Coordination of bilayer properties by an inward-rectifier K+ channel is a cooperative process driven by protein-lipid interaction

Publication date

2024-06

Authors

van Aalst, Evan J.
Yekefallah, Maryam
van Beekveld, Roy A.M.ISNI 0000000512624467
Breukink, EefjanISNI 0000000392861563
Weingarth, M.H.ISNI 0000000358154718
Wylie, Benjamin J.

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

Physical properties of biological membranes directly or indirectly govern biological processes. Yet, the interplay between membrane and integral membrane proteins is difficult to assess due to reciprocal effects between membrane proteins, individual lipids, and membrane architecture. Using solid-state NMR (SSNMR) we previously showed that KirBac1.1, a bacterial Inward-Rectifier K+ channel, nucleates bilayer ordering and microdomain formation through tethering anionic lipids. Conversely, these lipids cooperatively bind cationic residues to activate the channel and initiate K+ flux. The mechanistic details governing the relationship between cooperative lipid loading and bilayer ordering are, however, unknown. To investigate, we generated KirBac1.1 samples with different concentrations of 13C-lableded phosphatidyl glycerol (PG) lipids and acquired a full suite of SSNMR 1D temperature series experiments using the ordered all-trans (AT) and disordered trans-gauche (TG) acyl conformations as markers of bilayer dynamics. We observed increased AT ordered signal, decreased TG disordered signal, and increased bilayer melting temperature with increased PG concentration. Further, we identified cooperativity between ordering and direct binding of PG lipids, indicating KirBac1.1-driven bilayer ordering and microdomain formation is a classically cooperative Hill-type process driven by and predicated upon direct binding of PG lipids. Our results provide unique mechanistic insight into how proteins and lipids in tandem contribute to supramolecular bilayer heterogeneity in the lipid membrane.

Keywords

Cooperativity, Kir Channel, KirBac1.1, Lipid Allostery, Phase Transition, SSNMR, Structural Biology

Citation

van Aalst, E J, Yekefallah, M, A. M. van Beekveld, R, Breukink, E, Weingarth, M & Wylie, B J 2024, 'Coordination of bilayer properties by an inward-rectifier K + channel is a cooperative process driven by protein-lipid interaction', Journal of Structural Biology: X, vol. 9, 100101. https://doi.org/10.1016/j.yjsbx.2024.100101