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用于单分子传感的异源寡聚蛋白孔道

Hetero-Oligomeric Protein Pores for Single-Molecule Sensing.

作者信息

Satheesan Remya, Janeena Asuma, Mahendran Kozhinjampara R

机构信息

Membrane Biology Laboratory, Rajiv Gandhi Centre for Biotechnology, Transdisciplinary Research Program, Thiruvananthapuram, 695014, India.

出版信息

J Membr Biol. 2024 Dec 19. doi: 10.1007/s00232-024-00331-2.

Abstract

Protein nanopores are emerging as versatile single-molecule sensors with broad applications in DNA and protein sequencing. However, their narrow size restricts the range of detectable analytes, necessitating the development of advanced nanopores to broaden their applications in biotechnology. This review highlights a natural hetero-oligomeric porin, Nocardia farcinica porin AB (NfpAB), based on the Gram-positive mycolata, Nocardia farcinica. The pore comprises two subunits, NfpA and NfpB, that combine to form a stable structure with a unique pore geometry, asymmetrical shape, and charge distribution. Single-channel electrical recordings demonstrate that NfpAB forms stable, high-conductance channels suitable for sensing charged molecules, particularly cationic polypeptides and cyclic sugars. This pore offers advantages such as enhanced control over molecular interactions due to densely crowded charged residues, thus allowing the quantification of voltage-dependent translocation kinetics. Notably, NfpAB contains intrinsic cysteines in the pore lumen, providing an accessible site for thiol-based reactions and attachment of molecular adapters. We propose that such hetero-oligomeric pores will be effective for several applications in nanopore technology for biomolecular detection and sequencing.

摘要

蛋白质纳米孔正成为一种多功能单分子传感器,在DNA和蛋白质测序中有着广泛应用。然而,其狭窄的尺寸限制了可检测分析物的范围,因此需要开发先进的纳米孔以拓宽其在生物技术中的应用。本综述重点介绍了一种基于革兰氏阳性分枝杆菌——诺卡氏菌的天然异源寡聚孔蛋白,诺卡氏菌皮疽亚种孔蛋白AB(NfpAB)。该孔由两个亚基NfpA和NfpB组成,它们结合形成一个具有独特孔几何形状、不对称形状和电荷分布的稳定结构。单通道电记录表明,NfpAB形成了稳定的高电导通道,适用于检测带电分子,特别是阳离子多肽和环状糖。由于密集排列的带电残基,该孔具有增强对分子相互作用控制等优势,从而能够对电压依赖性转运动力学进行量化。值得注意的是,NfpAB在孔腔内含有内在的半胱氨酸,为基于硫醇的反应和分子适配器的连接提供了一个可及位点。我们认为,这种异源寡聚孔在纳米孔技术用于生物分子检测和测序的多种应用中将是有效的。

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