Departments of Pathology and Laboratory Medicine University of Cincinnati, Cincinnati, OH 45237.
Departments of Pathology, Microbiology, and Immunology, Vanderbilt University Medical Center, Nashville, TN 37232.
J Lipid Res. 2018 Jul;59(7):1244-1255. doi: 10.1194/jlr.M085332. Epub 2018 May 17.
APOA1 is the most abundant protein in HDL. It modulates interactions that affect HDL's cardioprotective functions, in part via its activation of the enzyme, LCAT. On nascent discoidal HDL, APOA1 comprises 10 α-helical repeats arranged in an anti-parallel stacked-ring structure that encapsulates a lipid bilayer. Previous chemical cross-linking studies suggested that these APOA1 rings can adopt at least two different orientations, or registries, with respect to each other; however, the functional impact of these structural changes is unknown. Here, we placed cysteine residues at locations predicted to form disulfide bonds in each orientation and then measured APOA1's ability to adopt the two registries during HDL particle formation. We found that most APOA1 oriented with the fifth helix of one molecule across from fifth helix of the other (5/5 helical registry), but a fraction adopted a 5/2 registry. Engineered HDLs that were locked in 5/5 or 5/2 registries by disulfide bonds equally promoted cholesterol efflux from macrophages, indicating functional particles. However, unlike the 5/5 registry or the WT, the 5/2 registry impaired LCAT cholesteryl esterification activity ( < 0.001), despite LCAT binding equally to all particles. Chemical cross-linking studies suggest that full LCAT activity requires a hybrid epitope composed of helices 5-7 on one APOA1 molecule and helices 3-4 on the other. Thus, APOA1 may use a reciprocating thumbwheel-like mechanism to activate HDL-remodeling proteins.
载脂蛋白 A1(APOA1)是高密度脂蛋白(HDL)中含量最丰富的蛋白质。它调节影响 HDL 心脏保护功能的相互作用,部分通过激活酶 LCAT 来实现。在新生盘状 HDL 中,APOA1 由 10 个α-螺旋重复组成,排列成反平行堆叠环结构,包裹着一个脂质双层。先前的化学交联研究表明,这些 APOA1 环可以采用至少两种不同的取向或注册,彼此相对;然而,这些结构变化的功能影响尚不清楚。在这里,我们在每个取向预测形成二硫键的位置放置半胱氨酸残基,然后测量 APOA1 在 HDL 颗粒形成过程中采用两种注册的能力。我们发现,大多数 APOA1 分子的第五个螺旋与另一个分子的第五个螺旋相对(5/5 螺旋注册),但有一部分采用 5/2 注册。通过二硫键锁定在 5/5 或 5/2 注册的工程化 HDL 同样促进了巨噬细胞中的胆固醇流出,表明是功能性颗粒。然而,与 5/5 注册或 WT 不同的是,5/2 注册会损害 LCAT 胆固醇酯化活性(<0.001),尽管 LCAT 平等地结合到所有颗粒上。化学交联研究表明,完整的 LCAT 活性需要一个由一个 APOA1 分子上的螺旋 5-7 和另一个分子上的螺旋 3-4 组成的混合表位。因此,APOA1 可能使用一种往复式蜗轮样机制来激活 HDL 重塑蛋白。