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Structural basis for the activation of the lipid scramblase TMEM16F.


ABSTRACT: TMEM16F, a member of the conserved TMEM16 family, plays a central role in the initiation of blood coagulation and the fusion of trophoblasts. The protein mediates passive ion and lipid transport in response to an increase in intracellular Ca2+. However, the mechanism of how the protein facilitates both processes has remained elusive. Here we investigate the basis for TMEM16F activation. In a screen of residues lining the proposed site of conduction, we identify mutants with strongly activating phenotype. Structures of these mutants determined herein by cryo-electron microscopy show major rearrangements leading to the exposure of hydrophilic patches to the membrane, whose distortion facilitates lipid diffusion. The concomitant opening of a pore promotes ion conduction in the same protein conformation. Our work has revealed a mechanism that is distinct for this branch of the family and that will aid the development of a specific pharmacology for a promising drug target.

SUBMITTER: Arndt M 

PROVIDER: S-EPMC9637102 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Structural basis for the activation of the lipid scramblase TMEM16F.

Arndt Melanie M   Alvadia Carolina C   Straub Monique S MS   Clerico Mosina Vanessa V   Paulino Cristina C   Dutzler Raimund R  

Nature communications 20221105 1


TMEM16F, a member of the conserved TMEM16 family, plays a central role in the initiation of blood coagulation and the fusion of trophoblasts. The protein mediates passive ion and lipid transport in response to an increase in intracellular Ca<sup>2+</sup>. However, the mechanism of how the protein facilitates both processes has remained elusive. Here we investigate the basis for TMEM16F activation. In a screen of residues lining the proposed site of conduction, we identify mutants with strongly a  ...[more]

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