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折叠能量景观与磷酸化:模拟NFAT调节域的构象转换

The folding energy landscape and phosphorylation: modeling the conformational switch of the NFAT regulatory domain.

作者信息

Shen Tongye, Zong Chenghang, Hamelberg Donald, McCammon J Andrew, Wolynes Peter G

机构信息

Department of Chemistry and Biochemistry, Center for Theoretical Biological Physics, La Jolla, California, USA.

出版信息

FASEB J. 2005 Sep;19(11):1389-95. doi: 10.1096/fj.04-3590hyp.

Abstract

An energy landscape approach predicts the conformational changes of the configurations of the regulatory domain of the protein nuclear factor of activated T cells (NFAT) caused by phosphorylation of specific multiple sites. Structurally local effects and secondary structural changes are modeled using all-atom Brownian dynamics to investigate the changes of the backbone torsional distributions upon phosphorylation. For tertiary and global changes, we employ a coarse-grained model to sample ensembles of conformations both with and without phosphorylation. At the secondary structure level, phosphorylation moderately increases the helical propensity and gives a more rigid local backbone conformation. The tertiary effects of phosphorylation caused by the extensive charge modification are more pronounced and collectively change the conformation of the regulatory domain of NFAT from a flexible globular ensemble to a rather rigid helical bundle, blocking access to the nuclear localization sequence. These studies give computational support to one scenario conjectured from experiments.

摘要

一种能量景观方法预测了由特定多个位点磷酸化引起的活化T细胞核因子(NFAT)蛋白质调节域构象的变化。使用全原子布朗动力学对结构局部效应和二级结构变化进行建模,以研究磷酸化后主链扭转分布的变化。对于三级和全局变化,我们采用粗粒度模型对磷酸化和未磷酸化的构象集合进行采样。在二级结构水平上,磷酸化适度增加了螺旋倾向,并赋予局部主链构象更高的刚性。由广泛电荷修饰引起的磷酸化的三级效应更为显著,共同将NFAT调节域的构象从灵活的球状集合转变为相当刚性的螺旋束,从而阻止了对核定位序列的访问。这些研究为从实验中推测出的一种情况提供了计算支持。

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