豚鼠
脂蛋白脂酶
乳糜微粒
载脂蛋白B
突变体
生物化学
生物
野生型
脂蛋白
分子生物学
氨基酸
大肠杆菌
重组DNA
酶
极低密度脂蛋白
胆固醇
内分泌学
基因
作者
Yvonne Andersson,Aivar Lõokene,Yan Shen,Stefan K. Nilsson,Lars Thelander,Gunilla Olivecrona
标识
DOI:10.1016/s0022-2275(20)37141-8
摘要
Guinea pig apolipoprotein C-I1 (apoC-11) lacks four amino acid residues in the amino-terminal, lipid-binding part compared to apoC-I1 from other mammalian species (Andersson et al. 1991.J. Biol.C h .266: 4074-4080).To explore whether this structural difference explains the low ability of guinea pig plasma to activate lipoprotein lipase in vitro, we have expressed guinea pig apoC-I1 in Escherichia coli and have constructed an insertion mutant with the four missing amino acid residues compared to human apoC-11.With a synthetic emulsion of long-chain triacylglycerols, both the wildtype guinea pig apoC-I1 and the insertion mutant stimulated lipoprotein lipase similar to human apoC-11, but with chylomicrons from an apoC-11-deficient patient, 5-to 10-fold more of both wild-type guinea pig apoC-11 and the insertion mutant were needed.Studies of tryptophane fluorescence indicated a slight difference in how guinea pig apoC-I1 interacted with liposomes, and presumably with lipoproteins, as compared to human apoC-11.The level of apoC-I1 (1 1.5 ?5.4 pg/ml) was lower in guinea pig compared to human plasma, and most of guinea pig apoC-I1 was on HDL-like particles.These had decreased ability to donate apoC-I1 to lipid emulsions compared to human HDL.Some guinea pig apoC-I1 was associated with LDL which, as demonstrated by surface plasmon resonance, had higher affinity for lipoprotein lipase than human LDL, and inhibited rather than stimulated the lipase reaction in vitr0.U We conclude that while guinea pig apoC-I1 is fully competent to stimulate lipoprotein lipase, the sum of several different factors explains the low ability of guinea pig plasma to accomplish stimulation.-Andemson,Y., A. Lookene, Y.
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