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核心脂质结构是低密度脂蛋白氧化抗性的主要决定因素。

Core lipid structure is a major determinant of the oxidative resistance of low density lipoprotein.

作者信息

Schuster B, Prassl R, Nigon F, Chapman M J, Laggner P

机构信息

Institut für Biophysik und Röntgenstrukturforschung, Osterreichische Akademie der Wissenschaften, Graz, Austria.

出版信息

Proc Natl Acad Sci U S A. 1995 Mar 28;92(7):2509-13. doi: 10.1073/pnas.92.7.2509.

Abstract

The influence of thermally induced changes in the lipid core structure on the oxidative resistance of discrete, homogeneous low density lipoprotein (LDL) subspecies (d, 1.0297-1.0327 and 1.0327-1.0358 g/ml) has been evaluated. The thermotropic transition of the LDL lipid core at temperatures between 15 degrees C and 37 degrees C, determined by differential scanning calorimetry, exerted significant effects on the kinetics of copper-mediated LDL oxidation expressed in terms of intrinsic antioxidant efficiency (lag time) and diene production rate. Thus, the temperature coefficients of oxidative resistance and maximum oxidation rate showed break points at the core transition temperature. Temperature-induced changes in copper binding were excluded as the molecular basis of such effects, as the saturation of LDL with copper was identical below and above the core transition. At temperatures below the transition, the elevation in lag time indicated a greater resistance to oxidation, reflecting a higher degree of antioxidant protection. This effect can be explained by higher motional constraints and local antioxidant concentrations, the latter resulting from the freezing out of antioxidants from crystalline domains of cholesteryl esters and triglycerides. Below the transition temperature, the conjugated diene production rate was decreased, a finding that correlated positively with the average size of the cooperative units of neutral lipids estimated from the calorimetric transition width. The reduced accessibility and structural hindrance in the cluster organization of the core lipids therefore inhibits peroxidation. Our findings provide evidence for a distinct effect of the dynamic state of the core lipids on the oxidative susceptibility of LDL and are therefore relevant to the atherogenicity of these cholesterol-rich particles.

摘要

已评估热诱导的脂质核心结构变化对离散、均匀的低密度脂蛋白(LDL)亚组分(密度为1.0297 - 1.0327和1.0327 - 1.0358 g/ml)抗氧化性的影响。通过差示扫描量热法测定,LDL脂质核心在15℃至37℃之间的热致转变对以固有抗氧化效率(滞后时间)和二烯生成速率表示的铜介导的LDL氧化动力学产生了显著影响。因此,抗氧化性和最大氧化速率的温度系数在核心转变温度处出现断点。由于在核心转变温度以下和以上LDL与铜的饱和度相同,因此排除了温度诱导的铜结合变化作为这种影响的分子基础。在转变温度以下,滞后时间的延长表明对氧化的抵抗力增强,反映出更高程度的抗氧化保护。这种效应可以通过更高的运动限制和局部抗氧化剂浓度来解释,后者是由于抗氧化剂从胆固醇酯和甘油三酯的结晶域中析出所致。在转变温度以下,共轭二烯生成速率降低,这一发现与根据量热转变宽度估算的中性脂质协同单元的平均大小呈正相关。因此,核心脂质簇组织中可及性降低和结构阻碍抑制了过氧化作用。我们的研究结果为核心脂质的动态状态对LDL氧化敏感性的独特影响提供了证据,因此与这些富含胆固醇颗粒的动脉粥样硬化性相关。

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