催产素
神经肽
纳米孔
激素
神经科学
神经肽Y受体
生物
心理学
材料科学
内分泌学
医学
内科学
纳米技术
受体
作者
N. Helge Meyer,Laura Ratinho,Sandra J. Greive,Laurent Bacri,Bénédicte Thiébot,Blasco Morozzo della Rocca,Mauro Chinappi,Juan Pelta,Benjamin Cressiot
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-07-29
标识
DOI:10.1021/acsnano.5c08031
摘要
Oxytocin, a neurohormone peptide, is implicated in various physiological processes, such as functions related to social behavior, reproduction, and emotional regulation. Recently, this peptide has been identified as a potential biomarker of human psychiatric disorders. Until now, no analytical tool has been able to routinely detect oxytocin and its variants, which can have different effects on their receptor binding and activity. This work uses an aerolysin nanopore and two mutants to detect oxytocin (OXT) and oxytocin-free acid (OXT-FA) differing by a single amine group. Several oxytocin variants were used to understand the effect of structure and conformational changes of the peptides on the electric signal. We identify two conformations in native conditions, allowing their discrimination. Nanopore mutants showed improved discrimination of these peptides. Molecular dynamics simulation allowed us to rationalize the competition between electroosmosis and electrophoresis on OXT and OXT-FA transport through aerolysin. This work demonstrates the potential for analyzing conformational biomarkers for diagnostic purposes.
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