Suppr超能文献

一种影响载脂蛋白A-II翻译效率的多态性决定了高密度脂蛋白的大小和组成。

A polymorphism affecting apolipoprotein A-II translational efficiency determines high density lipoprotein size and composition.

作者信息

Doolittle M H, LeBoeuf R C, Warden C H, Bee L M, Lusis A J

机构信息

Wadsworth Veterans Administration Medical Center, Los Angeles, California 90073.

出版信息

J Biol Chem. 1990 Sep 25;265(27):16380-8.

PMID:2118905
Abstract

High density lipoproteins (HDL) are heterogeneous particles consisting of about equal amounts of lipid and protein that are thought to mediate the transport of cholesterol from peripheral tissues to liver. We show that a previously identified polymorphism affecting HDL electrophoretic mobility in mice is due to a monogenic variation controlling HDL size and apolipoprotein composition. Thus, the HDL particles of various inbred strains of mice exhibit a striking difference in the ratio fo the two major apolipoproteins of HDL, apoA-I and apoA-II. HDL particles in all strains examined contain an average of about five apoA-I molecules; however, whereas the strains with small HDL contain two to three apoA-II molecules per particle, the strains with large HDL contain about five apoA-II molecules per particle. This increase in the protein content of the large HDL is also accompanied by increased lipid content. The HDL size polymorphism and apoA-II levels cosegregate with the apoA-II structural gene on mouse chromosome 1, indicating that a mutation of the apoA-II gene locus is responsible. The rates of synthesis of apoA-II are increased in the strains with large HDL and high apoA-II levels as compared to the strains with small HDL and low apoA-II levels. On the other hand, the fractional catabolic rates of both apoA-I and apoA-II among the strains are very similar, confirming that apoA-II concentrations are controlled at the level of synthesis. Despite the difference in rates of apoA-II synthesis between strains, the apoA-II mRNA levels in the strains are not discernibly different, suggesting that a mutation of the apoA-II structural gene controls apoA-II translational efficiency. This was confirmed by translating apoA-II mRNA in vitro using a rabbit reticulocyte lysate system. Sequencing of apoA-II cDNA from the strains revealed a number of nucleotide substitutions, which may affect translational efficiency. We conclude that the assembly of apoA-II into HDL does not have a set stoichiometry but, rather, is controlled by the production of apoA-II. As apoA-II levels increase, the HDL particles become larger and acquire more lipid, but apoA-I content per particle remains unchanged. These studies with mice provide a model for the metabolic relationships between apoA-I, apoA-II, and HDL lipid in humans.

摘要

高密度脂蛋白(HDL)是由大约等量的脂质和蛋白质组成的异质性颗粒,被认为介导胆固醇从外周组织向肝脏的转运。我们发现,先前在小鼠中鉴定出的影响HDL电泳迁移率的多态性是由一个控制HDL大小和载脂蛋白组成的单基因变异引起的。因此,不同近交系小鼠的HDL颗粒在HDL的两种主要载脂蛋白apoA-I和apoA-II的比例上表现出显著差异。在所有检测的品系中,HDL颗粒平均含有约五个apoA-I分子;然而,HDL较小的品系每个颗粒含有两到三个apoA-II分子,而HDL较大的品系每个颗粒含有约五个apoA-II分子。大HDL蛋白质含量的增加也伴随着脂质含量的增加。HDL大小多态性和apoA-II水平与小鼠1号染色体上的apoA-II结构基因共分离,表明apoA-II基因座的突变是原因所在。与HDL较小且apoA-II水平较低的品系相比,HDL较大且apoA-II水平较高的品系中apoA-II的合成速率增加。另一方面,各品系中apoA-I和apoA-II的分数分解代谢率非常相似,证实了apoA-II浓度在合成水平受到控制。尽管品系间apoA-II合成速率存在差异,但各品系中apoA-II mRNA水平没有明显差异,这表明apoA-II结构基因的突变控制了apoA-II的翻译效率。使用兔网织红细胞裂解物系统在体外翻译apoA-II mRNA证实了这一点。对各品系apoA-II cDNA的测序揭示了许多核苷酸取代,这可能影响翻译效率。我们得出结论,apoA-II组装到HDL中没有固定的化学计量,而是由apoA-II的产生所控制。随着apoA-II水平的增加,HDL颗粒变得更大并获得更多脂质,但每个颗粒中的apoA-I含量保持不变。这些对小鼠的研究为人类中apoA-I、apoA-II和HDL脂质之间的代谢关系提供了一个模型。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验