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A new sulfurtransferase from the hyperthermophilic bacterium Aquifex aeolicus. Being single is not so simple when temperature gets high.

机译:来自嗜热嗜热菌Aquifex aeolicus的一种新的硫转移酶。温度升高时,单身并不是一件容易的事。

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摘要

Sulfur is a functionally important element of living matter. Rhodanese is involved in the enzymatic production of the sulfane sulfur which has been suggested as the biological relevant active sulfur species. Rhodanese domains are ubiquitous structural modules occurring in the three major evolutionary phyla. We characterized a new single-domain rhodanese with a thiosulfate : cyanide transferase activity, Aq-477. Aq-477 can also use tetrathionate and polysulfide. Thermoactivity and thermostability studies show that in solution Aquifex sulfurtranferase exists in equilibrium between monomers, dimers and tetramers, shifting to the tetrameric state in the presence of substrate. We show that oligomerization is important for thermostability and thermoactivity. This is the first characterization of a sulfurtransferase from a hyperthermophilic bacterium, which moreover presents a tetrameric organization. Oligomeric Aq-477 may have been selected in hyperthermophiles because subunit association provides extra stabilization.
机译:硫是生命物质的重要功能元素。 Rhodanese参与了酶法生产的硫磺硫,有人建议将其作为生物相关的活性硫物质。罗丹地域是在三个主要进化门中普遍存在的结构模块。我们用硫代硫酸盐:氰化物转移酶活性,Aq-477表征了一种新的单域罗丹花。 Aq-477也可以使用四硫酸盐和多硫化物。热活性和热稳定性研究表明,溶液中的Aquifex硫转移酶在单体,二聚体和四聚体之间处于平衡状态,在存在底物的情况下转变为四聚体状态。我们表明低聚对于热稳定性和热活性很重要。这是来自超嗜热细菌的硫转移酶的第一个特征,而且具有四聚体组织。寡聚Aq-477可能已在嗜热菌中选择,因为亚基缔合提供了额外的稳定性。

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