首页> 外文期刊>Brazilian Journal of Microbiology >CspB of an arctic bacterium, Polaribacter irgensii KOPRI 22228, confers extraordinary freeze-tolerance
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CspB of an arctic bacterium, Polaribacter irgensii KOPRI 22228, confers extraordinary freeze-tolerance

机译:北极细菌极地冰原细菌KOPRI 22228的CspB具有超强的耐冻性

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Freezing temperatures are a major challenge for life at the poles. Decreased membrane fluidity, uninvited secondary structure formation in nucleic acids, and protein cold-denaturation all occur at cold temperatures. Organisms adapted to polar regions possess distinct mechanisms that enable them to survive in extremely cold environments. Among the cold-induced proteins, cold shock protein (Csp) family proteins are the most prominent. A gene coding for a Csp-family protein, cspB , was cloned from an arctic bacterium, Polaribacter irgensii KOPRI 22228, and overexpression of cspB greatly increased the freeze-survival rates of Escherichia coli hosts, to a greater level than any previously reported Csp. It also suppressed the cold-sensitivity of an E. coli csp -quadruple deletion strain, BX04. Sequence analysis showed that this protein consists of a unique domain at its N -terminal end and a well conserved cold shock domain at its C -terminal end. The most common mechanism of Csp function in cold adaption is melting of the secondary structures in RNA and DNA molecules, thus facilitating transcription and translation at low temperatures. P. irgensii CspB bound to oligo(dT)-cellulose resins, suggesting single-stranded nucleic acid-binding activity. The unprecedented level of freeze-tolerance conferred by P. irgensii CspB suggests a crucial role for this protein in survival in polar environments.
机译:冷冻温度是两极生活的主要挑战。膜流动性降低,核酸中不受欢迎的二级结构形成以及蛋白质冷变性都在低温下发生。适应极地地区的生物具有独特的机制,使它们能够在极端寒冷的环境中生存。在冷诱导蛋白中,冷休克蛋白(Csp)家族蛋白最为突出。从北极细菌欧氏弧菌KOPRI 22228中克隆了一个编码Csp家族蛋白cspB的基因,并且过表达cspB大大提高了大肠杆菌宿主的冷冻存活率,使其水平高于以前报道的任何Csp。它还抑制了大肠杆菌csp-四倍缺失菌株BX04的冷敏感性。序列分析表明,该蛋白质在其N末端由一个独特的结构域组成,在其C末端由一个保守性良好的冷休克结构域组成。 Csp功能在冷适应中最常见的机制是RNA和DNA分子中二级结构的融化,从而促进了低温下的转录和翻译。 P. irgensii CspB与寡聚(dT)-纤维素树脂结合,表明单链核酸结合活性。欧氏假单胞菌CspB赋予了前所未有的耐冻性水平,表明该蛋白在极地环境中的存活中起着至关重要的作用。

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