Department of Pharmaceutical Technology and Biopharmacy, Albert-Ludwigs-University Freiburg, D-79104 Freiburg, Germany.
Langmuir. 2010 Mar 16;26(6):4142-51. doi: 10.1021/la903386d.
We applied protein-mediated lipid transfer using recombinant His-tagged pro-sterol carrier protein 2 (pro-SCP2) to prepare asymmetrical membrane vesicles (AMV) featuring an unequal transmembrane distribution of the negative phospholipid egg-phosphatidylglycerol (EPG). Pure egg-phosphatidylcholine (EPC) vesicles were used as the acceptor and EPC:EPG 90:10 mol % vesicles as the donor populations. The changes in surface charge during EPG transfer were used to quantify the degree of asymmetry by free-flow electrophoresis (FFE). The relative deflection in FFE correlated with EPG content in the outer monolayer (x(EPG)). The initial transfer rates and first order rate constants for the transfer process were determined. The addition of pro-SCP2 at a molar protein-to-lipid ratio R(P/L) of (15-20) x 10(-5) accelerated the EPG transfer to half-times of between 2 and 3 h. Thus, the transmembrane redistribution of EPG by flip-flop, which reduces the degree of asymmetry and occurs at half-times of tens of hours, was minimized during the transfer process. We investigated the influence of membrane curvature on the transfer rate using 50 and 100 nm vesicles with very low size distribution widths (RSD of 13-17%). Transfer occurred with a 55.7% higher initial rate between the smaller vesicles. The use of equally sized acceptor and donor populations of such narrow size distributions was shown to be important for the preparation of AMV with a uniform degree of asymmetry. Under these conditions, AMV were obtained after less than 3 h by preparative FFE separation. In the case of the acceptor vesicles, EPG transfer increased x(EPG) to 3 mol %, whereas it was reduced to 6 mol % in the donor vesicles.
我们应用蛋白介导的脂质转移,使用重组 His 标记的前甾醇载体蛋白 2(pro-SCP2)制备具有不对称膜泡(AMV)的不对称膜泡,其特征在于负磷脂蛋黄磷脂酰甘油(EPG)的跨膜分布不均等。纯蛋黄磷脂酰胆碱(EPC)囊泡用作受体,EPC:EPG90:10mol%囊泡用作供体群体。在 EPG 转移过程中表面电荷的变化用于通过自由流电泳(FFE)定量不对称的程度。FFE 中的相对偏移与外单层(x(EPG))中的 EPG 含量相关。确定了转移过程中的初始转移速率和一级转移速率常数。在摩尔蛋白与脂质比(R(P/L))为(15-20)x10(-5)的 pro-SCP2 存在下,EPG 的初始转移速率加快至半衰期为 2-3h。因此,通过翻转减少不对称程度的 EPG 的跨膜再分布,其半衰期为数十小时,在转移过程中最小化。我们使用具有非常低的尺寸分布宽度(RSD 为 13-17%)的 50 和 100nm 囊泡研究了膜曲率对转移速率的影响。在较小的囊泡之间,初始转移速率提高了 55.7%。证明了使用这种窄尺寸分布的大小相等的受体和供体群体对于制备具有均匀不对称度的 AMV 非常重要。在这些条件下,通过制备性 FFE 分离不到 3h 即可获得 AMV。对于受体囊泡,EPG 转移将 x(EPG)增加到 3mol%,而在供体囊泡中减少到 6mol%。