Molecular dynamics of the asymmetric dimers of EGFR: Simulations on the active and inactive conformations of the kinase domain

被引:12
|
作者
Songtawee, Napat [1 ]
Bevan, David R. [2 ]
Choowongkomon, Kiattawee [1 ,3 ]
机构
[1] Kasetsart Univ, Fac Sci, Dept Biochem, Bangkok 10900, Thailand
[2] Virginia Polytech Inst & State Univ, Dept Biochem, Blacksburg, VA 24061 USA
[3] Kasetsart Univ, Natl Res Univ, Ctr Adv Studies Trop Nat Resources, Bangkok 10900, Thailand
来源
JOURNAL OF MOLECULAR GRAPHICS & MODELLING | 2015年 / 58卷
关键词
EGFR; Kinase domain; Asymmetric dimers; Molecular dynamics; Essential dynamics; Intermolecular interactions; GROWTH-FACTOR RECEPTOR; PARTICLE MESH EWALD; ONCOGENIC MUTATIONS; ACTIVATION; JUXTAMEMBRANE; INHIBITION; MECHANISM; CANCER; EQUILIBRIUM; TRANSITIONS;
D O I
10.1016/j.jmgm.2015.03.002
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Abnormal activation of EGFR is associated with human cancer, and thus it is a key target for inhibition in cancer therapy. There is evidence suggesting that the activation mechanism of EGER is based upon the formation of the asymmetric dimer of the kinase domains. Here, we performed MD simulations on the asymmetric dimer for both active and inactive conformations of EGFR kinase domain to investigate flexibility and intrinsic motions of the proteins. Simulations of the active conformation showed that the formation of the asymmetric dimer changes the dynamics of EGFR kinase domain by suppressing fluctuation of the protein and altering the direction of motion of the protein. In contrast, the asymmetric dimerization of the inactive conformation does not alter the overall fluctuation of the kinase domain and does not initiate destabilizing of the inactive structure. We also investigated the intermolecular interactions in the EGFR asymmetric dimers and found that in the active conformation the interactions are dominated by loop-loop contacts rather than those from the helix-helix interactions. In contrast, helix-helix interaction seemed to be more significant for the inactive kinase structure. This work helps us to better understand the conformational flexibility and dynamics of the EGFR kinase domain, as well as provides information that may be useful to develop newer classes of inhibitors that can block allosteric sites rather than the more traditional catalytic site. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:16 / 29
页数:14
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