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1
Sculpting conducting nanopore size and shape through protein design.
bioRxiv. 2023 Dec 20:2023.12.20.572500. doi: 10.1101/2023.12.20.572500.
2
Sculpting conducting nanopore size and shape through de novo protein design.
Science. 2024 Jul 19;385(6706):282-288. doi: 10.1126/science.adn3796. Epub 2024 Jul 18.
3
Rationale in Custom Design of Transmembrane β-Barrel Pores.
Methods Mol Biol. 2024;2778:345-366. doi: 10.1007/978-1-0716-3734-0_21.
4
Functionally Active Synthetic α-Helical Pores.
Acc Chem Res. 2024 Jul 2;57(13):1790-1802. doi: 10.1021/acs.accounts.4c00101. Epub 2024 Jun 14.
5
De novo design of transmembrane β barrels.
Science. 2021 Feb 19;371(6531). doi: 10.1126/science.abc8182.
6
Parametrically guided design of beta barrels and transmembrane nanopores using deep learning.
bioRxiv. 2025 Jan 6:2024.07.22.604663. doi: 10.1101/2024.07.22.604663.
7
Aerolysin Nanopore Electrochemistry.
Acc Chem Res. 2025 Feb 18;58(4):517-528. doi: 10.1021/acs.accounts.4c00630. Epub 2025 Jan 28.
8
Artificial beta-barrels.
Acc Chem Res. 2008 Oct;41(10):1354-65. doi: 10.1021/ar700229r. Epub 2008 Jul 1.
9
Biological nanopores for sensing applications.
Proteins. 2022 Oct;90(10):1786-1799. doi: 10.1002/prot.26308. Epub 2022 Feb 9.
10
Computational design of transmembrane pores.
Nature. 2020 Sep;585(7823):129-134. doi: 10.1038/s41586-020-2646-5. Epub 2020 Aug 26.

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2
Molecular Determinants of Current Blockade Produced by Peptide Transport Through a Nanopore.
ACS Nanosci Au. 2023 Nov 14;4(1):21-29. doi: 10.1021/acsnanoscienceau.3c00046. eCollection 2024 Feb 21.
3
Translocation of linearized full-length proteins through an engineered nanopore under opposing electrophoretic force.
Nat Biotechnol. 2024 Aug;42(8):1275-1281. doi: 10.1038/s41587-023-01954-x. Epub 2023 Sep 18.
4
Transient water wires mediate selective proton transport in designed channel proteins.
Nat Chem. 2023 Jul;15(7):1012-1021. doi: 10.1038/s41557-023-01210-4. Epub 2023 Jun 12.
5
An Engineered OmpG Nanopore with Displayed Peptide Motifs for Single-Molecule Multiplex Protein Detection.
Angew Chem Int Ed Engl. 2023 Feb 6;62(7):e202214566. doi: 10.1002/anie.202214566. Epub 2023 Jan 10.
6
ColabFold: making protein folding accessible to all.
Nat Methods. 2022 Jun;19(6):679-682. doi: 10.1038/s41592-022-01488-1. Epub 2022 May 30.
7
Single-Molecule Sensing of an Anticancer Therapeutic Protein-Protein Interaction Using the Chemically Modified OmpG Nanopore.
Anal Chem. 2022 May 31;94(21):7449-7454. doi: 10.1021/acs.analchem.1c04840. Epub 2022 May 18.
8
Nanopore-Based Protein Identification.
J Am Chem Soc. 2022 Feb 16;144(6):2716-2725. doi: 10.1021/jacs.1c11758. Epub 2022 Feb 4.
9
De novo design of a nanopore for single-molecule detection that incorporates a β-hairpin peptide.
Nat Nanotechnol. 2022 Jan;17(1):67-75. doi: 10.1038/s41565-021-01008-w. Epub 2021 Nov 22.
10
Highly accurate protein structure prediction with AlphaFold.
Nature. 2021 Aug;596(7873):583-589. doi: 10.1038/s41586-021-03819-2. Epub 2021 Jul 15.

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