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High Resolution Physical Characterization of Single Metallic Nanoparticles
Published on: June 28, 2019
Discriminating single-amino acid differences and post-translational modifications in negatively charged peptides with
Liting Kang1,2, Linting Wang2, Xuefei Fan2
1Key Laboratory of Spine and Spinal Cord Injury Repair and Regeneration of Ministry of Education,, Tongji Hospital affiliated to Tongji University, Frontier Science Center for Stem Cell Research, School of Life Sciences and Technology, Tongji University, Shanghai, 200092, China.
Abstract:
Effective and precise detection of peptides and their post-translational modifications (PTMs) is crucial for biomedical research but remains technically challenging. Here, we present a nanopore sensing strategy that enables label-free analysis of negatively charged peptides. By introducing arginine residues into the nanopore and using amino-cyclodextrin as a molecular adaptor, the system enables unambiguous discrimination of short negatively charged homopeptides differing by only a single residue. Building on this capability, the platform further demonstrates high sensitivity for detecting representative PTMs, including acetylation, lactylation, and phosphorylation, introduced on a negatively charged peptide scaffold. Notably, the system could also analyze fragments generated by proteolytic digestion of full-length proteins, underscoring its potential for accurate protein identification. This work offers an accessible and reliable strategy to characterize peptide variants with single-amino acid differences and PTMs, which may facilitate future applications in peptide biomarker detection and protein sequence analysis.

