Detection of Intrinsically Disordered Peptides by Biological Nanopore

Author:

He Pinyao12ORCID,Wang Haiyan123ORCID,Zhu Anqi12,Zhang Zhenyu12,Sha Jingjie12,Ni Zhonghua12,Chen Yunfei12ORCID

Affiliation:

1. School of Mechanical Engineering Southeast University Nanjing 211189 China

2. Jiangsu Key Laboratory for Design and Manufacture of Micro-nano Biomedical Instruments Southeast University Nanjing 211189 China

3. Engineering Research Center of New Light Sources Technology and Equipment Ministry of Education Southeast University Nanjing 211189 China

Abstract

AbstractIntrinsically disordered protein regions (IDPRs) are pivotal in regulation of transcription and facilitation of signal transduction. Because of their multiple conformational states of structure, characterizing the highly flexible structures of IDPRs becomes challenging. Herein, we employed the wild‐type (WT) aerolysin nanopore as a real‐time biosensor for identification and monitoring of long peptides containing IDPRs. This sensor successfully identified three intrinsically disordered peptides, with the lengths up to 43 amino acids, by distinguishing the unique signatures of blockade current and duration time. The analysis of the binding constant revealed that interactions between the nanopore and peptides are critical for peptide translocation, which suggests that mechanisms beyond mere volume exclusion. Furthermore, we were able to compare the conformational stabilities of various IDPRs by examining the detailed current traces of blockade events. Our approach can detect the conformational changes of IDPR in a confined nanopore space. These insights broaden the understanding of peptide structural changes. The nanopore biosensor showed the potential to study the conformations change of IDPRs, IDPRs transmembrane interactions, and protein drug discovery.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

Wiley

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