Letizia J Y, Phillips M C
Physiology and Biochemistry Department, Medical College of Pennsylvania, Philadelphia 19129.
Biochemistry. 1991 Jan 22;30(3):866-73. doi: 10.1021/bi00217a041.
The effects of apolipoproteins on the kinetics of cholesterol exchange have been investigated by monitoring the transfer of [14C]cholesterol from donor phospholipid/cholesterol complexes containing human apolipoproteins A, B, or C. Negatively charged discoidal and vesicular particles containing purified apolipoproteins complexed with lipid (75 mol % egg PC, 15 mol % dicetyl phosphate, and 10 mol % cholesterol) and a trace of [14C]cholesterol were incubated with a 10-fold excess of neural, acceptor, small unilamellar vesicles (SUV; 90 mol % egg PC and 10 mol % cholesterol). The donor and acceptor particles were separated by chromatography on DEAE-Sepharose, and the rate of movement of labeled cholesterol was analyzed as a first-order exchange process. The kinetics of exchange of cholesterol from both vesicular and discoidal complexes that contain apoproteins are consistent with an aqueous diffusion mechanism, as has been established previously for PC/cholesterol SUV. The addition of 2-3 molecules of apo A-I to a donor SUV does not significantly alter the half-time (t1/2), which is 80 +/- 9 min at 37 degrees C. However, addition of 5-12 apo A-I molecules progressively decreases t1/2 from 65 +/- 2 to 45 +/- 4 min. This enhancement in the rate of desorption of cholesterol molecules is presumed to arise from the creation of packing defects at boundaries around the apoprotein molecules, which are intercalated among the phospholipid and cholesterol molecules in the surface of the donor SUV.(ABSTRACT TRUNCATED AT 250 WORDS)
通过监测[14C]胆固醇从含有人类载脂蛋白A、B或C的供体磷脂/胆固醇复合物中的转移,研究了载脂蛋白对胆固醇交换动力学的影响。将含有与脂质复合的纯化载脂蛋白(75摩尔%卵磷脂、15摩尔%磷酸二鲸蜡酯和10摩尔%胆固醇)以及微量[14C]胆固醇的带负电荷的盘状和囊泡状颗粒与10倍过量的神经受体小单层囊泡(SUV;90摩尔%卵磷脂和10摩尔%胆固醇)一起孵育。通过在DEAE-琼脂糖上进行色谱分离供体和受体颗粒,并将标记胆固醇的移动速率作为一级交换过程进行分析。含有载脂蛋白的囊泡和盘状复合物中胆固醇的交换动力学与水相扩散机制一致,这与之前确定的PC/胆固醇SUV的情况相同。向供体SUV中添加2 - 3个载脂蛋白A-I分子不会显著改变半衰期(t1/2),在37℃时t1/2为80±9分钟。然而,添加5 - 12个载脂蛋白A-I分子会使t1/2从65±2分钟逐渐降低至45±4分钟。胆固醇分子解吸速率的这种增强被认为是由于在载脂蛋白分子周围边界处形成了堆积缺陷,这些载脂蛋白分子插入到供体SUV表面的磷脂和胆固醇分子之间。(摘要截断于250字)