Water-Tryptophan Interactions: Lone-pair...π or O-H...π? Molecular Dynamics Simulations of β-Galactosidase Suggest that Both Modes Can Co-exist

被引:6
作者
Durec, Matus [1 ,2 ]
Marek, Radek [1 ,3 ]
Kozelka, Jiri [2 ,4 ,5 ,6 ]
机构
[1] Masaryk Univ, CEITEC Cent European Inst Technol, Kamenice 5-A4, Brno 62500, Czech Republic
[2] Masaryk Univ, Fac Sci, Dept Condensed Matter Phys, Kotlarska 2, CS-61137 Brno, Czech Republic
[3] Masaryk Univ, Fac Sci, Natl Ctr Biomol Res, Kamenice 5-A4, Brno 62500, Czech Republic
[4] Univ Antilles, Univ Reunion, Univ Paris Diderot, INSERM,Sorbonne Paris Cite,UMR S1134,Biol Integre, F-75739 Paris, France
[5] INTS, F-75739 Paris, France
[6] Lab Excellence GR Ex, F-75739 Paris, France
关键词
beta-galactosidase; hydrogen bonds; lone-pair interactions; molecular dynamics; pi interactions; PAIR-PI INTERACTIONS; PHYSICAL ORIGIN; FLAVOPROTEINS;
D O I
10.1002/chem.201705364
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In proteins, the indole side chain of tryptophan can interact with water molecules either in-plane, forming hydrogen bonds, or out-of-plane, with the water molecule contacting the aromatic pi face. The latter interaction can be either of the lone pair...pi (lp...pi) type or corresponds to the O-H...pi binding mode, an ambiguity that X-ray structures usually do not resolve. Here, we report molecular dynamics (MD) simulations of a solvated beta-galactosidase monomer, which illustrate how a water molecule located at the p face of an indole side chain of tryptophan can adapt to the position of proximate residues and "select" its binding mode. In one such site, the water molecule is predicted to rapidly oscillate between the O-H...pi and lp...pi binding modes, thus gaining entropic advantage. Our MD simulations provide support for the role of lp...pi interactions in the stabilization of protein structures.
引用
收藏
页码:5849 / 5859
页数:11
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