Biophysical characterization of calcium-binding and modulatory-domain dynamics in a pentameric ligand-gated ion channel

Author:

Lycksell Marie1ORCID,Rovšnik Urška1ORCID,Hanke Anton12ORCID,Martel Anne3,Howard Rebecca J.1ORCID,Lindahl Erik14ORCID

Affiliation:

1. Department of Biochemistry and Biophysics, Science for Life Laboratory, Stockholm University, 10691 Stockholm, Sweden

2. Institute of Pharmacy and Molecular Biotechnology, Heidelberg University, 69120 Heidelberg, Germany

3. Large Scale Structures, Institut Laue-Langevin, 38042 Grenoble, France

4. Department of Applied Physics, Science for Life Laboratory, KTH Royal Institute of Technology, 10044Stockholm, Sweden

Abstract

Pentameric ligand-gated ion channels (pLGICs) perform electrochemical signal transduction in organisms ranging from bacteria to humans. Among the prokaryotic pLGICs, there is architectural diversity involving N-terminal domains (NTDs) not found in eukaryotic relatives, exemplified by the calcium-sensitive channel (DeCLIC) from a Desulfofustis deltaproteobacterium, which has an NTD in addition to the canonical pLGIC structure. Here, we have characterized the structure and dynamics of DeCLIC through cryoelectron microscopy (cryo-EM), small-angle neutron scattering (SANS), and molecular dynamics (MD) simulations. In the presence and absence of calcium, cryo-EM yielded structures with alternative conformations of the calcium-binding site. SANS profiles further revealed conformational diversity at room temperature beyond that observed in static structures, shown through MD to be largely attributable to rigid-body motions of the NTD relative to the protein core, with expanded and asymmetric conformations improving the fit of the SANS data. This work reveals the range of motion available to the DeCLIC NTD and calcium-binding site, expanding the conformational landscape of the pLGIC family. Further, these findings demonstrate the power of combining low-resolution scattering, high-resolution structural, and MD simulation data to elucidate interfacial interactions that are highly conserved in the pLGIC family.

Funder

Knut och Alice Wallenbergs Stiftelse

Vetenskapsrådet

EC | Erasmus+

Swedish e-Science Research Centre

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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