HS-AFM single-molecule structural biology uncovers basis of transporter wanderlust kinetics.

Atsushi Miyagi, Olga Boudker, Xiaoyu Wang, Yining Jiang, Biao Qiu, Simon Scheuring

Journal: Nature structural & molecular biology 2024;31(8):1286-1295

PMID: 38632360

Abstract

The Pyrococcus horikoshii amino acid transporter Glt revealed, like other channels and transporters, activity mode switching, previously termed wanderlust kinetics. Unfortunately, to date, the basis of these activity fluctuations is not understood, probably due to a lack of experimental tools that directly access the structural features of transporters related to their instantaneous activity. Here, we take advantage of high-speed atomic force microscopy, unique in providing simultaneous structural and temporal resolution, to uncover the basis of kinetic mode switching in proteins. We developed membrane extension membrane protein reconstitution that allows the analysis of isolated molecules. Together with localization atomic force microscopy, principal component analysis and hidden Markov modeling, we could associate structural states to a functional timeline, allowing six structures to be solved from a single molecule, and an inward-facing state, IFS, to be determined as a kinetic dead-end in the conformational landscape. The approaches presented on Glt are generally applicable and open possibilities for time-resolved dynamic single-molecule structural biology.

© 2024. The Author(s), under exclusive licence to Springer Nature America, Inc.

Address: Biochemistry and Structural Biology, Cell and Developmental Biology, and Molecular Biology Program, Weill Cornell Graduate School of Biomedical Sciences, New York, NY, USA.; Weill Cornell Medicine, Department of Anesthesiology, New York, NY, USA.; Weill Cornell Medicine, Department of Anesthesiology, New York, NY, USA.; Weill Cornell Medicine, Department of Physiology and Biophysics, New York, NY, USA.; Howard Hughes Medical Institute, Chevy Chase, MD, USA.; Weill Cornell Medicine, Department of Physiology and Biophysics, New York, NY, USA.; Howard Hughes Medical Institute, Chevy Chase, MD, USA.; Weill Cornell Medicine, Department of Anesthesiology, New York, NY, USA. [email protected].; Weill Cornell Medicine, Department of Physiology and Biophysics, New York, NY, USA. [email protected].

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