扰所引起的差异蛋白表达。这些蛋白属于几个功能类别,包括光合作用、线粒体 ATP 合成和对氧化应激的防御,但最大的反应是在与病原体防御相关的蛋白中。与此一致的是,eATP 信号转导的损伤诱导了对细菌病原体胡萝卜软腐欧文氏菌亚种胡萝卜软腐欧文氏菌的抗性。此外,真菌病原体激发子(木聚糖酶来自木霉菌)激活的抗病性与 eATP 耗竭同时发生。这些结果揭示了 eATP 信号转导的几个以前未知的潜在分子靶标,这些靶标指出 eATP 是一个重要的枢纽,一些主要的初级代谢途径和防御反应的调节信号在此整合。

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