Division of Theoretical Chemistry, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden.
LINXS-Lund Institute of Advanced Neutron and X-ray Science, Scheelevägen 19, SE-223 70 Lund, Sweden.
Int J Mol Sci. 2021 Oct 14;22(20):11058. doi: 10.3390/ijms222011058.
Intrinsically disordered proteins are involved in many biological processes such as signaling, regulation, and recognition. A common strategy to regulate their function is through phosphorylation, as it can induce changes in conformation, dynamics, and interactions with binding partners. Although phosphorylated intrinsically disordered proteins have received increased attention in recent years, a full understanding of the conformational and structural implications of phosphorylation has not yet been achieved. Here, we present all-atom molecular dynamics simulations of five disordered peptides originated from tau, statherin, and β-casein, in both phosphorylated and non-phosphorylated state, to compare changes in global dimensions and structural elements, in an attempt to gain more insight into the controlling factors. The changes are in qualitative agreement with experimental data, and we observe that the net charge is not enough to predict the impact of phosphorylation on the global dimensions. Instead, the distribution of phosphorylated and positively charged residues throughout the sequence has great impact due to the formation of salt bridges. In statherin, a preference for arginine-phosphoserine interaction over arginine-tyrosine accounts for a global expansion, despite a local contraction of the phosphorylated region, which implies that also non-charged residues can influence the effect of phosphorylation.
无规蛋白质参与许多生物学过程,如信号转导、调控和识别。调控其功能的一种常见策略是通过磷酸化,因为磷酸化可以诱导构象、动力学和与结合伴侣相互作用的变化。尽管近年来磷酸化的无规蛋白质受到了越来越多的关注,但对磷酸化的构象和结构影响还没有完全了解。在这里,我们对来自 tau、牙本质基质蛋白和 β-酪蛋白的五个无规肽进行了全原子分子动力学模拟,分别处于磷酸化和非磷酸化状态,以比较全局尺寸和结构元素的变化,试图更深入地了解控制因素。这些变化与实验数据定性一致,我们观察到净电荷不足以预测磷酸化对全局尺寸的影响。相反,由于形成盐桥,磷酸化和带正电荷残基在整个序列中的分布对全局尺寸有很大影响。在牙本质基质蛋白中,尽管磷酸化区域局部收缩,但由于精氨酸-磷酸丝氨酸相互作用优先于精氨酸-酪氨酸相互作用,导致整体扩张,这意味着非电荷残基也可以影响磷酸化的效果。