The Program in Chemical Biology, Department of Physiology and Pharmacology, Oregon Health and Science University, 3181 SW Sam Jackson Park Road, Portland, Oregon 97239, USA.
Biochemistry. 2010 Jun 1;49(21):4450-6. doi: 10.1021/bi100413z.
In this contribution, we describe the semisynthesis of NaK, a bacterial nonselective cation channel. In the semisynthesis, the NaK polypeptide is assembled from a recombinantly expressed thioester peptide and a chemically synthesized peptide using the native chemical ligation reaction. We describe a temporary tagging strategy for the purification of the hydrophobic synthetic peptide and demonstrate the efficient ligation of the synthetic peptide with the recombinant peptide thioester to form the semisynthetic NaK polypeptide. Following assembly, the NaK polypeptide is folded in vitro to the native state using lipid vesicles. Functional characterization of the folded semisynthetic NaK channels indicates that it is functionally similar to the wild-type protein. We used semisynthesis to substitute aspartate 66 in the selectivity filter region of the NaK channel with the unnatural amino acids homoserine and cysteine sulfonic acid. Functional analysis of these mutants suggests that the presence of a negatively charged residue in the vicinity of the ion binding sites is necessary for optimal flux of ions through the NaK channel.
在本研究中,我们描述了 NaK 的半合成,这是一种细菌非选择性阳离子通道。在半合成过程中,使用天然化学连接反应,从重组表达的硫酯肽和化学合成肽组装 NaK 多肽。我们描述了一种临时标记策略,用于纯化疏水性合成肽,并证明了合成肽与重组肽硫酯的有效连接,从而形成半合成 NaK 多肽。组装后,使用脂质体将 NaK 多肽在体外折叠成天然状态。折叠的半合成 NaK 通道的功能特征表明,它在功能上与野生型蛋白相似。我们使用半合成方法将 NaK 通道选择性滤器区域中的天冬氨酸 66 替换为非天然氨基酸高丝氨酸和半胱氨酸磺酸。对这些突变体的功能分析表明,在离子结合位点附近存在带负电荷的残基对于离子通过 NaK 通道的最佳通量是必需的。