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嗜热变形菌来源的铜锌双加氧酶的晶体结构——对酶机制和稳定性的深入了解。

Crystal structure of the cambialistic superoxide dismutase from Aeropyrum pernix K1--insights into the enzyme mechanism and stability.

机构信息

National Institute of Advanced Industrial Science and Technology, Ikeda, Osaka, Japan.

出版信息

FEBS J. 2011 Feb;278(4):598-609. doi: 10.1111/j.1742-4658.2010.07977.x. Epub 2010 Dec 23.

DOI:10.1111/j.1742-4658.2010.07977.x
PMID:21182595
Abstract

Aeropyrum pernix K1, an aerobic hyperthermophilic archaeon, produces a cambialistic superoxide dismutase that is active in the presence of either of Mn or Fe. The crystal structures of the superoxide dismutase from A. pernix in the apo, Mn-bound and Fe-bound forms were determined at resolutions of 1.56, 1.35 and 1.48 Å, respectively. The overall structure consisted of a compact homotetramer. Analytical ultracentrifugation was used to confirm the tetrameric association in solution. In the Mn-bound form, the metal was in trigonal bipyramidal coordination with five ligands: four side chain atoms and a water oxygen. One aspartate and two histidine side chains ligated to the central metal on the equatorial plane. In the Fe-bound form, an additional water molecule was observed between the two histidines on the equatorial plane and the metal was in octahedral coordination with six ligands. The additional water occupied the postulated superoxide binding site. The thermal stability of the enzyme was compared with superoxide dismutase from Thermus thermophilus, a thermophilic bacterium, which contained fewer ion pairs. In aqueous solution, the stabilities of the two enzymes were almost identical but, when the solution contained ethylene glycol or ethanol, the A. pernix enzyme had significantly higher thermal stability than the enzyme from T. thermophilus. This suggests that dominant ion pairs make A. pernix superoxide dismutase tolerant to organic media.

摘要

嗜热古菌 Aeropyrum pernix K1 产生一种兼性需氧超氧化物歧化酶,该酶在 Mn 或 Fe 存在的情况下均具有活性。A. pernix 的超氧化物歧化酶在 apo、Mn 结合和 Fe 结合形式下的晶体结构分别在 1.56、1.35 和 1.48 Å 的分辨率下确定。整体结构由一个紧凑的四聚体组成。分析超速离心用于确认溶液中的四聚体缔合。在 Mn 结合形式中,金属处于三角双锥配位,有五个配体:四个侧链原子和一个水分子的氧原子。一个天冬氨酸和两个组氨酸侧链在赤道平面上与中心金属配位。在 Fe 结合形式中,在赤道平面上的两个组氨酸之间观察到一个额外的水分子,金属与六个配体处于八面体配位。额外的水分子占据了假定的超氧化物结合位点。与嗜热细菌 Thermus thermophilus 的超氧化物歧化酶相比,该酶的热稳定性也进行了比较,后者含有较少的离子对。在水溶液中,两种酶的稳定性几乎相同,但当溶液中含有乙二醇或乙醇时,A. pernix 酶的热稳定性明显高于 T. thermophilus 酶。这表明主要的离子对使 A. pernix 超氧化物歧化酶能够耐受有机介质。

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