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Structural and functional consequences of the Milano mutation (R173C) in human apolipoprotein A-I

机译:Milano突变(R173C)在人类载脂蛋白A-I中的结构和功能后果

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摘要

Carriers of the apolipoprotein A-IMilano (apoA-IM) variant, R173C, have reduced levels of plasma HDL but no increase in cardiovascular disease. Despite intensive study, it is not clear whether the removal of the arginine or the introduction of the cysteine is responsible for this altered functionality. We investigated this question using two engineered variations of the apoA-IM mutation: R173S apoA-I, similar to apoA-IM but incapable of forming a disulfide bond, and R173K apoA-I, a conservative mutation. Characterization of the lipid-free proteins showed that the order of stability was wild type≈R173K>R173S>R173C. Compared with wild-type apoA-I, apoA-IM had a lower affinity for lipids, while R173S apoA-I displayed intermediate affinity. The in vivo effects of the apoA-I variants were measured by injecting apoA-I-expressing adeno-associated virus into apoA-I-null mice. Mice that expressed the R173S variant again showed an intermediate phenotype. Thus, both the loss of the arginine and its replacement by a cysteine contribute to the altered properties of apoA-IM. The arginine is potentially involved in an intrahelical salt bridge with E169 that is disrupted by the loss of the positively charged arginine and repelled by the cysteine, destabilizing the helix bundle domain in the apoA-I molecule and modifying its lipid binding characteristics.
机译:载脂蛋白A-IMilano(apoA-IM)变异体R173C的血浆HDL水平降低,但心血管疾病没有增加。尽管进行了深入研究,但尚不清楚去除精氨酸或引入半胱氨酸是否是这种功能改变的原因。我们使用apoA-IM突变的两个工程变体调查了这个问题:R173S apoA-I(类似于apoA-IM,但无法形成二硫键)和R173K apoA-I(保守突变)。对无脂质蛋白质的表征表明,其稳定性顺序为野生型≈R173K> R173S> R173C。与野生型apoA-I相比,apoA-IM对脂质的亲和力较低,而R173S apoA-I显示出中等亲和力。通过将表达apoA-I的腺伴随病毒注射入apoA-I无效的小鼠中来测量apoA-I变体的体内作用。表达R173S变体的小鼠再次显示出中间表型。因此,精氨酸的损失和其被半胱氨酸替代都有助于改变apoA-IM的性质。精氨酸可能与具有E169的螺旋内盐桥有关,该盐桥被带正电荷的精氨酸的损失打断并被半胱氨酸排斥,使apoA-I分子中的螺旋束结构域不稳定并改变其脂质结合特性。

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