热变性核糖核酸酶A的链状构象和细胞染色剂的溶液x射线散射

Yoshihisa Hagihara , Masaru Hoshino , Daizo Hamada , Mikio Kataoka , Yuji Goto
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引用次数: 29

摘要

背景:虽然热变性蛋白质的表征对于理解蛋白质折叠的热力学机制至关重要,但其结构特征仍然不清楚且存在争议。为了解决这一问题,我们利用溶液x射线散射研究了牛核糖核酸酶A (RNase A)和马铁细胞色素c (cytochrome c)热变性态的大小和形状。结果:RNase A具有4个二硫键,而细胞色素c具有共价结合的血红素基团,没有二硫键。Guinier图显示,热变性RNase A相对致密,而热变性细胞色素c则膨胀。另一方面,两种蛋白的克拉特基图相似,表明热变性蛋白呈链状无序构象。RNase A和细胞色素c在不同温度下的x射线散射证实,它们从球状原生态到链状扩展构象的热转变可以用两态转变很好地近似。结论:这些结果表明,根据溶液x射线散射的标准,热变性RNase A和细胞色素c基本展开,尽管热变性RNase A由于二硫键的存在而保持致密。结果还证实了热变性与二级和三级结构的破坏是协同发生的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chain-like conformation of heat-denatured ribonuclease A and cytochromec as evidenced by solution X-ray scattering

Background: Although the characterization of heat-denatured proteins is essential for understanding the thermodynamic mechanism of protein folding, their structural features are still unclear and controversial. In order to address this problem, we studied the size and shape of the heat-denatured states of bovine ribonuclease A (RNase A) and horse ferricytochrome c (cytochrome c) by solution X-ray scattering.

Results: RNase A has four disulfide bonds, whereas cytochrome c, with a covalently bound heme group, has no disulfide bond. Guinier plots show that the heat-denatured RNase A is relatively compact, but the heat-denatured cytochrome c is expanded. On the other hand, the Kratky plots of the two proteins are similar, indicating that the heat-denatured proteins assume a chain-like disordered conformation. The X-ray scattering of RNase A and cytochrome c at various temperatures confirmed that their thermal transitions from a globular native state to a chain-like extended conformation can be approximated well by a two-state transition.

Conclusions: These results indicate that the heat-denatured RNase A and cytochrome c are substantially unfolded according to the criteria of solution X-ray scattering, although the heat-denatured RNase A remains compact because of the presence of the disulfide bonds. The results also confirm that the thermal denaturation occurs cooperatively with the breakdown of secondary and tertiary structure.

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