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首页> 外文期刊>Physical chemistry chemical physics: PCCP >The role of conformational flexibility on protein supercharging in native electrospray ionization
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The role of conformational flexibility on protein supercharging in native electrospray ionization

机译:构象柔性在天然电喷雾电离中对蛋白质增压的作用

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Effects of covalent intramolecular bonds, either native disulfide bridges or chemical crosslinks, on ESI supercharging of proteins from aqueous solutions were investigated. Chemically modifying cytochrome c with up to seven crosslinks or ubiquitin with up to two crosslinks did not affect the average or maximum charge states of these proteins in the absence of m-nitrobenzyl alcohol (m-NBA), but the extent of supercharging induced by m-NBA increased with decreasing numbers of crosslinks. For the model random coil polypeptide reduced/alkylated RNase A, a decrease in charging with increasing m-NBA concentration attributable to reduced surface tension of the ESI droplet was observed, whereas native RNase A electrosprayed from these same solutions exhibited enhanced charging. The inverse relationship between the extent of supercharging and the number of intramolecular crosslinks for folded proteins, as well as the absence of supercharging for proteins that are random coils in aqueous solution, indicate that conformational restrictions induced by the crosslinks reduce the extent of supercharging. These results provide additional evidence that protein and protein complex supercharging from aqueous solution is primarily due to partial or significant unfolding that occurs as a result of chemical and/or thermal denaturation induced by the supercharging reagent late in the ESI droplet lifetime.
机译:研究了共价分子内键(天然的二硫键或化学交联键)对水溶液中蛋白质ESI增压的影响。在不存在间硝基苄醇(m-NBA)的情况下,化学修饰具有多达七个交联键的细胞色素c或具有多达两个交联键的泛素不会影响这些蛋白质的平均或最大电荷状态,但会影响由m诱导的增压程度-NBA随着交叉链接数量的减少而增加。对于模型随机卷曲多肽还原/烷基化的RNase A,观察到由于ESI液滴表面张力降低而导致的m-NBA浓度增加而带电降低,而从这些相同溶液中电喷雾的天然RNase A则显示带电增强。折叠程度的增压程度与分子内交联数量之间呈反比关系,而水溶液中无规卷曲的蛋白质则不存在增压现象,这表明由交联引起的构象限制降低了增压程度。这些结果提供了另外的证据,表明从水溶液中进行蛋白质和蛋白质复合物的增压主要是由于在ESI液滴寿命的后期由增压试剂引起的化学和/或热变性而发生的部分或明显的展开。

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