Molecular insights into lipid-assisted Ca(2+) regulation of the TRP channel Polycystin-2.

Polycystin-2 (PC2), a calcium-activated cation TRP channel, is involved in diverse Ca(2+) signaling pathways. Malfunctioning Ca(2+) regulation in PC2 causes autosomal-dominant polycystic kidney disease. Here we report two cryo-EM structures of distinct channel states of full-length human PC2 in comp...

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Main Authors: Wilkes, M, Madej, M, Kreuter, L, Rhinow, D, Heinz, V, De Sanctis, S, Ruppel, S, Richter, R, Joos, F, Grieben, M, Pike, A, Huiskonen, J, Carpenter, E, Kühlbrandt, W, Witzgall, R, Ziegler, C
Format: Journal article
Language:English
Published: Nature Publishing Group 2017
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author Wilkes, M
Madej, M
Kreuter, L
Rhinow, D
Heinz, V
De Sanctis, S
Ruppel, S
Richter, R
Joos, F
Grieben, M
Pike, A
Huiskonen, J
Carpenter, E
Kühlbrandt, W
Witzgall, R
Ziegler, C
author_facet Wilkes, M
Madej, M
Kreuter, L
Rhinow, D
Heinz, V
De Sanctis, S
Ruppel, S
Richter, R
Joos, F
Grieben, M
Pike, A
Huiskonen, J
Carpenter, E
Kühlbrandt, W
Witzgall, R
Ziegler, C
author_sort Wilkes, M
collection OXFORD
description Polycystin-2 (PC2), a calcium-activated cation TRP channel, is involved in diverse Ca(2+) signaling pathways. Malfunctioning Ca(2+) regulation in PC2 causes autosomal-dominant polycystic kidney disease. Here we report two cryo-EM structures of distinct channel states of full-length human PC2 in complex with lipids and cations. The structures reveal conformational differences in the selectivity filter and in the large exoplasmic domain (TOP domain), which displays differing N-glycosylation. The more open structure has one cation bound below the selectivity filter (single-ion mode, PC2SI), whereas multiple cations are bound along the translocation pathway in the second structure (multi-ion mode, PC2MI). Ca(2+) binding at the entrance of the selectivity filter suggests Ca(2+) blockage in PC2MI, and we observed density for the Ca(2+)-sensing C-terminal EF hand in the unblocked PC2SI state. The states show altered interactions of lipids with the pore loop and TOP domain, thus reflecting the functional diversity of PC2 at different locations, owing to different membrane compositions.
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spelling oxford-uuid:d32cbacd-4847-45f8-a08a-d94a3efe58d32022-03-27T08:09:34ZMolecular insights into lipid-assisted Ca(2+) regulation of the TRP channel Polycystin-2.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d32cbacd-4847-45f8-a08a-d94a3efe58d3EnglishSymplectic Elements at OxfordNature Publishing Group2017Wilkes, MMadej, MKreuter, LRhinow, DHeinz, VDe Sanctis, SRuppel, SRichter, RJoos, FGrieben, MPike, AHuiskonen, JCarpenter, EKühlbrandt, WWitzgall, RZiegler, CPolycystin-2 (PC2), a calcium-activated cation TRP channel, is involved in diverse Ca(2+) signaling pathways. Malfunctioning Ca(2+) regulation in PC2 causes autosomal-dominant polycystic kidney disease. Here we report two cryo-EM structures of distinct channel states of full-length human PC2 in complex with lipids and cations. The structures reveal conformational differences in the selectivity filter and in the large exoplasmic domain (TOP domain), which displays differing N-glycosylation. The more open structure has one cation bound below the selectivity filter (single-ion mode, PC2SI), whereas multiple cations are bound along the translocation pathway in the second structure (multi-ion mode, PC2MI). Ca(2+) binding at the entrance of the selectivity filter suggests Ca(2+) blockage in PC2MI, and we observed density for the Ca(2+)-sensing C-terminal EF hand in the unblocked PC2SI state. The states show altered interactions of lipids with the pore loop and TOP domain, thus reflecting the functional diversity of PC2 at different locations, owing to different membrane compositions.
spellingShingle Wilkes, M
Madej, M
Kreuter, L
Rhinow, D
Heinz, V
De Sanctis, S
Ruppel, S
Richter, R
Joos, F
Grieben, M
Pike, A
Huiskonen, J
Carpenter, E
Kühlbrandt, W
Witzgall, R
Ziegler, C
Molecular insights into lipid-assisted Ca(2+) regulation of the TRP channel Polycystin-2.
title Molecular insights into lipid-assisted Ca(2+) regulation of the TRP channel Polycystin-2.
title_full Molecular insights into lipid-assisted Ca(2+) regulation of the TRP channel Polycystin-2.
title_fullStr Molecular insights into lipid-assisted Ca(2+) regulation of the TRP channel Polycystin-2.
title_full_unstemmed Molecular insights into lipid-assisted Ca(2+) regulation of the TRP channel Polycystin-2.
title_short Molecular insights into lipid-assisted Ca(2+) regulation of the TRP channel Polycystin-2.
title_sort molecular insights into lipid assisted ca 2 regulation of the trp channel polycystin 2
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