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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Influence of the glycopeptidic moiety of mycobacterial glycopeptidolipids on their lateral organization in phospholipid monolayers
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Influence of the glycopeptidic moiety of mycobacterial glycopeptidolipids on their lateral organization in phospholipid monolayers

机译:分枝杆菌糖肽脂的糖肽部分对其磷脂单层中侧向组织的影响

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摘要

Glycopeptidolipids (GPLs) from the cell wall of opportunistic pathogenic mycobacteria are potential factors of pathogenicity which can interact with biological membranes. GPL suspensions uncouple oxidative phosphorylation of mitochondria and increase membrane permeability of liposomes. Heavily glycosylated GPLs are less active than lightly glycosylated ones. GPL-phospholipid interactions into preformed mixed films at the air-water interface were investigated in order to understand the permeabilization efficiency differences among GPLs. Polarization modulation infrared reflection absorption spectroscopy (PMIRRAS) was used to determine, in situ, the organization of GPL and of 1,2-di(perdeuteropalmitoyl)phosphatidylcholine (DPPC) molecules in mixed films. Compression isotherms of GPL alone or mixed with DPPC in various proportions showed that the less the GPL was glycosylated the higher its miscibility with DPPC. PMIRRAS studies indicated that low miscibility may result from large self-association of GPL molecules in β-sheet structures. Low glycosylated GPL molecules increased disorder of DPPC acyl chains. Based on these results, an explanatory model is proposed for membrane permeabilization. Increase of passive permeability may arise from disruption of phospholipid packing induced by GPL molecules. GPL segregation is proposed as the cause of low activity of GPL with high sugar content, by decreasing the number of GPL molecules interacting with phospholipids.
机译:来自机会致病性分枝杆菌的细胞壁的糖肽脂(GPL)是可能与生物膜相互作用的致病性的潜在因素。 GPL悬浮液可解脱线粒体的氧化磷酸化并增加脂质体的膜通透性。重糖基化的GPL比轻糖基化的GPL活性低。为了了解GPL之间的渗透效率差异,研究了GPL-磷脂在空气-水界面处与预制混合膜的相互作用。偏振调制红外反射吸收光谱法(PMIRRAS)用于原位测定混合膜中的GPL和1,2-二(全氘代棕榈酰基)磷脂酰胆碱(DPPC)分子的组织。单独或与DPPC混合使用的GPL的压缩等温线表明,GPL糖基化程度越低,其与DPPC的混溶性越高。 PMIRRAS研究表明,低互溶性可能是由于β-折叠结构中GPL分子的大量自缔合所致。低糖基化的GPL分子会增加DPPC酰基链的紊乱。基于这些结果,提出了膜透化的解释模型。被动渗透性的增加可能是由GPL分子诱导的磷脂堆积破坏引起的。通过减少与磷脂相互作用的GPL分子的数量,GPL分离被认为是高糖含量的GPL活性低的原因。

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