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Effects of Posttranslational Modifications on the Structure and Dynamics of Histone H3 N-Terminal Peptide

机译:翻译后修饰对组蛋白H3 N末端肽的结构和动力学的影响

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摘要

The highly conserved signature N-terminal peptide of histone protein H3 plays crucial roles in gene expression controls. We investigated the conformational changes of the peptide caused by lysine dimethylation and acetylation of the histone H3 N-terminal tail by molecular dynamics and replica-exchange molecular dynamics simulations. Our results suggest that the most populated structures of the modified H3 N-terminal peptides are very similar to those of the wild-type peptide. Thus, the modifications introduce marginal changes to the most favorable conformations of the peptides. However, the modifications have significant effects on the stabilities of the most populated states that depend on the modifications. Whereas dimethylation of lysine 4 or lysine 9 alone tends to stabilize the most populated states, double dimethylation and acetylation of both lysine 4 and lysine 9 reduce both the helical conformation and the stability of the most populated states significantly. The calculated melting temperatures showed that the doubly acetylated peptide has the lowest melting temperature (Tm = 324 K), which is notably lower than the melting temperatures of the other four peptides (Tm ≈ 346–350 K). In light of the existing experimental evidence, we propose that the changes in the dynamics of the modified variants contribute to their different functional roles.
机译:组蛋白H3的高度保守的签名N末端肽在基因表达控制中起关键作用。我们通过分子动力学和复制-交换分子动力学模拟研究了由赖氨酸二甲基化和组蛋白H3 N-末端尾部乙酰化引起的肽的构象变化。我们的结果表明,修饰的H3 N末端肽的人口最多的结构与野生型肽非常相似。因此,修饰将边缘改变引入了肽的最有利构象。但是,修改对依赖于修改的人口最多的州的稳定性具有重大影响。赖氨酸4或赖氨酸9单独进行二甲基化会趋于稳定大多数种群的状态,而赖氨酸4和赖氨酸9的双重二甲基化和乙酰化会显着降低螺旋构象和大多数种群的稳定性。计算得出的解链温度表明,双乙酰化肽段的解链温度最低(Tm = 324 K),明显低于其他四种肽的解链温度(Tm≈346–350 K)。根据现有的实验证据,我们建议修改后的变体的动力学变化有助于其不同的功能角色。

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