Exploring 3D structure of human gonadotropin hormone receptor at antagonist state using homology modeling, molecular dynamic simulation, and cross-docking studies

被引:0
作者
Amirhossein Sakhteman
Minasadat Khoddami
Manica Negahdaripour
Arash Mehdizadeh
Mohsen Tatar
Younes Ghasemi
机构
[1] Shiraz University of Medical Sciences,Department of Medicinal Chemistry, School of Pharmacy
[2] Shiraz University of Medical Sciences,Medicinal Chemistry and Natural Products Research Center
[3] Shahrekord University of Medical Sciences,Department of Biotechnology, School of Pharmacy
[4] Shiraz University of Medical Sciences,Pharmaceutical Sciences Research Center, Faculty of Pharmacy
[5] Shiraz University of Medical Sciences,undefined
来源
Journal of Molecular Modeling | 2016年 / 22卷
关键词
Cross-docking simulation; G-protein coupled receptors; Human gonadotropin receptor; Molecular dynamic simulation;
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摘要
Human gonadotropin hormone receptor, a G-protein coupled receptor, is the target of many medications used in fertility disorders. Obtaining more structural information about the receptor could be useful in many studies related to drug design. In this study, the structure of human gonadotropin receptor was subjected to homology modeling studies and molecular dynamic simulation within a DPPC lipid bilayer for 100 ns. Several frames were thereafter extracted from simulation trajectories representing the receptor at different states. In order to find a proper model of the receptor at the antagonist state, all frames were subjected to cross-docking studies of some antagonists with known experimental values (Ki). Frame 194 revealed a reasonable correlation between docking calculated energy scores and experimental activity values (|r| = 0.91). The obtained correlation was validated by means of SSLR and showed the presence of no chance correlation for the obtained model. Different structural features reported for the receptor, such as two disulfide bridges and ionic lock between GLU90 and LYS 121 were also investigated in the final model.
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[1]  
Ulloa-Aguirre A(2000)Biochemical and functional aspects of gonadotrophin-releasing hormone and gonadotrophins Reprod BioMed Online 1 48-62
[2]  
Timossi C(2013)Characterization of the gonadotropin releasing hormone receptor (GnRHR) expression and activity in the female mouse ovary Endocrinology 154 3877-3887
[3]  
Torrealday S(1997)Molecular mechanisms of ligand interaction with the gonadotropin-releasing hormone receptor Endocr Rev 18 180-205
[4]  
Lalioti MD(2008)Gonadotropin-releasing hormone analog structural determinants of selectivity for inhibition of cell growth: support for the concept of ligand-induced selective signaling Mol Endocrinol 22 1711-1722
[5]  
Guzeloglu-Kayisli O(1994)Gonadotrophin-releasing hormone agonists Drugs 48 41-58
[6]  
Seli E(2015)Receptors for luteinizing hormone-releasing hormone (GnRH) as therapeutic targets in triple negative breast cancers (TNBC) Target Oncol 10 365-373
[7]  
Sealfon SC(2003)Type II gonadotrophin-releasing hormone (GnRH-II) in reproductive biology Reproduction 126 271-278
[8]  
Weinstein H(2004)Gonadotropin-releasing hormone receptors Endocr Rev 25 235-275
[9]  
Millar RP(2008)Diversity of actions of GnRHs mediated by ligand-induced selective signaling Front Neuroendocrinol 29 17-35
[10]  
López de Maturana R(2008)Modeling and molecular dynamics simulation of the human gonadotropin-releasing hormone receptor in a lipid bilayer J Phys Chem B 112 10704-10713