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Semisynthetic Nanoreactor for Reversible Single-Molecule Covalent Chemistry

机译:可逆单分子共价化学的半合成纳米反应器

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摘要

Protein engineering has been used to remodel pores for applications in biotechnology. For example, the heptameric alpha-hemolysin pore (alpha HL) has been engineered to form a nanoreactor to study covalent chemistry at the single -molecule level. Previous work has been confined largely to the chemistry of cysteine side chains or, in one instance, to an irreversible reaction of an unnatural amino acid side chain bearing a terminal alkyne. Here, we present four different alpha HL pores obtained by coupling either two or three fragments by native chemical ligation (NCL). The synthetic alpha HL monomers were folded and incorporated into heptameric pores. The functionality of the pores was validated by hemolysis assays and by single-channel current recording. By using NCL to introduce a ketone amino acid, the nanoreactor approach was extended to an investigation of reversible covalent chemistry on an unnatural side chain at the single -molecule level.
机译:蛋白质工程已被用于重塑毛孔,以用于生物技术。例如,七聚体α-溶血素孔(αHL)已被工程化以形成纳米反应器,以研究单分子水平的共价化学。先前的工作主要限于半胱氨酸侧链的化学,或者在一种情况下,限于带有末端炔的非天然氨基酸侧链的不可逆反应。在这里,我们介绍了通过自然化学连接(NCL)耦合两个或三个片段获得的四个不同的αHL孔。将合成的αHL单体折叠并掺入七聚体孔中。通过溶血测定和单通道电流记录验证了孔的功能。通过使用NCL引入酮氨基酸,纳米反应器方法扩展到了单分子水平非天然侧链上可逆共价化学的研究。

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