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首页> 外文期刊>Chemistry and Physics of Lipids >Apolipophorin III interaction with phosphatidylglycerol and lipopolysaccharide: A potential mechanism for antimicrobial activity
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Apolipophorin III interaction with phosphatidylglycerol and lipopolysaccharide: A potential mechanism for antimicrobial activity

机译:脂脂素III与磷脂酰甘油和脂多糖的相互作用:抗微生物活性的潜在机制

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Apolipophorin III (apoLp-III) is a model insect apolipoprotein to study structure-function relationships of exchangeable apolipoproteins. The protein associates with lipoproteins to aid in the transport of neutral lipids, and also interacts with the bacterial membrane. To better understand a potential role as an antimicrobial protein, the binding interaction of apoLp-III from Locust migratoria and Galleria mellonella with phosphatidylglycerol and lipopolysaccharides was analyzed. ApoLp-III from either species induced a robust release of calcein from phosphatidylglycerol vesicles, but was ineffective for phosphatidylcholine vesicles with comparable side-chain architecture. Acetylation of L. migratoria apoLp-III lysine residues greatly reduced the calcein release from phosphatidylglycerol vesicles, indicating a critical role of lysine side-chains in phosphatidylglycerol vesicles interaction. Isothermal calorimetry provided K-d values of 0.26 mu M (L. migratoria) and 0.50 mu M (G. mellonella) for binding to dimyristoylphosphatidylglycerol vesicles, which is an order of magnitude stronger compared to zwitterionic vesicles. A strong preference of apoLp-III for dimyristoylphosphatidylglycerol vesicles was also observed with differential scanning calorimetry with a concentration dependent shift in the lipid phase transition temperature. Native PAGE analysis showed that LPS binding was significantly weaker for L. migratoria apoLp-III compared to G. mellonella apoLp-III. This difference was confirmed by fluorescence titration analysis of L. migratoria apoLp-III, which also indicated that acetylation of the apolipoprotein did not affect LPS binding. Taken together, the results indicate that apoLp-III phosphatidylglycerol interaction may follow a detergent model with an important electrostatic binding component. Since lipopolysaccharide binding was not affected by neutralization of apoLp-III lysine-side chains, the binding interaction may be distinctly different from that of phosphatidylglycerol.
机译:Apolipophorin III(APOLP-III)是一种模型昆虫脂蛋白,用于研究可交换载体蛋白的结构功能关系。蛋白质与脂蛋白联系起来有助于运输中性脂质,也与细菌膜相互作用。为了更好地了解作为抗微生物蛋白的潜在作用,分析了蝗虫迁移率和吡啶基甘油和脂多糖的Calleria Mellonella与磷脂酰甘油和脂多糖的结合相互作用。从任何一种种类诱导来自磷脂酰甘油囊泡的Calcein的Apolp-III,但对于具有可比较侧链结构的磷脂酰胆碱囊泡是无效的。 L.Migratoria Apolp-III赖氨酸残基的乙酰化大大降低了磷脂酰甘油囊泡的钙蛋白释放,表明赖氨酸侧链在磷脂酰甘油囊泡相互作用中的关键作用。等温度量热法提供了0.26μm(L.Migratoria)和0.50μm(G. mellonella)的K-D值,用于与Divyristoylphosphatidyl甘油囊泡结合,这与两性离子囊泡相比的数量级较强。在血液相变温度浓度依赖性变化的差分扫描量热法中,还观察到对Dimyristoylphosphatidylgycerol甘油囊泡的强烈偏好。本机页面分析表明,与G. mellonella apolp-III相比,LPS结合对于L.Migratoria Apolp-III显着较弱。通过L. Migratoria Apolp-III的荧光滴定分析证实了这种差异,这也表明载脂蛋白的乙酰化不影响LPS结合。结果,结果表明,APOLP-III磷脂酰甘油相互作用可以跟随具有重要静电结合组分的洗涤剂模型。由于脂多糖结合不受Apolp-III赖氨酸侧链的中和的影响,因此结合相互作用可以与磷脂酰甘油的结合相互作用明显不同。

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