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QM/MM 自由能模拟的 RING E3-E2∼NEDD8-靶标复合物中泛素样 NEDD8 转移的催化机制。

Catalytic Mechanism of the Ubiquitin-Like NEDD8 Transfer in RING E3-E2∼NEDD8-Target Complex from QM/MM Free Energy Simulations.

机构信息

Department of Biochemistry and Cellular and Molecular Biology, University of Tennessee , Knoxville, Tennessee 37996, United States.

Chemistry and Material Science Faculty, Shandong Agricultural University , Tai'an 271018, Shandong, Peoples Republic of China.

出版信息

J Chem Inf Model. 2018 Feb 26;58(2):422-429. doi: 10.1021/acs.jcim.7b00662. Epub 2018 Feb 5.

Abstract

Ubiquitin-like (UBL) protein modifications play a key role in regulating protein function. In contrast to the ubiquitin (UB) and small ubiquitin-like modifier (SUMO) which are ligated to a massive segment of proteome, the UBL NEDD8 is highly selective for modifying a lysine residue on closely related cullin proteins (CULs). In this study, the X-ray structure of a trapped E3-E2∼NEDD8-target intermediate (RBX1-UBC1∼NEDD8-CUL1-DCN1) is used to build computer models, and combined quantum mechanics/molecular mechanics (QM/MM) molecular dynamics (MD) and free energy (potential of mean force) simulations are performed to investigate the catalytic mechanism of the NEDD8 transfer from E2 to the lysine residue (K720) on the substrate in the complex. The role of the active site residues is examined. The simulation results show that either E117 or D143 from E2 may be able to work as a general base catalyst to deprotonate K720 on the substrate, and K720 can then perform the nucleophilic attack on the thioester bond linking E2 and NEDD8. It is also shown that the formation of a new isopeptide bond between K720 and NEDD8 and the breaking of the thioester bond are concerted based on the computer simulations. Furthermore, the results suggest that K720 may act as a general acid catalyst to protonate the leaving group of C111 from E2. The free energy barrier for nucleophilic attack is estimated to be 14-15 kcal/mol based on the free energy simulations.

摘要

泛素样 (UBL) 蛋白修饰在调节蛋白功能方面发挥着关键作用。与泛素 (UB) 和小泛素样修饰物 (SUMO) 不同,它们连接到大量的蛋白质组上,UBL NEDD8 高度选择性地修饰紧密相关的 Cullin 蛋白 (CULs) 上的赖氨酸残基。在这项研究中,使用捕获的 E3-E2∼NEDD8-靶标中间物 (RBX1-UBC1∼NEDD8-CUL1-DCN1) 的 X 射线结构构建计算机模型,并结合量子力学/分子力学 (QM/MM) 分子动力学 (MD) 和自由能 (平均力势能) 模拟来研究 NEDD8 从 E2 转移到复合物中底物上赖氨酸残基 (K720) 的催化机制。检查了活性位点残基的作用。模拟结果表明,E2 中的 E117 或 D143 都可能作为一个广义碱催化剂,使底物上的 K720 去质子化,然后 K720 对连接 E2 和 NEDD8 的硫酯键进行亲核攻击。还表明,基于计算机模拟,K720 与 NEDD8 之间形成新的异肽键,以及硫酯键的断裂是协同的。此外,结果表明 K720 可能作为广义酸催化剂,使 E2 中的 C111 的离去基团质子化。根据自由能模拟,亲核攻击的自由能势垒估计为 14-15 kcal/mol。

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