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首页> 外文期刊>Journal of bacteriology >Ectoine and Hydroxyectoine as Protectants against Osmotic and Cold Stress: Uptake through the SigB-Controlled Betaine-Choline- Carnitine Transporter-Type Carrier EctT from Virgibacillus pantothenticus
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Ectoine and Hydroxyectoine as Protectants against Osmotic and Cold Stress: Uptake through the SigB-Controlled Betaine-Choline- Carnitine Transporter-Type Carrier EctT from Virgibacillus pantothenticus

机译:Ectoine和Hydroxyectoine作为针对渗透压和冷胁迫的保护剂:通过泛酸泛酸杆菌(Virgibacillus pantothenticus)的SigB控制的甜菜碱-胆碱-肉碱转运蛋白类型载体EctT吸收。

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Virgibacillus pantothenticus has been shown to synthesize the compatible solute ectoine in response to high salinity or low growth temperature. We found that exogenously provided ectoine and hydroxyectoine also serve as protectants against these challenges. Transport studies with [14C]ectoine revealed that both types of stress induced a high-affinity ectoine uptake activity in V. pantothenticus. By using an Escherichia coli mutant defective in osmoprotectant uptake systems, a functional complementation approach for osmostress resistance in the presence of ectoine was employed to retrieve a gene encoding an ectoine transporter from V. pantothenticus. The cloned gene (ectT) encodes a protein (EctT) that is a member of the BCCT (betaine-choline-carnitine-transporter) family of carriers. Osmoprotection assays demonstrated that the EctT carrier mediates the preferential import of ectoine and hydroxyectoine but also possesses minor uptake activities for the compatible solutes proline and glycine betaine. Northern blot analysis with RNA isolated from V. pantothenticus revealed that a rise in the external osmolality or a reduction in growth temperature strongly increased the transcription of the ectT gene. Primer extension analysis demonstrated that ectT was transcribed under these conditions from a SigB-type promoter. SigB is the master regulator of the general stress regulon of bacilli and provides protection to cells against various challenges, including high salinity and low temperature. Both the synthesis of ectoine and the EctT-mediated uptake of ectoine and hydroxyectoine are triggered by the same environmental cues, high salinity and cold stress, and thereby provide, in a concerted fashion, the protection of V. pantothenticus against these challenges.
机译:已显示泛炎病毒杆菌可响应高盐度或低生长温度来合成相容的溶质ectoine。我们发现,外源提供的ectoine和hydroxyectoine还可作为针对这些挑战的保护剂。用[ 14 C]油桃素进行的运输研究表明,两种类型的胁迫均在泛毒素中诱导了高亲和力的油桃素吸收活性。通过使用在渗透保护剂摄取系统中有缺陷的大肠杆菌突变体,采用了在存在ectoine的情况下针对渗透压抗性的功能性互补方法,从泛毒素中检索到编码ectoine转运蛋白的基因。克隆的基因( ectT )编码一种蛋白质(EctT),该蛋白质是BCCT(甜菜碱-胆碱-肉碱-转运蛋白)载体家族的成员。渗透保护试验表明,EctT载体介导了优先引入的油酸和羟基油酸,但对兼容的脯氨酸和甘氨酸甜菜碱也具有较小的吸收活性。 Northern印迹分析使用了分离自泛毒素的RNA,发现外部渗透压升高或生长温度降低强烈增强了 ectT 基因的转录。引物延伸分析表明 ectT 在这些条件下是从SigB型启动子转录的。 SigB是细菌一般应激调节的主要调节剂,可为细胞提供多种防御作用的保护,包括高盐度和低温。相同的环境提示,高盐度和冷胁迫都触发了油桃素的合成以及EctT介导的油桃素和羟基油桃素的摄取,从而以一致的方式提供了保护泛毒素对这些挑战的保护。

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