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冷诱导 DEAD RNA 螺旋酶在嗜热古菌 Thermococcus kodakarensis 中的诱导的重要性及其决定因素。

Importance and determinants of induction of cold-induced DEAD RNA helicase in the hyperthermophilic archaeon Thermococcus kodakarensis.

机构信息

Department of Bioscience, Graduate School of Science and Technology, Kwansei-Gakuin University, Sanda, Hyogo, Japan.

出版信息

J Bacteriol. 2013 Aug;195(15):3442-50. doi: 10.1128/JB.00332-13. Epub 2013 May 31.

Abstract

Thermococcus kodakarensis, which grows optimally at 85°C, expresses cold stress-inducible DEAD box RNA helicase (Tk-deaD) when shifted to 60°C. A DDA1 deletion (ΔTk-deaD) mutant exhibited decreased cell growth, and cells underwent lysis at 60°C in nutrient broth in the absence of elemental sulfur. In contrast, cells in medium containing elemental sulfur at 60°C did not undergo lysis, suggesting that Tk-deaD is necessary for cell growth in sulfur-free medium. To identify the element responsible for the cold response, a pTKR expression probe plasmid was constructed using thermostable catalase from Pyrobaculum calidifontis as a reporter. The plasmid pTKRD, which contained the transcription factor B recognition element, TATA region, and Shine-Dalgarno (SD) region, including the initiation codon of the Tk-deaD gene, exhibited cold inducibility. We also constructed a series of deletion and chimeric constructs with the glutamate dehydrogenase (gdh) promoter, whose expression is constitutive independent of culture temperatures and catalase expression. Reporter assay experiments indicated that the regulatory element is located in the region between the SD region and the initiation codon (ATG). Nucleotide sequences in the upstream regions of Tk-deaD and gdh were compared and revealed a five-adenosine (AAAAA) sequence between SD and ATG of Tk-deaD that was not present in gdh. Replacement of the repeated adenosine sequence with other sequences revealed that the AAAAA sequence is important for cold induction. This sequence-specific mechanism is unique and is one that has not been identified in other known cold-inducible genes.

摘要

水生栖热菌,在 85°C 时生长最佳,当温度被转移到 60°C 时会表达冷应激诱导的 DEAD 框 RNA 解旋酶(Tk-deaD)。DDA1 缺失(ΔTk-deaD)突变体表现出细胞生长减少,并且在没有元素硫的营养肉汤中在 60°C 时细胞发生裂解。相比之下,在含有元素硫的培养基中,细胞在 60°C 时不会发生裂解,这表明 Tk-deaD 是在无硫培养基中细胞生长所必需的。为了鉴定负责冷响应的元素,使用来自 Pyrobaculum calidifontis 的热稳定过氧化氢酶作为报告基因构建了 pTKR 表达探针质粒。包含转录因子 B 识别元件、TATA 区和 Shine-Dalgarno(SD)区的质粒 pTKRD,包括 Tk-deaD 基因的起始密码子,表现出冷诱导性。我们还构建了一系列缺失和嵌合构建体与谷氨酸脱氢酶(gdh)启动子,其表达是组成型的,不依赖于培养温度和过氧化氢酶表达。报告基因测定实验表明,调节元件位于 SD 区和起始密码子(ATG)之间的区域。Tk-deaD 和 gdh 的上游区域的核苷酸序列进行了比较,并在 Tk-deaD 的 SD 和 ATG 之间发现了一个不在 gdh 中的五腺嘌呤(AAAAA)序列。用其他序列替换重复的腺嘌呤序列表明,AAAAA 序列对冷诱导很重要。这种序列特异性机制是独特的,并且在其他已知的冷诱导基因中没有发现。

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