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Pathway of Oxidative Folding of Secretory Leucocyte Protease Inhibitor:An 8-Disulfide Protein Exhibits a Unique Mechanism of Folding

机译:分泌型白细胞蛋白酶抑制剂的氧化折叠途径:8-二硫化物蛋白展示了独特的折叠机制。

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Secretory leucocyte protease inhibitor(SLPI)is a 107-amino acid protein with a high density of disulfide pairing(eight).The mechanism of oxidative folding of reduced and denatured SLPI has been investigated here.Despite an exceedingly large number of possible folding intermediates(approx 46 million disulfide isomers)and their potential to complicate the refolding process,oxidative folding of SLPI turns out to be surprisingly simple and efficient.Complete oxidative folding and a near-quantitative recovery of the native SLPI can be achieved in a simple buffer solution using air oxidation without any supplementing thiol catalyst or redox agent,a phenomenon that has not yet been observed with other disulfide proteins.Because of the heterogeneity and extensive overlapping of folding intermediates,identification of the predominant intermediate was unfeasible.Nonetheless,studies of reductive unfolding of native SLPI and oxidative folding of a six-disulfide variant of SLPI enable us to propose an underlying mechanism accounting for the unique folding efficiency of SLPI in the absence of a redox agent.Our studies indicate that oxidative folding of SLPI undergoes heterogeneous populations of one-,two-,three-,four-,five-,six-,and seven-disulfide isomers,including two nativelike isomers,SLPI-6A and SLPI-7A,as transient intermediates.Formation of the last two native disulfide bonds leading to the conversion of SLPI-6A -> SLPI-7A -> N-SLPI is relatively slow and represents the final stage of oxidative folding.Most importantly,free cysteines of SLPI-6A and SLPI-7A also act as a thiol catalyst in promoting the disulfide shuffling of diverse non-native intermediates accumulated along the folding pathway.This explains why a near-quantitative recovery of N-SLPI can be achieved in the absence of any thiol catalyst and redox agent.Properties of SLPI-6A and SLPI-7A were investigated and compared to those of other documented kinetic intermediates of oxidative folding.The correlation between the mechanism of SLPI folding and the three-dimensional structure of SLPI is also elaborated.
机译:分泌型白细胞蛋白酶抑制剂(SLPI)是一种107氨基酸的蛋白,具有高密度的二硫键配对(8)。尽管存在大量可能的折叠中间体,但本文研究了还原和变性SLPI的氧化折叠机理。约有4600万个二硫键异构体)及其潜在的复杂的复性过程,SLPI的氧化折叠非常简单有效,在简单的缓冲溶液中,可以使用天然的SLPI进行完全的氧化折叠和近乎定量的回收空气氧化而无需添加任何硫醇催化剂或氧化还原剂,这种现象尚未与其他二硫化物蛋白一起观察到。由于折叠中间体的不均一性和广泛重叠,无法鉴定主要中间体。天然SLPI和SLPI的六-二硫键变体的氧化折叠使我们能够提出我们的研究表明,SLPI的氧化折叠经历了一个,两个,三个,四个,五个,六个和六个不同的族群。七个二硫键异构体,包括两个天然类似物SLPI-6A和SLPI-7A作为过渡中间体。最后两个天然二硫键的形成导致SLPI-6A-> SLPI-7A-> N-SLPI的转化相对最重要的是,SLPI-6A和SLPI-7A的游离半胱氨酸还起硫醇催化剂的作用,促进了沿折叠路径积累的各种非天然中间体的二硫键改组。在不存在任何硫醇催化剂和氧化还原剂的情况下,可以实现N-SLPI的近乎定量的回收。对SLPI-6A和SLPI-7A的性能进行了研究,并将其与其他文献记载的氧化折叠动力学中间体进行了比较。还详细阐述了SLPI折叠的机理和SLPI的三维结构。

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