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首页> 外文期刊>Astrobiology >Perchlorate Salts Exert a Dominant, Deleterious Effect on the Structure, Stability, and Activity of α-Chymotrypsin
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Perchlorate Salts Exert a Dominant, Deleterious Effect on the Structure, Stability, and Activity of α-Chymotrypsin

机译:高氯酸盐盐对α-chymotrypsin的结构,稳定性和活性产生了显性,有害影响

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摘要

The presence of perchlorate ions on Mars raises the question of how these ions influence the biochemistry of any contaminant life introduced into the martian environment, or what selection pressures perchlorate ions exert on any environment that contains these ions, such as the Atacama Desert. In this study, we investigated the structure, stability, and enzyme activity of the model enzyme alpha-chymotrypsin in the presence of five Mars relevant salts, MgSO4, MgCl2, Mg(ClO4)(2), Ca(ClO4)(2), and NaClO4. We found that all the perchlorate salts reduced the enzyme activity of alpha-chymotrypsin in a concentration-dependent manner, with Mg(ClO4)(2) and Ca(ClO4)(2) having the greatest effect. This observation extends to our structural studies, which show that 1 M Mg(ClO4)(2) and Ca(ClO4)(2) greatly alter the tertiary structural environment of alpha-chymotrypsin. We also found that all the perchlorate salts assayed reduced the melting temperature of alpha-chymotrypsin, whereas the sulfate and chloride salts were able to increase the protein melting temperature. We also demonstrated that a brine containing both perchlorate and sulfate ions exerts the same deleterious effects on alpha-chymotrypsin's melting temperature and enzyme activity as that of a perchlorate-only brine. This suggests that the perchlorate salts exert a dominant, deleterious effect on protein biochemistry. These results indicate that although perchlorate salts are beneficial to the presence of liquid water due to low eutectic points, they also hamper the habitability of their own environment. Life in such brines would, therefore, have to adapt its cellular machinery to the perchlorate ion's presence or find a way of excluding it from said machinery.
机译:Mars上高氯酸盐离子的存在提出了这些离子如何影响到导致火星环境中的任何污染物生命的生物化学的问题,或者在任何含有这些离子的任何环境中施加什么选择压力,例如Atacama沙漠。在该研究中,我们研究了模型酶α-chymotrypsin在五火星相关盐,MgSO4,MgCl2,Mg(ClO4)(2),Ca(Clo4)(2)中存在的结构,稳定性和酶活性和酶活性的结构,稳定性和酶活性。和naclo4。我们发现所有高氯酸盐盐以浓度依赖性方式降低了α-脉冲蛋白素的酶活性,Mg(CLO4)(2)和Ca(CLO 4)(2)具有最大的效果。该观察结果延伸至我们的结构研究,表明1米Mg(CLO 4)(2)和Ca(CLO 4)(2)大大改变了α-Chymotrypsin的三级结构环境。我们还发现,所有高氯酸盐盐测定降低了α-chymotrypsin的熔化温度,而硫酸盐和氯化物盐能够增加蛋白质熔化温度。我们还证明,含有高氯酸盐和硫酸盐离子的盐水对α-胰蛋白酶的熔融温度和酶活性产生相同的有害影响,以及仅盐水的盐水。这表明高氯酸盐盐对蛋白质生物化学产生了显着的,有害影响。这些结果表明,尽管高氯酸盐由于低共晶点而有益于液态水的存在,但它们也妨碍了自己环境的居住地。因此,这种盐水中的生命必须使其细胞机制适应高氯酸根离子的存在或找到从所述机器中排除它的方法。

著录项

  • 来源
    《Astrobiology》 |2021年第4期|405-412|共8页
  • 作者单位

    Univ Edinburgh Ctr Astrobiol SUPA Sch Phys & Astron James Clerk Maxwell Bldg Peter Guthrie Tait Rd Edinburgh EH9 3FD Midlothian Scotland;

    Univ Edinburgh Ctr Astrobiol SUPA Sch Phys & Astron James Clerk Maxwell Bldg Peter Guthrie Tait Rd Edinburgh EH9 3FD Midlothian Scotland;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Perchlorate; Mars; Enzymology; Biochemistry; Protein; Astrobiology;

    机译:高氯酸盐;火星;酶学;生物化学;蛋白质;天体学;
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