首页> 外文期刊>Plant physiology >The Arabidopsis Putative Selenium-Binding Protein Family: Expression Study and Characterization of SBP1 as a Potential New Player in Cadmium Detoxification Processes.
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The Arabidopsis Putative Selenium-Binding Protein Family: Expression Study and Characterization of SBP1 as a Potential New Player in Cadmium Detoxification Processes.

机译:拟南芥推定的硒结合蛋白家族:SBP1的表达研究和表征,它是镉解毒过程中潜在的新参与者。

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摘要

In Arabidopsis (Arabidopsis thaliana), the putative selenium-binding protein (SBP) gene family is composed of three members (SBP1-SBP3). Reverse transcription-polymerase chain reaction analyses showed that SBP1 expression was ubiquitous. SBP2 was expressed at a lower level in flowers and roots, whereas SBP3 transcripts were only detected in young seedling tissues. In cadmium (Cd)-treated seedlings, SBP1 level of expression was rapidly increased in roots. In shoots, SBP1 transcripts accumulated later and for higher Cd doses. SBP2 and SBP3 expression showed delayed or no responsiveness to Cd. In addition, luciferase (LUC) activity recorded on Arabidopsis lines expressing the LUC gene under the control of the SBP1 promoter further showed dynamic regulation of SBP1 expression during development and in response to Cd stress. Western-blot analysis using polyclonal antibodies raised against SBP1 showed that SBP1 protein accumulated in Cd-exposed tissues in correlation with SBP1 transcript amount. The sbp1 null mutant displayed no visible phenotype under normal and stress conditions that was explained by the up-regulation of SBP2 expression. SBP1 overexpression enhanced Cd accumulation in roots and reduced sensitivity to Cd in wild type and, more significantly, in Cd-hypersensitive cad mutants that lack phytochelatins. Similarly, in Saccharomyces cerevisiae, SBP1 expression led to increased Cd tolerance of the Cd-hypersensitive ycf1 mutant. In vitro experiments showed that SBP1 has the ability to bind Cd. These data highlight the importance of maintaining the adequate SBP protein level under healthy and stress conditions and suggest that, during Cd stress, SBP1 accumulation efficiently helps to detoxify Cd potentially through direct binding.
机译:在拟南芥(Arabidopsis thaliana)中,假定的硒结合蛋白(SBP)基因家族由三个成员(SBP1-SBP3)组成。逆转录聚合酶链反应分析表明SBP1表达无处不在。 SBP2在花和根中的表达水平较低,而SBP3转录物仅在年轻的幼苗组织中检测到。在镉处理的幼苗中,根中SBP1的表达水平迅速增加。在芽中,SBP1转录本积累较晚,镉含量较高。 SBP2和SBP3表达显示出对Cd的延迟或无反应。此外,在SBP1启动子的控制下,表达LUC基因的拟南芥品系上记录的荧光素酶(LUC)活性进一步显示了在发育过程中和响应Cd胁迫时SBP1表达的动态调节。使用针对SBP1的多克隆抗体进行的Western印迹分析表明,暴露于Cd的组织中积累的SBP1蛋白与SBP1转录量相关。 sbp1无效突变体在正常和应激条件下均未显示可见表型,这可以通过SBP2表达的上调来解释。 SBP1过表达增强了根中Cd的积累,并降低了野生型对Cd的敏感性,更重要的是,在缺乏植物螯合素的Cd超敏cad突变体中。同样,在酿酒酵母中,SBP1表达导致Cd过敏性ycf1突变体的Cd耐受性增加。体外实验表明,SBP1具有结合Cd的能力。这些数据凸显了在健康和压力条件下保持足够的SBP蛋白水平的重要性,并表明在Cd胁迫期间,SBP1的积累有效地有助于通过直接结合使Cd解毒。

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