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An Antarctic Extreme Halophile and Its Polyextremophilic Enzyme: Effects of Perchlorate Salts

机译:南极极端嗜盐菌及其多极端性酶:高氯酸盐的影响

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Effects of perchlorate salts prevalent on the surface of Mars are of significant interest to astrobiology from the perspective of potential life on the Red Planet. Halorubrum lacusprofundi, a cold-adapted halophilic Antarctic archaeon, was able to grow anaerobically on 0.04 M concentration of perchlorate. With increasing concentrations of perchlorate, growth was inhibited, with half-maximal growth rate in ca . 0.3 M NaClO_(4) and 0.1 M Mg(ClO_(4))_(2) under aerobic conditions. Magnesium ions were also inhibitory for growth, but at considerably higher concentrations, with half-maximal growth rate above 1 M . For a purified halophilic β-galactosidase enzyme of H. lacusprofundi expressed in Halobacterium sp. NRC-1, 50% inhibition of catalytic activity was observed at 0.88 M NaClO_(4) and 0.13 M Mg(ClO_(4))_(2). Magnesium ions were a more potent inhibitor of the enzyme than of cell growth. Steady-state kinetic analysis showed that Mg(ClO_(4))_(2) acts as a mixed inhibitor (K _(I) = 0.04 M ), with magnesium alone being a competitive inhibitor (K _(I) = 0.3 M ) and perchlorate alone acting as a very weak noncompetitive inhibitor (K _(I) = 2 M ). Based on the estimated concentrations of perchlorate salts on the surface of Mars, our results show that neither sodium nor magnesium perchlorates would significantly inhibit growth and enzyme activity of halophiles. This is the first study of perchlorate effects on a purified enzyme. Key Words: Halophilic archaea—Perchlorate—Enzyme inhibition—Magnesium. Astrobiology 18, 412–418.
机译:从红色星球上的潜在生命的角度来看,天文学家对火星表面普遍存在的高氯酸盐的影响非常感兴趣。嗜冷的嗜盐南极古细菌Halorubrum lacusprofundi能够在0.04 M的高氯酸盐浓度下厌氧生长。随着高氯酸盐浓度的增加,生长受到抑制,ca中的最大生长速率达到一半。在有氧条件下为0.3 M NaClO_(4)和0.1 M Mg(ClO_(4))_(2)。镁离子也具有抑制生长的作用,但浓度较高时,其半数最大生长速率高于1M。对于H的纯化的嗜盐β-半乳糖苷酶。在Halobacterium sp。中表达的lacusprofundi。 NRC-1,在0.88M NaClO_(4)和0.13M Mg(ClO_(4))_(2)处观察到50%的催化活性抑制。镁离子是一种比细胞生长更有效的酶抑制剂。稳态动力学分析表明,Mg(ClO_(4))_(2)充当混合抑制剂( K _(I)= 0.04 M),仅镁是竞争性抑制剂( K _(I)= 0.3 M,单独的高氯酸盐起非常弱的非竞争性抑制剂的作用(K _(I)= 2 M)。根据火星表面高氯酸盐的估计浓度,我们的结果表明,高氯酸钠和高氯酸镁都不会显着抑制嗜盐菌的生长和酶活性。这是高氯酸盐对纯化酶作用的首次研究。关键字:嗜盐古细菌—高氯酸盐—抑制酶—镁。天体生物学18,412–418。

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