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冷变性和未折叠蛋白质温度诱导坍塌的单分子光谱学。

Single-molecule spectroscopy of cold denaturation and the temperature-induced collapse of unfolded proteins.

机构信息

Department of Biochemistry, University of Zurich , Winterthurerstrasse 190, 8057 Zurich, Switzerland.

出版信息

J Am Chem Soc. 2013 Sep 25;135(38):14040-3. doi: 10.1021/ja407009w. Epub 2013 Sep 11.

Abstract

Recent Förster resonance energy transfer (FRET) experiments show that heat-unfolded states of proteins become more compact with increasing temperature. At the same time, NMR results indicate that cold-denatured proteins are more expanded than heat-denatured proteins. To clarify the connection between these observations, we investigated the unfolded state of yeast frataxin, whose cold denaturation occurs at temperatures above 273 K, with single-molecule FRET. This method allows the unfolded state dimensions to be probed not only in the cold- and heat-denatured range but also in between, i.e., in the presence of folded protein, and can thus be used to link the two regimes directly. The results show a continuous compaction of unfolded frataxin from 274 to 320 K, with a slight re-expansion at higher temperatures. Cold- and heat-denatured states are thus essentially two sides of the same coin, and their behavior can be understood within the framework of the overall temperature dependence of the unfolded state dimensions.

摘要

最近的Förster 共振能量转移(FRET)实验表明,随着温度的升高,蛋白质的热展开状态变得更加紧凑。与此同时,NMR 结果表明,冷变性蛋白质比热变性蛋白质更加展开。为了澄清这些观察结果之间的联系,我们使用单分子 FRET 研究了酵母 frataxin 的展开状态,其冷变性发生在 273 K 以上。这种方法不仅可以在冷变性和热变性范围内探测展开状态的尺寸,还可以在两者之间探测,即在存在折叠蛋白质的情况下,因此可以直接将两个状态联系起来。结果表明,frataxin 从 274 到 320 K 的展开状态不断变紧凑,在较高温度下略有扩展。因此,冷变性和热变性状态本质上是同一枚硬币的两面,它们的行为可以在展开状态尺寸的整体温度依赖性框架内得到理解。

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