The Mechanism of Antimicrobial Small-Cationic Peptides from Coarse-Grained Simulations

被引:5
作者
Frigini, Ezequiel N. [1 ,2 ]
Porasso, Rodolfo D. [3 ]
Beke-Somfai, Tamas [4 ]
Cascales, Jose Javier Lopez [5 ]
Enriz, Ricardo D. [1 ]
Pantano, Sergio [2 ]
机构
[1] Univ Nacl San Luis, Fac Quim Bioquim & Farm, Inst Multidisciplinario Invest Biol IMIBIO SL, RA-5700 San Luis, Argentina
[2] Inst Pasteur Montevideo, Biomol Simulat Grp, Montevideo 11400, Uruguay
[3] Univ Nacl San Luis, Fac Ciencias Fis Matemat & Nat, CONICET, IMASL, RA-5700 San Luis, Argentina
[4] Inst Mat & Environm Chem, Res Ctr Nat Sci, H-1117 Budapest, Hungary
[5] Univ Politecn Cartagena, Grp Bioinformat & Macromol BioMac, Murcia 30203, Spain
关键词
MOLECULAR-DYNAMICS SIMULATIONS; PARTICLE MESH EWALD; SMALL-ANGLE NEUTRON; AQUEOUS SOLVATION; FORCE-FIELD; MEMBRANES; BILAYERS; MODEL; INSERTION; SIRAH;
D O I
10.1021/acs.jcim.3c01348
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Antimicrobial cationic peptides (AMPs) are excellent candidates for use as therapeutic antimicrobial agents. Among them, short peptides possessing sequences of 9-11 amino acids have some advantages over long-sequence peptides. However, one of the main limitations of short peptides is that their mechanism of action at the molecular level is not well-known. In this article, we report a model based on multiscale molecular dynamics simulations of short peptides interacting with vesicles containing palmitoyl-oleoyl-phosphatidylglycerol (POPG)/palmitoyl-oleoyl-phosphatidylethanolamine (POPE). Simulations using this approach have allowed us to understand the different behaviors of peptides with antimicrobial activity with respect to those that do not produce this effect. We found remarkable agreement with a series of experimental results directly supporting our model. Moreover, these results allow us to understand the mechanism of action at the molecular level of these short peptides. Our simulations suggest that mechanical inhomogeneities appear in the membrane, promoting membrane rupture when a threshold concentration of peptides adsorbed on the membrane is achieved. These results explain the high structural demand for these peptides to maintain a delicate balance between the affinity for the bilayer surface, a low peptide-peptide repulsion (in order to reach the threshold concentration), and an acceptable tendency to penetrate into the bilayer. This mechanism is different from those proposed for peptides with long amino acid sequences. Such information is very useful from the medicinal chemistry point of view for the design of new small antimicrobial peptides.
引用
收藏
页码:6877 / 6889
页数:13
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