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血影蛋白结构域温度耦合强制去折叠中的途径转变和热软化

Pathway shifts and thermal softening in temperature-coupled forced unfolding of spectrin domains.

作者信息

Law Richard, Liao George, Harper Sandy, Yang Guoliang, Speicher David W, Discher Dennis E

机构信息

Biophysical Engineering Lab, Institute for Medicine and Engineering, and School of Engineering and Applied Science, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6315, USA.

出版信息

Biophys J. 2003 Nov;85(5):3286-93. doi: 10.1016/S0006-3495(03)74747-X.

Abstract

Pathways of unfolding a protein depend in principle on the perturbation-whether it is temperature, denaturant, or even forced extension. Widely-shared, helical-bundle spectrin repeats are known to melt at temperatures as low as 40-45 degrees C and are also known to unfold via multiple pathways as single molecules in atomic force microscopy. Given the varied roles of spectrin family proteins in cell deformability, we sought to determine the coupled effects of temperature on forced unfolding. Bimodal distributions of unfolding intervals are seen at all temperatures for the four-repeat beta(1-4) spectrin-an alpha-actinin homolog. The major unfolding length corresponds to unfolding of a single repeat, and a minor peak at twice the length corresponds to tandem repeats. Increasing temperature shows fewer tandem events but has no effect on unfolding intervals. As T approaches T(m), however, mean unfolding forces in atomic force microscopy also decrease; and circular dichroism studies demonstrate a nearly proportional decrease of helical content in solution. The results imply a thermal softening of a helical linker between repeats which otherwise propagates a helix-to-coil transition to adjacent repeats. In sum, structural changes with temperature correlate with both single-molecule unfolding forces and shifts in unfolding pathways.

摘要

蛋白质展开的途径原则上取决于扰动因素,无论是温度、变性剂,还是强制伸展。广泛存在的螺旋束血影蛋白重复序列在低至40 - 45摄氏度的温度下就会熔化,并且在原子力显微镜下作为单分子展开时也会通过多种途径展开。鉴于血影蛋白家族蛋白在细胞可变形性中具有多种作用,我们试图确定温度对强制展开的耦合效应。对于四重复β(1 - 4)血影蛋白(一种α - 辅肌动蛋白同源物),在所有温度下都能看到展开间隔的双峰分布。主要的展开长度对应于单个重复序列的展开,而长度为两倍处的较小峰值对应于串联重复序列。温度升高显示串联事件减少,但对展开间隔没有影响。然而,当温度接近熔点(Tm)时,原子力显微镜中的平均展开力也会降低;圆二色性研究表明溶液中螺旋含量几乎成比例下降。结果表明重复序列之间的螺旋连接体发生热软化,否则它会将螺旋到线圈的转变传递给相邻的重复序列。总之,随着温度的结构变化与单分子展开力以及展开途径的转变都相关。

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本文引用的文献

1
Cooperativity in forced unfolding of tandem spectrin repeats.
Biophys J. 2003 Jan;84(1):533-44. doi: 10.1016/S0006-3495(03)74872-3.
3
A simple method for probing the mechanical unfolding pathway of proteins in detail.
Proc Natl Acad Sci U S A. 2002 Sep 17;99(19):12143-8. doi: 10.1073/pnas.192351899. Epub 2002 Sep 6.
4
Pathways and intermediates in forced unfolding of spectrin repeats.
Structure. 2002 Aug;10(8):1085-96. doi: 10.1016/s0969-2126(02)00808-0.
5
A structural model for force regulated integrin binding to fibronectin's RGD-synergy site.
Matrix Biol. 2002 Mar;21(2):139-47. doi: 10.1016/s0945-053x(01)00197-4.
7
Hydrogen-bonding classes in proteins and their contribution to the unfolding reaction.
Protein Sci. 2001 Oct;10(10):2075-82. doi: 10.1110/ps.09201.
8
Dynamic molecular modeling of pathogenic mutations in the spectrin self-association domain.
Blood. 2001 Sep 15;98(6):1645-53. doi: 10.1182/blood.v98.6.1645.
9
Crystal structure of the alpha-actinin rod reveals an extensive torsional twist.
Structure. 2001 Jul 3;9(7):597-604. doi: 10.1016/s0969-2126(01)00619-0.
10
Mechanical unfolding of single filamin A (ABP-280) molecules detected by atomic force microscopy.
FEBS Lett. 2001 Jun 1;498(1):72-5. doi: 10.1016/s0014-5793(01)02497-8.

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