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TitleDetermining the structure of the bacterial voltage-gated sodium channel NaChBac embedded in liposomes by cryo electron tomography and subtomogram averaging.
Journal, issue, pagesSci Rep, Vol. 13, Issue 1, Page 11523, Year 2023
Publish dateJul 17, 2023
AuthorsShih-Ying Scott Chang / Patricia M Dijkman / Simon A Wiessing / Misha Kudryashev /
PubMed AbstractVoltage-gated sodium channels shape action potentials that propagate signals along cells. When the membrane potential reaches a certain threshold, the channels open and allow sodium ions to flow ...Voltage-gated sodium channels shape action potentials that propagate signals along cells. When the membrane potential reaches a certain threshold, the channels open and allow sodium ions to flow through the membrane depolarizing it, followed by the deactivation of the channels. Opening and closing of the channels is important for cellular signalling and regulates various physiological processes in muscles, heart and brain. Mechanistic insights into the voltage-gated channels are difficult to achieve as the proteins are typically extracted from membranes for structural analysis which results in the loss of the transmembrane potential that regulates their activity. Here, we report the structural analysis of a bacterial voltage-gated sodium channel, NaChBac, reconstituted in liposomes under an electrochemical gradient by cryo electron tomography and subtomogram averaging. We show that the small channel, most of the residues of which are embedded in the membrane, can be localized using a genetically fused GFP. GFP can aid the initial alignment to an average resulting in a correct structure, but does not help for the final refinement. At a moderate resolution of ˜16 Å the structure of NaChBac in an unrestricted membrane bilayer is 10% wider than the structure of the purified protein previously solved in nanodiscs, suggesting the potential movement of the peripheral voltage-sensing domains. Our study explores the limits of structural analysis of membrane proteins in membranes.
External linksSci Rep / PubMed:37460541 / PubMed Central
MethodsEM (subtomogram averaging)
Resolution16.3 Å
Structure data

EMDB-17163: Structure of the Bacterial Voltage-Gated Sodium Channel NaChBac in Liposomes
Method: EM (subtomogram averaging) / Resolution: 16.3 Å

Source
  • Halalkalibacterium halodurans C-125 (bacteria)

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