变构调节
转移RNA
氨酰tRNA合成酶
熵(时间箭头)
氨基酰化
遗传密码
变构酶
高斯网络模型
计算生物学
高斯分布
生物
化学
酶
遗传学
物理
热力学
生物化学
计算化学
核糖核酸
基因
作者
Zhongjie Han,Xiaoli Wang,Zhixiang Wu,Chunhua Li
标识
DOI:10.1021/acs.jpclett.3c00366
摘要
We propose an improved transfer entropy approach called the dynamic version of the force constant fitted Gaussian network model based on molecular dynamics ensemble (dfcfGNMMD) to explore the allosteric mechanism of human mitochondrial phenylalanyl-tRNA synthetase (hmPheRS), one of the aminoacyl-tRNA synthetases that play a crucial role in translation of the genetic code. The dfcfGNMMD method can provide reliable estimates of the transfer entropy and give new insights into the role of the anticodon binding domain in driving the catalytic domain in aminoacylation activity and into the effects of tRNA binding and residue mutation on the enzyme activity, revealing the causal mechanism of the allosteric communication in hmPheRS. In addition, we incorporate the residue dynamic and co-evolutionary information to further investigate the key residues in hmPheRS allostery. This study sheds light on the mechanisms of hmPheRS allostery and can provide important information for related drug design.
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