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Thermodynamics of staphylococcal nuclease denaturation. II. The A-state.

机译:葡萄球菌核酸酶变性的热力学。二。 A状态。

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摘要

Staphylococcal nuclease, at low pH and in the presence of high salt concentrations, has previously been proposed to exist in a partially folded or molten globule form called the "A-state" (Fink et al., 1993, Protein Sci 2:1155-1160). We have found that the A-state of nuclease at pH 2.1 in the presence of moderate to high salt concentrations and at low temperature exists in a substantially folded form structurally more similar to a native state. The A-state has the far-UV circular dichroism spectra characteristic of the native protein, which indicates that it has a large degree of secondary structure. Upon heating, the A-state denatures with a sigmoidal change in far-UV ellipticity and an observable peak in a differential scanning calorimeter trace, indicating that it is thermodynamically distinct from the denatured state. Three different mutations in a residue normally buried in the protein's core stabilize or destabilize the A-state in the same way as they affect the denaturation of the native state. The A-state must, therefore, contain at least some tertiary packing of side chains. Unlike the native state, which shows cold denaturation at low temperatures, the A-state is most stable at temperatures below 0 degrees C.
机译:以前有人提出,在低pH和高盐浓度下,葡萄球菌核酸酶以部分折叠或熔融的小球形式(称为“ A态”)存在(Fink等,1993,Protein Sci 2:1155- 1160)。我们已经发现,在pH为2.1的情况下,在中等至高盐浓度和低温下,核酸酶的A状态以基本上折叠的形式存在,其结构与天然状态更相似。 A-态具有天然蛋白质的远紫外圆二色性光谱特征,表明其具有高度的二级结构。加热后,A-态变性在远紫外椭圆率中呈S形变化,并且在差示扫描量热仪迹线中可观察到峰,表明它在热力学上不同于变性态。通常掩埋在蛋白质核心中的残基中的三个不同突变,会以与影响天然状态变性相同的方式稳定或破坏A状态。因此,A态必须至少包含一些侧链的三级堆积。与在低温下会显示冷变性的原始状态不同,A状态在低于0摄氏度的温度下最稳定。

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