Molecular dynamics simulations on the Tre1 G protein-coupled receptor: exploring the role of the arginine of the NRY motif in Tre1 structure

被引:9
作者
Pruitt, Margaret M. [1 ]
Lamm, Monica H. [2 ]
Coffman, Clark R. [1 ]
机构
[1] Iowa State Univ, Dept Genet Dev & Cell Biol, Ames, IA 50011 USA
[2] Iowa State Univ, Dept Chem & Biol Engn, Ames, IA 50011 USA
关键词
GPCR; Tre1; Molecular dynamics; Germ cell migration; Salt bridge formation; GERM-CELL MIGRATION; ALPHA(1B)-ADRENERGIC RECEPTOR; IONIC LOCK; BETA(2)-ADRENERGIC RECEPTOR; STRUCTURE PREDICTION; MUTATIONAL ANALYSIS; SECONDARY STRUCTURE; CONSERVED ARGININE; CRYSTAL-STRUCTURE; CHEMOKINE;
D O I
10.1186/1472-6807-13-15
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Background: The arginine of the D/E/NRY motif in Rhodopsin family G protein-coupled receptors (GPCRs) is conserved in 96% of these proteins. In some GPCRs, this arginine in transmembrane 3 can form a salt bridge with an aspartic acid or glutamic acid in transmembrane 6. The Drosophila melanogaster GPCR Trapped in endoderm-1 (Tre1) is required for normal primordial germ cell migration. In a mutant form of the protein, Tre1(sctt), eight amino acids RYILIACH are missing, resulting in a severe disruption of primordial germ cell development. The impact of the loss of these amino acids on Tre1 structure is unknown. Since the missing amino acids in Tre1(sctt) include the arginine that is part of the D/E/NRY motif in Tre1, molecular dynamics simulations were performed to explore the hypothesis that these amino acids are involved in salt bridge formation and help maintain Tre1 structure. Results: Structural predictions of wild type Tre1 (Tre1(+)) and Tre1(sctt) were subjected to over 250 ns of molecular dynamics simulations. The ability of the model systems to form a salt bridge between the arginine of the D/E/NRY motif and an aspartic acid residue in transmembrane 6 was analyzed. The results indicate that a stable salt bridge can form in the Tre1(+) systems and a weak salt bridge or no salt bridge, using an alternative arginine, is likely in the Tre1(sctt) systems. Conclusions: The weak salt bridge or lack of a salt bridge in the Tre1(sctt) systems could be one possible explanation for the disrupted function of Tre1(sctt) in primordial germ cell migration. These results provide a framework for studying the importance of the arginine of the D/E/NRY motif in the structure and function of other GPCRs that are involved in cell migration, such as CXCR4 in the mouse, zebrafish, and chicken.
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页数:14
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