Wang Libo, Martin Dale D O, Genter Erin, Wang Jianjun, McLeod Roger S, Small Donald M
Department of Physiology and Biophysics, Boston University School of Medicine, Boston, MA 02118-2526, USA.
J Lipid Res. 2009 Jul;50(7):1340-52. doi: 10.1194/jlr.M900040-JLR200. Epub 2009 Feb 26.
Apolipoprotein B (apoB) is a nonexchangeable apolipoprotein. During lipoprotein assembly, it recruits phospholipids and triacylglycerols (TAG) into TAG-rich lipoprotein particles. It remains bound to secreted lipoproteins during lipid metabolism in plasma. The beta1 region (residues 827-1880) of apoB has a high amphipathic beta strand (AbetaS) content and is proposed to be one region anchoring apoB to lipoproteins. The AbetaS-rich region between apoB37 and apoB41 (residues 1694-1880) was cloned, expressed, and purified. The interfacial properties were studied at the triolein/water (TO/W) and air/water (A/W) interfaces. ApoB[37-41] is surface-active and adsorbs to the TO/W interface. After adsorption the unbound apoB[37-41] was removed from the aqueous phase. Adsorbed apoB[37-41] did not desorb and could not be forced off by increasing the surface pressure up to 23 mN/m. ApoB[37-41] adsorbed on the TO/W interface was completely elastic when compressed and expanded by +/-13% of its area. On an A/W interface, the apoB[37-41] monolayer became solid when compressed to 4 mN/m pressure indicating extended beta-sheet formation. It could be reversibly compressed and expanded between low pressure and its collapse pressure (35 mN/m). Our studies confirm that the AbetaS structure of apoB[37-41] is a lipid-binding motif that can irreversibly anchor apoB to lipoproteins.
载脂蛋白B(apoB)是一种不可交换的载脂蛋白。在脂蛋白组装过程中,它将磷脂和三酰甘油(TAG)募集到富含TAG的脂蛋白颗粒中。在血浆脂质代谢过程中,它仍与分泌的脂蛋白结合。apoB的β1区域(第827 - 1880位氨基酸残基)具有较高的两亲性β链(AbetaS)含量,被认为是将apoB锚定到脂蛋白上的一个区域。克隆、表达并纯化了apoB37和apoB41之间富含AbetaS的区域(第1694 - 1880位氨基酸残基)。研究了其在三油酸甘油酯/水(TO/W)和空气/水(A/W)界面的界面性质。apoB[37 - 41]具有表面活性,能吸附到TO/W界面。吸附后,未结合的apoB[37 - 41]从水相中去除。吸附的apoB[37 - 41]不会解吸,即使将表面压力提高到23 mN/m也无法将其驱离。吸附在TO/W界面上的apoB[37 - 41]在其面积压缩和扩展±13%时完全具有弹性。在A/W界面上,当apoB[37 - 41]单层被压缩到4 mN/m压力时会变成固态,表明形成了伸展的β折叠。它可以在低压和其塌陷压力(35 mN/m)之间可逆地压缩和扩展。我们的研究证实,apoB[37 - 41]的AbetaS结构是一种脂质结合基序,可将apoB不可逆地锚定到脂蛋白上。