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Expression of the C-terminal domain of human apolipoprotein A-I using a chimeric apolipoprotein

机译:使用嵌合载脂蛋白表达人载脂蛋白A-I的C末端结构域

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摘要

Human apolipoprotein A-I (apoA-I) is the most abundant protein in high-density lipoprotein, an anti-atherogenic lipid-protein complex responsible for reverse cholesterol transport. The protein is composed of an N-terminal helix bundle domain, and a small C-terminal (CT) domain. To facilitate study of CT-apoA-I, a novel strategy was employed to produce this small domain in a bacterial expression system. A protein construct was designed of insect apolipophorin III (apoLp-III) and residues 179–243 of apoA-I, with a unique a methionine residue positioned between the two proteins and an N-terminal His-tag to facilitate purification. The chimera was expressed in E. coli, purified by Ni-affinity chromatography, and cleaved by cyanogen bromide. SDS-PAGE revealed the presence of three proteins with masses of 7 kDa (CT-apoA-I), 18 kDa (apoLp-III), and a minor 26 kDa band of uncleaved chimera. The digest was reloaded on the Ni-affinity column to bind apoLp-III and uncleaved chimera, while CT-apoA-I was washed from the column and collected. Alternatively, CT-apoA-I was isolated from the digest by reversed-phase HPLC. CT-apoA-I was α-helical, highly effective in solubilizing phospholipid vesicles and disaggregating LPS micelles. However, CT-apoA-I was less active compared to full-length apoA-I in protecting lipolyzed low density lipoproteins from aggregating, and disrupting phosphatidylglycerol bilayer vesicles. Thus the novel expression system produced mg quantities of functional CT-apoA-I, facilitating structural and functional studies of this critical domain of apoA-I.
机译:人载脂蛋白A-I(apoA-I)是高密度脂蛋白中最丰富的蛋白,高密度脂蛋白是负责逆向胆固醇转运的抗动脉粥样硬化的脂蛋白复合物。该蛋白质由一个N末端螺旋束结构域和一个小的C末端(CT)结构域组成。为了促进CT-apoA-I的研究,采用了一种新的策略在细菌表达系统中产生这个小结构域。设计了一种由昆虫载脂蛋白III(apoLp-III)和apoA-I残基179-243组成的蛋白构建体,在这两种蛋白之间有一个独特的蛋氨酸残基,并带有一个N端His-tag以促进纯化。嵌合体在大肠杆菌中表达,通过Ni-亲和层析纯化,并被溴化氰裂解。 SDS-PAGE显示存在三种蛋白质,质量分别为7 kDa(CT-apoA-I),18 kDa(apoLp-III)和26 kDa的未切割嵌合体条带。将消化物重新上样到Ni-亲和柱上,以结合apoLp-III和未切割的嵌合体,同时从柱上洗净CT-apoA-I并收集。或者,通过反相HPLC从消化物中分离出CT-apoA-1。 CT-apoA-I是α螺旋状,在溶解磷脂囊泡和分解LPS胶束方面非常有效。然而,与全长apoA-1相比,CT-apoA-1在保护脂化的低密度脂蛋白免于聚集和破坏磷脂酰甘油双层囊泡方面活性较低。因此,新型表达系统产生了毫克量的功能性CT-apoA-I,从而促进了该apoA-I关键域的结构和功能研究。

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