首页> 外文期刊>Journal of Molecular Biology >Mouse ApoM displays an unprecedented seven-stranded lipocalin fold: folding decoy or alternative native fold?
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Mouse ApoM displays an unprecedented seven-stranded lipocalin fold: folding decoy or alternative native fold?

机译:小鼠ApoM显示出前所未有的七链脂环素折叠:折叠诱饵还是其他天然折叠?

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摘要

Mouse apolipoprotein M (m-apoM) displays a 79% sequence identity to human apolipoprotein M (h-apoM). Both proteins are apolipoproteins associated with high-density lipoproteins, with similar anticipated biological functions. The structure of h-apoM has recently been determined by X-ray crystallography, which revealed that h-apoM displays, as expected, a lipocalin-like fold characterized by an eight-stranded betabarrel that encloses an internal fatty-acid-binding site. Surprisingly, this is not true for m-apoM. After refolding from inclusion bodies, the crystal structure of m-apoM (reported here at 2.5 A resolution) displays a novel yet unprecedented seven-stranded beta-barrel structure. The fold difference is not caused by a mere deletion of a single beta-strand; instead, beta-strands E and F are removed and replaced by a single beta-strand A' formed from residues from the N-terminus. Molecular dynamics simulations suggest that m-apoM is able to adopt both a seven-stranded barrel structure and an eight-stranded barrel structure in solution, and that both folds are comparably stable. Thermal unfolding simulations identify the position where beta-strand exchange occurs as the weak point of the beta-barrel. We wonder whether the switch in topology could have a biological function and could facilitate ligand release, since it goes hand in hand with a narrowing of the barrel diameter. Possibly also, the observed conformation represents an on-pathway or off-pathway folding intermediate of apoM. The difference in fold topology is quite remarkable, and the fold promiscuity observed for m-apoM might possibly provide a glimpse at potential cross-points during the evolution of beta-barrels.
机译:小鼠载脂蛋白M(m-apoM)与人载脂蛋白M(h-apoM)的序列同一性为79%。两种蛋白都是与高密度脂蛋白相关的载脂蛋白,具有相似的预期生物学功能。 h-apoM的结构最近已通过X射线晶体学确定,结果表明,与预期的一样,h-apoM显示出以八链β-桶为特征的脂环素样折叠,该折叠包围了内部脂肪酸结合位点。出乎意料的是,对于m-apoM而言并非如此。从包涵体折叠后,m-apoM的晶体结构(此处以2.5 A分辨率报道)显示出新颖却前所未有的七链β-桶形结构。倍数差异不是由单个β链的缺失引起的。取而代之的是,β链E和F被去除,并被由N末端残基形成的单个β链A'代替。分子动力学模拟表明,m-apoM能够在溶液中同时采用七链桶形结构和八链桶形结构,并且两个折叠都相当稳定。热展开模拟将β-链交换发生的位置确定为β-桶的弱点。我们想知道拓扑结构中的开关是否具有生物学功能并且是否可以促进配体释放,因为它与桶直径的缩小并驾齐驱。同样可能的是,观察到的构象代表apoM在路径上或路径外的折叠中间体。折叠拓扑的差异非常显着,观察到的m-apoM的折叠混杂性可能会给β-桶进化过程中的潜在交叉点提供一瞥。

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