A generalizable nanopore sensor for highly specific protein detection at single-molecule precision

Sensitive and accurate approaches for protein detection have many potential applications. Here the authors show how engineered protein nanopore sensors, consisting of a monobody fused to a single-polypeptide nanopore, can be used for highly specific detection of proteins in complex biofluids.

Bibliographic Details
Main Authors: Mohammad Ahmad, Jeung-Hoi Ha, Lauren A. Mayse, Maria F. Presti, Aaron J. Wolfe, Kelsey J. Moody, Stewart N. Loh, Liviu Movileanu
Format: Article
Language:English
Published: Nature Portfolio 2023-03-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-023-36944-9
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author Mohammad Ahmad
Jeung-Hoi Ha
Lauren A. Mayse
Maria F. Presti
Aaron J. Wolfe
Kelsey J. Moody
Stewart N. Loh
Liviu Movileanu
author_facet Mohammad Ahmad
Jeung-Hoi Ha
Lauren A. Mayse
Maria F. Presti
Aaron J. Wolfe
Kelsey J. Moody
Stewart N. Loh
Liviu Movileanu
author_sort Mohammad Ahmad
collection DOAJ
description Sensitive and accurate approaches for protein detection have many potential applications. Here the authors show how engineered protein nanopore sensors, consisting of a monobody fused to a single-polypeptide nanopore, can be used for highly specific detection of proteins in complex biofluids.
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spelling doaj.art-1f2b1191daee43b2bc50ec7144ff89b92023-03-22T11:43:52ZengNature PortfolioNature Communications2041-17232023-03-0114111410.1038/s41467-023-36944-9A generalizable nanopore sensor for highly specific protein detection at single-molecule precisionMohammad Ahmad0Jeung-Hoi Ha1Lauren A. Mayse2Maria F. Presti3Aaron J. Wolfe4Kelsey J. Moody5Stewart N. Loh6Liviu Movileanu7Department of Physics, Syracuse UniversityDepartment of Biochemistry and Molecular Biology, State University of New York-Upstate Medical UniversityDepartment of Physics, Syracuse UniversityDepartment of Biochemistry and Molecular Biology, State University of New York-Upstate Medical UniversityDepartment of Physics, Syracuse UniversityDepartment of Physics, Syracuse UniversityDepartment of Biochemistry and Molecular Biology, State University of New York-Upstate Medical UniversityDepartment of Physics, Syracuse UniversitySensitive and accurate approaches for protein detection have many potential applications. Here the authors show how engineered protein nanopore sensors, consisting of a monobody fused to a single-polypeptide nanopore, can be used for highly specific detection of proteins in complex biofluids.https://doi.org/10.1038/s41467-023-36944-9
spellingShingle Mohammad Ahmad
Jeung-Hoi Ha
Lauren A. Mayse
Maria F. Presti
Aaron J. Wolfe
Kelsey J. Moody
Stewart N. Loh
Liviu Movileanu
A generalizable nanopore sensor for highly specific protein detection at single-molecule precision
Nature Communications
title A generalizable nanopore sensor for highly specific protein detection at single-molecule precision
title_full A generalizable nanopore sensor for highly specific protein detection at single-molecule precision
title_fullStr A generalizable nanopore sensor for highly specific protein detection at single-molecule precision
title_full_unstemmed A generalizable nanopore sensor for highly specific protein detection at single-molecule precision
title_short A generalizable nanopore sensor for highly specific protein detection at single-molecule precision
title_sort generalizable nanopore sensor for highly specific protein detection at single molecule precision
url https://doi.org/10.1038/s41467-023-36944-9
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