使用静电不对称的纳米孔识别单个氨基酸和位置异构体
Jiajun Wang1, Jigneshkumar Dahyabhai Prajapati2, Fan Gao1
1State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.
Journal of the American Chemical Society
|August 11, 2022
概括
这项研究使用OmpF细菌通道通过分析离子电流波动来区分性氨基酸. 这种新的方法可以区分单个氨基酸异构体,进步分析和蛋白质测序.
科学领域:
- 生物化学
- 生物物理
- 分析化学
背景情况:
- 在生物系统和化学反应中,
- 鉴定氨基酸的L/D异构是由于技术限制而具有挑战性的.
- 一种来自大肠杆菌的通道蛋白OmpF具有静电不对称的收缩区域.
研究的目的:
- 开发一种在单个中区分性氨基酸的方法.
- 利用OmpF通道的独特特性进行同位素识别.
- 为了证明单分子蛋白质测序的潜力.
主要方法:
- 使用大肠杆菌的OmpF膜通道.
- 分析由性氨基酸侧链方向引起的明显的离子电流波动.
- 应用统计分析对离子电流变化进行异构体区分.
主要成果:
- 根据不同的离子电流模式,在单个中成功区分了性氨基酸.
- 能够区分与疾病相关的,如β-粉样蛋白和药物分子,如伊卡蒂班特及其性突变物.
- 展示了一种优于质谱的方法来区分特定的性异构体.
结论:
- OmpF的非对称收缩区域提供了一种新的性感应机制.
- 这种技术可以识别单个氨基酸及其中的位置.
- 这些发现为单分子蛋白质测序和奇拉分析开辟了道路.
相关概念视频
¹H NMR Chemical Shift Equivalence: Enantiotopic and Diastereotopic Protons
1.9K
Replacing each alpha-hydrogen in chloroethane by bromine (or a different functional group) yields a pair of enantiomers. Such protons are called prochiral or enantiotopic and are related by a mirror plane. Enantiotopic protons are chemically equivalent in an achiral environment. Because most proton NMR spectra are recorded using achiral solvents, enantiotopic hydrogens yield a single signal.
In chiral compounds such as 2-butanol, replacing the methylene hydrogens at C3 produces a pair of...
In chiral compounds such as 2-butanol, replacing the methylene hydrogens at C3 produces a pair of...
1.9K
Chirality at Nitrogen, Phosphorus, and Sulfur
5.9K
Chirality is most prevalent in carbon-based tetrahedral compounds, but this important facet of molecular symmetry extends to sp3-hybridized nitrogen, phosphorus and sulfur centers, including trivalent molecules with lone pairs. Here, the lone pair behaves as a functional group in addition to the other three substituents to form an analogous tetrahedral center that can be chiral.
A consequence of chirality is the need for enantiomeric resolution. While this is theoretically possible for all...
A consequence of chirality is the need for enantiomeric resolution. While this is theoretically possible for all...
5.9K
Capillary Electrophoresis: Applications
518
Capillary electrophoretic separations offer various modes, each with unique applications. These modes include capillary zone electrophoresis, capillary gel electrophoresis, capillary array electrophoresis, capillary isoelectric focusing, capillary isotachophoresis, micellar electrokinetic chromatography, and capillary electrochromatography.
Capillary zone electrophoresis (CZE) separates ionic components based on their electrophoretic mobility. It has been used to separate proteins, amino acids,...
Capillary zone electrophoresis (CZE) separates ionic components based on their electrophoretic mobility. It has been used to separate proteins, amino acids,...
518


