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首页> 外文期刊>Journal of Molecular Biology >A pH-dependent dimer lock in spider silk protein.
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A pH-dependent dimer lock in spider silk protein.

机译:蜘蛛丝蛋白中的pH依赖二聚体锁。

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Spider dragline silk, one of the strongest polymers in nature, is composed of proteins termed major ampullate spidroin (MaSp) 1 and MaSp2. The N-terminal (NT) domain of MaSp1 produced by the nursery web spider Euprosthenops australis acts as a pH-sensitive relay, mediating spidroin assembly at around pH 6.3. Using amide hydrogen/deuterium exchange combined with mass spectrometry (MS), we detected pH-dependent changes in deuterium incorporation into the core of the NT domain, indicating global structural stabilization at low pH. The stabilizing effects were diminished or abolished at high ionic strength, or when the surface-exposed residues Asp40 and Glu84 had been exchanged with the corresponding amides. Nondenaturing electrospray ionization MS revealed the presence of dimers in the gas phase at pH values below--but not above--6.4, indicating a tight electrostatic association that is dependent on Asp40 and Glu84 at low pH. Results from analytical ultracentrifugation support these findings. Together, the data suggest a mechanism whereby lowering the pH to <6.4 results in structural changes and alteration of charge-mediated interactions between subunits, thereby locking the spidroin NT dimer into a tight entity important for aggregation and silk formation.
机译:蜘蛛式牵引铲丝是自然界中最强的聚合物之一,由称为主要壶腹蜘蛛蛛蛋白(MaSp)1和MaSp2的蛋白质组成。苗圃蜘蛛蜘蛛Euprosthenops australis产生的MaSp1的N末端(NT)域充当pH敏感继电器,在大约6.3的pH下介导了spidroin组装。使用酰胺氢/氘交换结合质谱(MS),我们检测到掺入NT域核心的氘中pH依赖性变化,表明在低pH值下整体结构稳定。在高离子强度下,或者当表面暴露的残基Asp40和Glu84已与相应的酰胺交换时,稳定作用减弱或消失。非变性电喷雾电离质谱显示,在pH值低于6.4但不高于6.4时,气相中存在二聚体,表明紧密的静电缔合取决于低pH下的Asp40和Glu84。分析超速离心的结果支持了这些发现。总之,数据表明了一种机制,通过该机制将pH降低至<6.4会导致结构变化和亚基之间电荷介导的相互作用的变化,从而将spidroin NT二聚体锁定为对聚集和丝形成很重要的紧密实体。

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