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首页> 外文期刊>Biochemistry >Halophilic adaptation: novel solvent protein interactions observed in the 2.9 and 2.6 A resolution structures of the wild type and a mutant of malate dehydrogenase from Haloarcula marismortui.
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Halophilic adaptation: novel solvent protein interactions observed in the 2.9 and 2.6 A resolution structures of the wild type and a mutant of malate dehydrogenase from Haloarcula marismortui.

机译:嗜盐适应性:在2.9和2.6 A解析结构的野生型中发现了新的溶剂蛋白相互作用,并且从Haloarcula marismortui得到了苹果酸脱氢酶的突变体。

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Previous biophysical studies of tetrameric malate dehydrogenase from the halophilic archaeon Haloarcula marismortui (Hm MalDH) have revealed the importance of protein-solvent interactions for its adaptation to molar salt conditions that strongly affect protein solubility, stability, and activity, in general. The structures of the E267R stability mutant of apo (-NADH) Hm MalDH determined to 2.6 A resolution and of apo (-NADH) wild type Hm MalDH determined to 2.9 A resolution, presented here, highlight a variety of novel protein-solvent features involved in halophilic adaptation. The tetramer appears to be stabilized by ordered water molecule networks and intersubunit complex salt bridges "locked" in by bound solvent chloride and sodium ions. The E267R mutation points into a central ordered water cavity, disrupting protein-solvent interactions. The analysis of the crystal structures showed that halophilic adaptation is not aimed uniquely at "protecting" the enzyme from the extreme salt conditions, as may have been expected, but, on the contrary, consists of mechanisms that harness the high ionic concentration in the environment.
机译:以前,来自嗜盐古细菌Haloarcula marismortui(Hm MalDH)的四聚体苹果酸脱氢酶的生物物理研究表明,蛋白质-溶剂相互作用对于适应摩尔盐条件的重要性非常重要,该条件通常会强烈影响蛋白质的溶解度,稳定性和活性。载脂蛋白(-NADH)Hm MalDH的E267R稳定性突变体的结构被确定为2.6 A分辨率和载脂蛋白(-NADH)野生型Hm MalDH的被确定为2.9 A分辨率的结构,突出显示了所涉及的多种新颖的蛋白质溶剂特征在嗜盐适应中。四聚体似乎通过有序的水分子网络和亚单位间的复杂盐桥而被稳定化,所述盐桥被结合的溶剂氯化物和钠离子“锁定”。 E267R突变指向中央有序水腔,破坏了蛋白质与溶剂的相互作用。晶体结构分析表明,嗜盐性适应并非唯一地旨在“保护”酶免于极端盐条件的破坏,正如人们所预期的那样,相反,它由利用环境中高离子浓度的机制组成。 。

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