Functionally Active Synthetic α-Helical Pores

Smrithi Krishnan R, Neilah Firzan CA, and Kozhinjampara R. Mahendran (2024)
Accounts of Chemical Research     https://doi.org/10.1021/acs.accounts.4c00101

Conformational flexibility driving charge-selective substrate translocation across a bacterial transporter

Devika Vikraman, Bibhab Bandhu Majumdar, Sharavanakkumar SK, Conrad Weichbrodt, Niels Fertig, Mathias Winterhalter, Jagannath Mondal and Kozhinjampara R. Mahendran (2024)
Chemical Science     https://doi.org/10.1039/D4SC00345D

Sensing PEGylated Peptide Conformations Using a Protein Nanopore

Remya Satheesan, Devika Vikraman, Parvathy Jayan, Vinesh Vijayan, Catalin Chimerel, and Kozhinjampara R. Mahendran (2023)
Nano Letters     doi.org/10.1021/acs.nanolett.3c03247

Synthetic α-Helical Nanopore Reactor for Chemical Sensing

Anjali Devi Das, Vidhu K, Smitha Devi S, and Kozhinjampara R Mahendran (2023)
JACS Au     doi.org/10.1021/jacsau.3c00221

Electrostatic Filtering of Polypeptides Through Membrane Protein Pores

Devika Vikraman, Smrithi Krishnan R, Remya Satheesan, Anjali Devi Das, Kozhinjampara R Mahendran (2022)
Chemistry: An Asian Journal     doi.org/10.1002/asia.202200891

Assembly of transmembrane pores from mirror-image peptides

Smrithi Krishnan R, Kalyanashis Jana, Amina H. Shaji, Karthika S. Nair, Anjali Devi Das, Devika Vikraman, Harsha Bajaj, Ulrich Kleinekathöfer & Kozhinjampara R. Mahendran (2022)
Nature Communications     doi.org/10.1038/s41467-022-33155-6

Selective Translocation of Cyclic Sugars through Dynamic Bacterial Transporter.

Devika Vikraman, Remya Satheesan, Mangaiyarkarasi Rajendran, Nisha Asok Kumar, John Bernet Johnson, Smrithi Krishnan R, and Kozhinjampara R. Mahendran (2022)
ACS Sensors     doi.org/10.1021/acssensors.2c00943

Assembly of alpha-helical transmembrane pores through an intermediate state

Neethu Puthumadathil, Smrithi Krishnan R, Greeshma S Nair, Kozhinjampara R Mahendran(2022)
Nanoscale     doi.org/10.1039/D2NR00556E

Designed alpha-helical barrels for charge-selective peptide translocation.

Krishnan R S, Puthumadathil N, Shaji A, Kumar KS, Mohan G, Mahendran KR* (2020)
Chemical Science     https://doi.org/10.1039/D0SC04856A

Nanopore Passport Control for Substrate Specific Translocation.

Vikraman D, Satheesan R, Kumar KS, Mahendran KR* (2020)
*Corresponding author
ACS Nano     doi: 10.1021/acsnano.9b09408.

Detecting the structural assembly pathway of human antimicrobial peptide pores at single-channel level.

Puthumadathil N, Jayasree P, Kumar KS, Nampoothiri MN, Bajaj H, Mahendran KR*. (2019) *Corresponding author
Biomaterials Science     doi: 10.1039/C9BM00181F.

Autonomously Assembled Synthetic Transmembrane Peptide Pore.

Krishnan R S, Satheesan R, Puthumadathil N, Kumar KS, Jayasree P, Mahendran KR*. (2019) *Corresponding author
Journal of the American Chemical Society     doi: 10.1021/jacs.8b09973.

Controlling Interactions of Cyclic Oligosaccharides with Hetero-oligomeric Nanopores: Kinetics of Binding and Release at the Single-Molecule Level.

Remya S, Smrithi Krishnan R, Mahendran KR.(2018)
Small     doi.org/10.1002/smll.201801192

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