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化学修饰对人血浆低密度脂蛋白及载脂蛋白免疫化学和光学性质影响的比较研究

A comparaive study of the effects of chemical modification on the immunochemical and optical properties of human plasma low-density lipoprotein(s) and apoproteins.

作者信息

Gotto A M, Levy R I, Lux S E, Birnbaumer M E, Fredrickson D S

出版信息

Biochem J. 1973 Jun;133(2):369-82. doi: 10.1042/bj1330369.

Abstract
  1. The structure of human plasma low-density lipoprotein(s) [LD lipoprotein(s)] was investigated by several immunological and optical techniques. The effects of delipidation and of chemical modification by 3-carboxypropionylation, acetylation, diazotization and amidination were examined. A sensitive double-antibody radioimmunoassay for human LD lipoproteins is presented and is used to assess the extent of immunochemical modification. A computer best-fit analysis is used to analyse circular-dichorism (c.d.) spectra. These methods permit comparisons of the relative effects of chemical modification and delipidation of LD lipoprotein under similar experimental conditions. 2. 3-Carboxypropionylation, acetylation or diazotization produces qualitative and quantitative changes in the immunochemical properties of LD lipoprotein. Amidination causes minor changes detected by radioimmunoassay but not by double-diffusion experiments. In general, the order of effectiveness in displacing (125)I-labelled LD lipoprotein is amidinated>diazo or acetyl>3-carboxypropionyl derivatives. 3. The order of the extent of conformational alteration induced in apoLD lipoprotein and LD lipoprotein, as judged by c.d. analyses, was 3-carboxypropionylation>diazotization>acetylation or amidination. 4. Delipidation of LD lipoprotein results in immunological alterations that are qualitatively detected by antisera to LD lipoprotein. Four of five antisera to apoLD lipoprotein form precipitin lines of identity between native LD lipoprotein and apoLD lipoprotein in double-diffusion experiments. An anti-(apoLD lipoprotein) serum that forms precipitin lines of complete identity between LD lipoprotein and apoLD lipoprotein reacts differently with these two antigens in radioimmunoassay. ApoLD lipoprotein is only one-fourth to one-half as effective as LD lipoprotein, on a protein basis, in the displacement of (125)I-labelled LD lipoprotein from this anti-(apoLD lipoprotein). 5. Conformational analysis indicates that apoLD lipoprotein retains a high proportion of the structural integrity of the native lipoprotein. Delipidation induces a small decrease in the content of beta-structure and a small increase in disordered structure, without greatly affecting the alpha-helical content. Chemical modification produces more severe conformational changes of apoLD lipoprotein than of LD lipoprotein. Computer analysis of the c.d. spectra of apoLD lipoprotein indicates that addition of high concentrations of sodium decyl sulphate abolishes most of the beta-conformation concomitant with increases in alpha-helical and disordered structure. 6. There is parallelism between the alteration of the charge of LD lipoprotein and apoLD lipoprotein and the extent of immunochemical and conformational changes.
摘要
  1. 采用多种免疫学和光学技术研究了人血浆低密度脂蛋白(LD脂蛋白)的结构。考察了脱脂蛋白以及3-羧基丙酰化、乙酰化、重氮化和脒化等化学修饰的作用。建立了一种用于人LD脂蛋白的灵敏双抗体放射免疫测定法,并用于评估免疫化学修饰的程度。采用计算机最佳拟合分析来分析圆二色性(c.d.)光谱。这些方法能够在相似实验条件下比较化学修饰和脱脂蛋白对LD脂蛋白的相对影响。2. 3-羧基丙酰化、乙酰化或重氮化会使LD脂蛋白的免疫化学性质发生定性和定量变化。脒化在放射免疫测定中会引起微小变化,但在双向扩散实验中未检测到变化。一般来说,在置换(125)I标记的LD脂蛋白方面,有效性顺序为:脒化衍生物>重氮或乙酰衍生物>3-羧基丙酰衍生物。3. 根据c.d.分析判断,在载脂蛋白LD脂蛋白(apoLD脂蛋白)和LD脂蛋白中诱导的构象改变程度顺序为:3-羧基丙酰化>重氮化>乙酰化或脒化。4. LD脂蛋白的脱脂蛋白导致免疫改变,可通过针对LD脂蛋白的抗血清进行定性检测。在双向扩散实验中,针对apoLD脂蛋白的五种抗血清中有四种在天然LD脂蛋白和apoLD脂蛋白之间形成了同一性沉淀线。一种在LD脂蛋白和apoLD脂蛋白之间形成完全同一性沉淀线的抗(apoLD脂蛋白)血清,在放射免疫测定中与这两种抗原的反应不同。以蛋白质为基础,apoLD脂蛋白在从这种抗(apoLD脂蛋白)中置换(125)I标记的LD脂蛋白方面,效力仅为LD脂蛋白的四分之一至二分之一。5. 构象分析表明,apoLD脂蛋白保留了天然脂蛋白结构完整性的很大一部分。脱脂蛋白导致β结构含量略有下降,无序结构略有增加,而对α螺旋含量影响不大。化学修饰对apoLD脂蛋白产生的构象变化比对LD脂蛋白更严重。对apoLD脂蛋白的c.d.光谱进行计算机分析表明,添加高浓度的十二烷基硫酸钠会消除大部分β构象,同时α螺旋和无序结构增加。6. LD脂蛋白和apoLD脂蛋白电荷的改变与免疫化学和构象变化的程度之间存在平行关系。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b73/1177707/ae44dcc1a852/biochemj00606-0172-a.jpg

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