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首页> 外文期刊>Journal of Molecular Biology >Stabilization of a tetrameric malate dehydrogenase by introduction of a disulfide bridge at the dimer-dimer interface.
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Stabilization of a tetrameric malate dehydrogenase by introduction of a disulfide bridge at the dimer-dimer interface.

机译:通过在二聚体-二聚体界面处引入二硫键来稳定四聚苹果酸脱氢酶。

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摘要

Malate dehydrogenase (MDH) from the moderately thermophilic bacterium Chloroflexus aurantiacus (CaMDH) is a tetrameric enzyme, while MDHs from mesophilic organisms usually are dimers. To investigate the potential contribution of the extra dimer-dimer interface in CaMDH with respect to thermal stability, we have engineered an intersubunit disulfide bridge designed to strengthen dimer-dimer interactions. The resulting mutant (T187C, containing two 187-187 disulfide bridges in the tetramer) showed a 200-fold increase in half-life at 75 degrees C and an increase of 15 deg. C in apparent melting temperature compared to the wild-type. The crystal structure of the mutant (solved at 1.75 A resolution) was essentially identical with that of the wild-type, with the exception of the added inter-dimer disulfide bridge and the loss of an aromatic intra-dimer contact. Remarkably, the mutant and the wild-type had similar temperature optima and activities at their temperature optima, thus providing a clear case of uncoupling of thermal stability and thermoactivity. The results show that tetramerization may contribute to MDH stability to an extent that depends strongly on the number of stabilizing interactions in the dimer-dimer interface.
机译:来自中度嗜热细菌克氏嗜热气单胞菌(CaMDH)的苹果酸脱氢酶(MDH)是四聚酶,而来自嗜温生物的MDH通常是二聚体。为了研究CaMDH中额外的二聚体-二聚体界面对热稳定性的潜在贡献,我们设计了一个亚单位间二硫键,以增强二聚体-二聚体的相互作用。所得的突变体(T187C,在四聚体中包含两个187-187个二硫键)在75℃下的半衰期增加了200倍,在15℃下增加了200倍。与野生型相比,表观熔解温度为℃。突变体的晶体结构(以1.75 A的分辨率解析)与野生型的晶体结构基本相同,除了添加的二聚体间二硫键和失去的芳族二聚体内部接触外。值得注意的是,突变型和野生型具有相似的温度最佳值和在其温度最佳值下的活性,因此提供了热稳定性和热活性不耦合的清楚案例。结果表明,四聚化可能在一定程度上有助于MDH稳定性,该程度在很大程度上取决于二聚体-二聚体界面中稳定相互作用的数量。

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