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核仁磷酸蛋白 NPM1 结构域的化学和热稳定性中的相互作用的作用。

Role of mutual interactions in the chemical and thermal stability of nucleophosmin NPM1 domains.

机构信息

Institute of Biostructures and Bioimaging, CNR via Mezzocannone 16, I-80134 Napoli, Italy.

出版信息

Biochem Biophys Res Commun. 2013 Jan 11;430(2):523-8. doi: 10.1016/j.bbrc.2012.12.002. Epub 2012 Dec 8.

Abstract

Nucleophosmin (NPM1) is a key factor involved in fundamental biological processes. Mutations involving the NPM1 gene are the most frequent molecular alterations in acute myeloid leukemia. Here we report a biophysical characterization of NPM1 and of its domains in order to gain insights into the role that inter-domain interactions plays in the protein stabilization. Thermal denaturation analyses show that the N-terminal domain is endowed with an exceptional thermal stability, as it does not unfold in the investigated temperature range (20-105°C). This finding is corroborated by chemical denaturation experiments showing that this domain is not significantly affected by the addition of 8M urea. These results are consistent with the chaperone function of NPM1. In line with literature data, the other folded domain of the NPM1, a 3-helix bundle domain located at the C-terminus, shows a lower stability. Interestingly, the chemical and thermal stability of this latter domain, which embeds natural mutations related to acute myeloid leukemia, is influenced by the presence of other regions of the protein. Small but significant stabilizations of the C-terminal 3-helix bundle are provided by the adjacent unfolded fragment as well as by the rest of the protein.

摘要

核仁磷酸蛋白(NPM1)是参与基本生物过程的关键因素。涉及 NPM1 基因的突变是急性髓系白血病中最常见的分子改变。在这里,我们报告了 NPM1 及其结构域的生物物理特性,以便深入了解结构域间相互作用在蛋白质稳定中的作用。热变性分析表明,N 端结构域具有异常的热稳定性,因为它在研究的温度范围内(20-105°C)不会展开。这一发现得到了化学变性实验的证实,表明该结构域不受添加 8M 尿素的显著影响。这些结果与 NPM1 的伴侣功能一致。与文献数据一致,NPM1 的另一个折叠结构域,即位于 C 端的 3 螺旋束结构域,稳定性较低。有趣的是,该结构域的化学和热稳定性,其嵌入与急性髓系白血病相关的天然突变,受蛋白质其他区域的影响。相邻的未折叠片段以及其余部分的蛋白质对 C 端 3 螺旋束的稳定性产生了微小但显著的稳定作用。

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