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Protein co-translocational unfolding depends on the direction of pulling

机译:蛋白质共移位的展开取决于拉动的方向

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摘要

Protein unfolding and translocation through pores occurs during trafficking between organelles, protein degradation and bacterial toxin delivery. In vivo, co-translocational unfolding can be affected by the end of the polypeptide that is threaded into the pore first. Recently, we have shown that co-translocational unfolding can be followed in a model system at the single-molecule level, thereby unravelling molecular steps and their kinetics. Here, we show that the unfolding kinetics of the model substrate thioredoxin, when pulled through an α-haemolysin pore, differ markedly depending on whether the process is initiated from the C terminus or the N terminus. Further, when thioredoxin is pulled from the N terminus, the unfolding pathway bifurcates: some molecules finish unfolding quickly, while others finish ~100 times slower. Our findings have important implications for the understanding of biological unfolding mechanisms and in the application of nanopore technology for the detection of proteins and their modifications.
机译:在细胞器之间的运输,蛋白质降解和细菌毒素传递过程中,蛋白质会通过孔展开和转运。在体内,共易位解折叠会受到首先穿入孔中的多肽末端的影响。最近,我们已经表明可以在单分子水平上在模型系统中进行共易位展开,从而揭示分子步骤及其动力学。在这里,我们显示了模型底物硫氧还蛋白的展开动力学,当它穿过α-溶血素孔时,取决于该过程是从C端还是N端引发的,其显着不同。此外,当从N末端拉出硫氧还蛋白时,展开路径会分叉:一些分子迅速完成展开,而另一些慢了约100倍。我们的发现对理解生物学展开机制以及将纳米孔技术用于蛋白质及其修饰的检测具有重要意义。

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