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Structure-function relationships of apolipoprotein A-I: a flexible protein with dynamic lipid associations.

机译:载脂蛋白A-I的结构-功能关系:具有动态脂质缔合的柔性蛋白。

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PURPOSE OF REVIEW Apolipoprotein A-I is the major structural protein of HDL. Its physicochemical properties maintain a delicate balance between maintenance of stable lipoproteins and the ability to associate with and dissociate from the lipid transported. Here we review the progress made in the last 2-3 years on the structure-function relationships of apolipoprotein A-I, including elements related to the ATP binding cassette transporter A1.RECENT FINDINGS Current evidence now supports the so-called 'belt' or 'hairpin' models for apolipoprotein A-I conformation when bound to discoidal lipoproteins. In-vivo expression of apolipoprotein A-I mutant proteins has shown that both the N- and C-terminal domains are important for lipid association as well as for the esterification reaction, particularly binding of cholesteryl esters and formation of mature alpha-migrating lipoproteins. This property is apparently quite distinct from the activation of the enzyme lecithin cholesterol acyl transferase, which requires interaction with the central helix 6. The interaction of apolipoprotein A-I with the ATP binding cassette transporter A1 has been shown to require the C-terminal domain, which is proposed to mediate the opening of the helix bundle formed by lipid-free or lipid-poor apolipoprotein A-I and allow its association with hydrophobic binding sites.SUMMARY Significant progress has been made in the understanding of the molecular mechanisms controlling the folding of apolipoprotein A-I and its interaction with lipids and various other protein factors involved in HDL metabolism.
机译:综述的目的载脂蛋白A-1是HDL的主要结构蛋白。它的理化特性在维持稳定的脂蛋白和与转运的脂质缔合和解离的能力之间保持了微妙的平衡。在这里,我们回顾了过去2-3年中载脂蛋白AI在结构-功能关系上的进展,包括与ATP结合盒转运蛋白A1相关的元素。最新发现目前的证据支持所谓的``带''或``发夹''当结合盘状脂蛋白时,载脂蛋白AI构象模型。载脂蛋白A-1突变蛋白的体内表达表明,N-和C-末端结构域对于脂质缔合以及酯化反应,特别是胆固醇酯的结合和成熟的α-迁移的脂蛋白的形成都是重要的。该特性显然与需要与中央螺旋6相互作用的卵磷脂胆固醇酰基转移酶的激活截然不同。载脂蛋白AI与ATP结合盒转运蛋白A1的相互作用已显示需要C末端结构域,提议介导由无脂或贫脂载脂蛋白AI形成的螺旋束的开放,并使其与疏水结合位点缔合。概述在控制载脂蛋白AI和ACC折叠的分子机制方面取得了重要进展。它与参与HDL代谢的脂质和其他各种蛋白质因子的相互作用。

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