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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Mechanism of Uptake of Cationic Photoantimicrobial Phthalocyanine across Bacterial Membranes Revealed by Molecular Dynamics Simulations
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Molecular Mechanism of Uptake of Cationic Photoantimicrobial Phthalocyanine across Bacterial Membranes Revealed by Molecular Dynamics Simulations

机译:分子动力学模拟透析细菌膜的阳离子光学素酞菁摄取的分子机制

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Phthalocyanines are aromatic macrocyclic compounds, which are structurally related to porphyrins. In clinical practice, phthalocyanines are used in fluorescence imaging and photodynamic therapy of cancer and noncancer lesions. Certain forms of the substituted polycationic metallophthalo-cyanines have been previously shown to be active in photodynamic inactivation of both Gram-negative and Grampositive bacteria; one of them is zinc octakis(cholinyl)phthalocyanine (ZnPcChorl(8+)). However, the molecular details of how these compounds translocate across bacterial membranes still remain unclear. In the present work, we have developed a coarse-grained (CG) molecular model of ZnPcChol(8+) within the framework of the popular MARTINI CG force field. The obtained model was used to probe the solvation behavior of phthalocyanine molecules, which agreed with experimental results. Subsequently, it was used to investigate the molecular details of interactions between phthalocyanines and membranes of various compositions. The results demonstrate that ZnPcChol(8+) has high affinity to both the inner and the outer model membranes of Gram-negative bacteria, although this species does not show noticeable affinity to the 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphatidylcholine membrane. Furthermore, we found out that the process of ZnPcChol(8+) penetration toward the center of the outer bacterial membrane is energetically favorable and leads to its overall disturbance and formation of the aqueous pore. Such intramembrane localization of ZnPcChol(8+) suggests their twofold cytotoxic effect on bacterial cells: (1) via induction of lipid peroxidation by enhanced production of reactive oxygen species (i.e., photodynamic toxicity); (2) via rendering the bacterial membrane more permeable for additional Pc molecules as well as other compounds. We also found that the kinetics of penetration depends on the presence of phospholipid defects in the lipopolysaccharide leaflet of the outer membrane and the type of counterions, which stabilize it. Thus, the results of our simulations provide a detailed molecular view of ZnPcChol(8+) "self-promoted uptake", the pathway previously proposed for some small molecules crossing the outer bacterial membrane.
机译:酞菁是芳族大环化合物,其与卟啉在结构上。在临床实践中,酞菁用于荧光显像和癌症和非癌症病变的光动力治疗。先前已经显示出某些形式的取代的聚合金属氰基 - 氰基对革兰氏阴性细菌的光动力灭活是有效的;其中一个是锌octakis(胆碱基)酞菁(Znpcchorl(8+))。然而,这些化合物如何穿过细菌膜的分子细节仍然不清楚。在目前的工作中,我们在流行的马蒂尼芯片CG力场的框架内开发出一种粗粒(CG)ZnPCCHOL(8+)的分子模型。所获得的模型用于探测酞菁分子的溶剂化行为,其同意实验结果。随后,它用于研究各种组合物的酞菁和膜之间的相互作用的分子细节。结果表明,ZnPCCHOL(8+)对革兰氏阴性细菌的内外模型膜具有高亲和力,尽管该物种未显示出对1-palmItoyl-2-Oleyoyl-sn-glycero-3的显着亲和力 - 磷脂酰胆碱膜。此外,我们发现Znpcchol(8+)朝向外细菌膜的中心渗透的过程能量有利,并导致其整体干扰和形成含水孔。这种ZnPCCHOL(8+)的肠内定位表明它们对细菌细胞的双重细胞毒性作用:(1)通过增强反应性氧(I.,光动力毒性)的产生来诱导脂质过氧化; (2)通过使细菌膜更渗透额外的PC分子以及其他化合物。我们还发现,渗透动力学取决于外膜的脂多糖叶片中的磷脂缺陷的存在和稳定抗衡离子的抗衡离子。因此,我们的模拟结果提供了ZnPCCHOL(8+)“自我促进摄取”的详细分子视图,该途径前面提出了一种穿过外部细菌膜的一些小分子。

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