首页> 外文期刊>Journal of Lipid Research >STRUCTURAL RELATIONSHIPS BETWEEN NASCENT APOA-I-CONTAINING PARTICLES THAT ARE EXTRACELLULARLY ASSEMBLED IN CELL CULTURE
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STRUCTURAL RELATIONSHIPS BETWEEN NASCENT APOA-I-CONTAINING PARTICLES THAT ARE EXTRACELLULARLY ASSEMBLED IN CELL CULTURE

机译:细胞培养中胞外装配的含纳新APOA-I颗粒之间的结构关系

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摘要

Apolipoprotein A-I (apoA-I) incubated with CHO cells assembles three major nascent lipid complexes two diameters of 7.3, 9, and 11 nm. Previous studies suggested that the smaller nascent particles were precursors for the larger nascent ones. To test this hypothesis, the 7.3, 9, and 11 nm apoA-I-lipid complexes formed by incubating CHO cells with lipid-free apoA-I were isolated and subsequently each subpopulation was re-incubated with cells in the absence of other subpopulations. The physical-chemical characteristics of each subpopulation were examined before and after re-incubation in an effort to understand relationships; if any, between the different nascent complexes. The 7.3, 9, and 11 nm complexes were unique in that each of the particles had pre-alpha mobility on agarose gels; this rapid migration was not altered by re-incubation with cells. Protein crosslinking studies indicated that the 7.3, 9, and 11 nm complexes possessed 2, 3, and 4 apoA-I molecules per complex, respectively; it is unlikely that the size of the particle and number of apoA-I molecules per particle played a role in the increased negative charge of the particles. The present study shows that smaller particles did not give rise to larger ones upon re-incubation with cells. Rather, the 11 and 9 nm particles both generated smaller discs (the 11 nm giving rise primarily to 9 nm discs and the 9 nm complex giving rise to 7.3 nm discs) suggesting that, during incubation with cells, the complexes are destabilized and remodeled into smaller, not larger, complexes. Surprisingly, the 7.3 nm complexes during re-incubation with cells were extremely stable and did not undergo size alteration. When the 7.3 nm particles were incubated with additional small quantities of lipid-free apoA-I (1-2 mu g/ml), larger discoidal complexes were generated suggesting that the formation of larger particles may be driven by the availability of lipid-free apoA-I;-Forte, T. M., J. K., Bielicki, L. Knoff, and M. R. McCall. Structural relationships between nascent apoA-1-containing particles that are extracellularly assembled in cell culture. [References: 35]
机译:与CHO细胞孵育的载脂蛋白A-I(apoA-I)组装了三种主要新生脂质复合物,其直径分别为7.3、9和11 nm。先前的研究表明,较小的新生颗粒是较大的新生颗粒的前体。为了检验该假设,分离了通过将CHO细胞与无脂质的apoA-I温育形成的7.3、9和11nm的apoA-I-脂质复合物,随后在没有其他亚群的情况下将每个亚群与细胞一起重新温育。在重新孵育之前和之后检查每个亚群的理化特性,以了解它们之间的关系。如果有,则在不同的新生复合体之间。 7.3、9和11 nm的复合物是独特的,因为每个颗粒在琼脂糖凝胶上均具有pre-alpha迁移性。通过与细胞重新孵育不会改变这种快速迁移。蛋白质交联研究表明,每个复合物7.3、9和11 nm复合物分别具有2、3和4个apoA-I分子。颗粒的大小和每个颗粒的apoA-I分子的数量不太可能在增加的颗粒负电荷中起作用。本研究表明,与细胞重新孵育后,较小的颗粒不会产生较大的颗粒。相反,11和9 nm粒子均生成较小的圆盘(11 nm主要产生9 nm圆盘,而9 nm复合物产生7.3 nm圆盘),表明在与细胞孵育期间,复合物不稳定并重塑为较小而不是较大的复合体。令人惊讶的是,在与细胞重新温育期间的7.3nm复合物是极其稳定的,并且没有经历尺寸改变。当将7.3 nm颗粒与其他少量无脂质apoA-I(1-2μg / ml)一起孵育时,会产生较大的盘状复合物,这表明较大颗粒的形成可能是由无脂质的可用性驱动的apoA-I; -Forte TM,JK,Bielicki,L.Knoff和MR McCall。在细胞培养中细胞外组装的新生apoA-1颗粒之间的结构关系。 [参考:35]

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