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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Molecular basis of the inhibition of gentamicin nephrotoxicity by daptomycin; an infrared spectroscopic investigation
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Molecular basis of the inhibition of gentamicin nephrotoxicity by daptomycin; an infrared spectroscopic investigation

机译:达托霉素抑制庆大霉素肾毒性的分子基础;红外光谱研究

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摘要

The lipopeptide daptomycin has been reported to reduce in vivo the nephrotoxicity of aminoglycoside antibiotics (Wood et al. (1989) Antimicrob. Agents Chemother. 33, 1280–1285; Beauchamp et al. (1990) Antimicrob. Agents Chemother. 34, 139–147). A recent dialysis study confirmed the existence of an electrostatic interaction between daptomycin and tobramycin (Couture et al. (1994) Antimicrob. Agents Chemother. 38, 742–749). The interaction of gentamicin with daptomycin and phosphatidylinositol (PI) dispersions was investigated by FTIR spectroscopy. We found no evidence of a direct interaction involving the neutralization of the aspartate groups of daptomycin by gentamicin and the amide I band of daptomycin did not reveal significant conformational changes of its peptidic moiety. On the other hand, daptomycin readily inserts within bilayers of PI, dimyristoylphosphatidylglycerol or dipalmitoyl-phosphatidylcholine, as judged from its influence on the fluidity of these bilayers. The incorporation of daptomycin into PI bilayers has no significant effect on the lipopeptide amide I band. Gentamicin also binds to PI bilayers and the associated modifications of the lipid bands are consistent with a tightening of the lipid network resulting from head group neutralization by gentamicin. The affinity of the aminoglycoside for PI is slightly increased in the presence of daptomycin, in agreement with the results of the dialysis study mentioned above. The lipid features indicate that its head group is still affected by gentamicin charges, but the thermotropic behavior of the hydrophobic portion becomes similar to that of the pure lipid. It is proposed that the contribution of daptomycin to the membrane charge density and its effect on the lipid packing both combine to counteract the inhibition of phospholipase activity due to aminoglycosides. Further work will attempt to determine how the peptide rings and gentamicin molecules are organized at the bilayer surface, how specific these interactions are and to confirm the influence of daptomycin on the phospholipid catabolism.
机译:据报道,脂肽达托霉素可降低体内氨基糖苷类抗生素的肾毒性(Wood等(1989)Antimicrob.Agents Chemother.33,1280–1285; Beauchamp等(1990)Antimicrob.Agents Chemother.34,139-139)。 147)。最近的一项透析研究证实达托霉素和妥布霉素之间存在静电相互作用(Couture等(1994)Antimicrob.Agents Chemother。38,742–749)。 FTIR光谱研究了庆大霉素与达托霉素和磷脂酰肌醇(PI)分散液的相互作用。我们没有发现直接的相互作用涉及庆大霉素对达托霉素的天冬氨酸基团的中和作用的证据,并且达托霉素的酰胺I谱带未显示其肽部分的显着构象变化。另一方面,达托霉素容易插入到PI,二肉豆蔻酰基磷脂酰甘油或二棕榈酰磷脂酰胆碱的双层中,从其对这些双层的流动性的影响来判断。将达托霉素掺入PI双层中对脂肽酰胺I条带没有显着影响。庆大霉素还与PI双层结合,脂质带的相关修饰与庆大霉素中和头基所致的脂质网络变紧一致。在达托霉素的存在下,氨基糖苷对PI的亲和力略有增加,与上述透析研究的结果一致。脂质特征表明其头部仍受庆大霉素电荷的影响,但疏水部分的热致行为变得与纯脂质相似。提出达托霉素对膜电荷密度的贡献及其对脂质堆积的作用两者共同抵消了氨基糖苷类对磷脂酶活性的抑制。进一步的工作将试图确定肽环和庆大霉素分子在双层表面上的组织方式,这些相互作用的特异性以及确认达托霉素对磷脂分解代谢的影响。

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