J 2022

TTYH family members form tetrameric complexes at the cell membrane

MELVIN, Emelia, Zuzana KALANINOVA, Elia SHLUSH, Petr MAN, Moshe GILADI et. al.

Základní údaje

Originální název

TTYH family members form tetrameric complexes at the cell membrane

Autoři

MELVIN, Emelia, Zuzana KALANINOVA, Elia SHLUSH, Petr MAN, Moshe GILADI a Yoni HAITIN

Vydání

Communications Biology, Nature Research, 2022, 2399-3642

Další údaje

Jazyk

angličtina

Typ výsledku

Článek v odborném periodiku

Obor

10600 1.6 Biological sciences

Stát vydavatele

Německo

Utajení

není předmětem státního či obchodního tajemství

Odkazy

Impakt faktor

Impact factor: 5.900

Kód RIV

RIV/00216224:14740/22:00128773

Organizační jednotka

Středoevropský technologický institut

UT WoS

000847709600002

Klíčová slova anglicky

Animals; Cell Membrane; Detergents; Hydrogen Deuterium Exchange-Mass Spectrometry; Mice

Štítky

Příznaky

Mezinárodní význam, Recenzováno
Změněno: 28. 2. 2023 19:08, Mgr. Pavla Foltynová, Ph.D.

Anotace

V originále

Single-molecule microscopy and in situ cross-linking show that the conserved Tweety homolog (TTYH) proteins have an innate tetrameric organization at the cell membrane. The conserved Tweety homolog (TTYH) family consists of three paralogs in vertebrates, displaying a ubiquitous expression pattern. Although considered as ion channels for almost two decades, recent structural and functional analyses refuted this role. Intriguingly, while all paralogs shared a dimeric stoichiometry following detergent solubilization, their structures revealed divergence in their relative subunit orientation. Here, we determined the stoichiometry of intact mouse TTYH (mTTYH) complexes in cells. Using cross-linking and single-molecule fluorescence microscopy, we demonstrate that mTTYH1 and mTTYH3 form tetramers at the plasma membrane, stabilized by interactions between their extracellular domains. Using blue-native PAGE, fluorescence-detection size-exclusion chromatography, and hydrogen/deuterium exchange mass spectrometry (HDX-MS), we reveal that detergent solubilization results in tetramers destabilization, leading to their dissolution into dimers. Moreover, HDX-MS demonstrates that the extracellular domains are stabilized in the context of the tetrameric mTTYH complex. Together, our results expose the innate tetrameric organization of TTYH complexes at the cell membrane. Future structural analyses of these assemblies in native membranes are required to illuminate their long-sought cellular function.

Návaznosti

90127, velká výzkumná infrastruktura
Název: CIISB II