Displacement of the Na + /K + pump's transmembrane domains demonstrates conserved conformational changes in P-type 2 ATPases

Cellular survival requires the ion gradients built by the Na /K pump, an ATPase that alternates between two major conformations (E1 and E2). Here we use state-specific engineered-disulfide cross-linking to demonstrate that transmembrane segment 2 (M2) of the pump's α-subunit moves in directions...

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Published inProceedings of the National Academy of Sciences - PNAS Vol. 118; no. 8
Main Authors Young, Victoria C, Artigas, Pablo
Format Journal Article
LanguageEnglish
Published United States National Academy of Sciences 23.02.2021
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Summary:Cellular survival requires the ion gradients built by the Na /K pump, an ATPase that alternates between two major conformations (E1 and E2). Here we use state-specific engineered-disulfide cross-linking to demonstrate that transmembrane segment 2 (M2) of the pump's α-subunit moves in directions that are inconsistent with distances observed in existing crystal structures of the Na /K pump in E1 and E2. We characterize this movement with voltage-clamp fluorometry in single-cysteine mutants. Most mutants in the M1-M2 loop produced state-dependent fluorescence changes upon labeling with tetramethylrhodamine-6-maleimide (TMRM), which were due to quenching by multiple endogenous tryptophans. To avoid complications arising from multiple potential quenchers, we analyzed quenching of TMRM conjugated to R977C (in the static M9-M10 loop) by tryptophans introduced, one at a time, in M1-M2. This approach showed that tryptophans introduced in M2 quench TMRM only in E2, with D126W and L130W on the same helix producing the largest fluorescence changes. These observations indicate that M2 moves outward as Na is deoccluded from the E1 conformation, a mechanism consistent with cross-linking results and with proposals for other P-type 2 ATPases.
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Author contributions: V.C.Y. and P.A. designed research and collected and analyzed data; and P.A. wrote the paper.
Edited by Francisco Bezanilla, The University of Chicago, Chicago, IL, and approved January 11, 2021 (received for review September 13, 2020)
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.2019317118