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Oxidative folding intermediates with nonnative disulfide bridges between adjacent cysteine residues

机译:相邻半胱氨酸残基之间具有非天然二硫键的氧化折叠中间体

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摘要

The oxidative folding of the Amaranthus α-amylase inhibitor, a 32-residue cystine-knot protein with three disulfide bridges, was studied in vitro in terms of the disulfide content of the intermediate species. A nonnative vicinal disulfide bridge between cysteine residues 17 and 18 was found in three of five fully oxidized intermediates. One of these, the most abundant folding intermediate (MFI), was further analyzed by 1H NMR spectroscopy and photochemically induced dynamic nuclear polarization, which revealed that it has a compact structure comprising slowly interconverting conformations in which some of the amino acid side chains are ordered. NMR pulsed-field gradient diffusion experiments confirmed that its hydrodynamic radius is indistinguishable from that of the native protein. Molecular modeling suggested that the eight-membered ring of the vicinal disulfide bridge in MFI may be located in a loop region very similar to those found in experimentally determined 3D structures of other proteins. We suggest that the structural constraints imposed on the folding intermediates by the nonnative disulfides, including the vicinal bridge, may play a role in directing the folding process by creating a compact fold and bringing the cysteine residues into close proximity, thus facilitating reshuffling to native disulfide bridges.
机译:体外研究了mar菜α-淀粉酶抑制剂(具有三个二硫键的32个残基的胱氨酸结蛋白)的氧化折叠,方法是根据中间物种的二硫含量进行研究。在五个完全氧化的中间体中的三个中,发现了半胱氨酸残基17和18之间的非天然邻位二硫键。其中一种,最丰富的折叠中间体(MFI),通过1H NMR光谱和光化学诱导的动态核极化进一步分析,表明其具有致密的结构,其中包含缓慢互变的构象,其中一些氨基酸侧链是有序的。 NMR脉冲场梯度扩散实验证实其流体动力学半径与天然蛋白质的流体动力学半径没有区别。分子建模表明,MFI中邻位二硫键的八元环可能位于与实验确定的其他蛋白质3D结构中非常相似的环区域中。我们建议,非天然二硫化物(包括邻桥)对折叠中间体施加的结构性约束可能通过形成紧密折叠并使半胱氨酸残基紧密接近,从而在指导折叠过程中起作用,从而有利于改组为天然二硫化物桥梁。

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