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Methods in Molecular Biology (Clifton, N.J.)|April 5, 2019
Stable Substructures in Proteins and How to Find Them Using Single-Molecule Force SpectroscopyKatarzyna Tych, Gabriel ŽoldákMethods in Molecular Biology (Clifton, N.J.)|September 5, 2022
Using Single-Molecule Optical Tweezers to Study the Conformational Cycle of the Hsp90 Molecular ChaperoneKatarzyna Tych, Matthias RiefIEEE Pulse|April 26, 2019
The Power of Light: Nobel Prize in Physics 2018Katarzyna Tych, Vera Katharina Hechtl, Subhamoy MandalElife|December 31, 2024
The known unknowns of the Hsp90 chaperoneLaura-Marie Silbermann, Benjamin Vermeer, Sonja Schmid, et al.Proceedings of the National Academy of Sciences of the United States of America|September 12, 2024
Blobs form during the single-file transport of proteins across nanoporesAdina Sauciuc, Jacob Whittaker, Matthijs Tadema, et al.Structure (London, England : 1993)|December 26, 2017
Folding and Domain Interactions of Three Orthologs of Hsp90 Studied by Single-Molecule Force SpectroscopyMarkus Jahn, Katarzyna Tych, Hannah Girstmair, et al.Protein Science : a Publication of the Protein Society|March 18, 2025
One-pot dual protein labeling for simultaneous mechanical and fluorescent readouts in optical tweezersLaura-Marie Silbermann, Maximilian Fottner, Ronald van der Meulen, et al.STAR Protocols|June 3, 2025
Protocol for sample preparation and single-molecule optical tweezers study of nanodisc-embedded ABC transporter OpuALyan van der Sleen, Marco van den Noort, Laura-Marie Silbermann, et al.Soft Matter|August 5, 2025
Home is where the lipids are: a comparison of MSP and DDDG nanodiscs for membrane protein researchKaori Nakao, Alexandra Steinhauser, Grégory Durand, et al.Nature Communications|August 11, 2019
The Hsp90 isoforms from S. cerevisiae differ in structure, function and client rangeHannah Girstmair, Franziska Tippel, Abraham Lopez, et al.Pageof 1