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A Novel Cold-Adapted and Salt-Tolerant RNase R from Antarctic Sea-Ice Bacterium Psychrobacter sp. ANT206

机译:新型的冷适应和耐盐RNase R从南极海冰细菌Psychrobacter sp。 ANT206

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摘要

A novel RNase R, psrnr, was cloned from the Antarctic bacterium Psychrobacter sp. ANT206 and expressed in Escherichia coli (E. coli). A bioinformatics analysis of the psrnr gene revealed that it contained an open reading frame of 2313 bp and encoded a protein (PsRNR) of 770 amino acids. Homology modeling indicated that PsRNR had reduced hydrogen bonds and salt bridges, which might be the main reason for the catalytic efficiency at low temperatures. A site directed mutation exhibited that His 667 in the active site was absolutely crucial for the enzyme catalysis. The recombinant PsRNR (rPsRNR) showed maximum activity at 30 °C and had thermal instability, suggesting that rPsRNR was a cold-adapted enzyme. Interestingly, rPsRNR displayed remarkable salt tolerance, remaining stable at 0.5–3.0 M NaCl. Furthermore, rPsRNR had a higher kcat value, contributing to its efficient catalytic activity at a low temperature. Overall, cold-adapted RNase R in this study was an excellent candidate for antimicrobial treatment.
机译:从南极细菌Psychrobacter sp。克隆了一种新的RNase R,psrnr。 ANT206并在大肠杆菌(E. coli)中表达。 psrnr基因的生物信息学分析表明,它包含一个2313 bp的开放阅读框,并编码一个770个氨基酸的蛋白质(PsRNR)。同源性模型表明,PsRNR的氢键和盐桥减少,这可能是低温下催化效率高的主要原因。定点突变表明,在活性位点中的His 667对于酶催化绝对至关重要。重组PsRNR(rPsRNR)在30°C时显示最大活性,并具有热不稳定性,这表明rPsRNR是一种冷适应的酶。有趣的是,rPsRNR具有出色的耐盐性,在0.5–3.0 M NaCl中保持稳定。此外,rPsRNR具有较高的kcat值,有助于其在低温下的有效催化活性。总体而言,在这项研究中,冷适应的RNase R是抗微生物治疗的极佳候选者。

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