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LRRC8 Proteins Form Volume-Regulated Anion Channels that Sense Ionic Strength
Author(s) -
Ruhma Syeda,
Zhaozhu Qiu,
Adrienne E. Dubin,
Swetha E. Murthy,
Maria Florendo,
Daniel E. Mason,
Jayanti Mathur,
Stuart M. Cahalan,
Eric C. Peters,
M Montal,
Ardem Patapoutian
Publication year - 2016
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2015.12.031
Subject(s) - biophysics , ionic strength , cytoplasm , tonicity , biology , conductance , ion channel , ionic bonding , membrane , osmotic pressure , biochemistry , microbiology and biotechnology , ion , chemistry , receptor , mathematics , organic chemistry , combinatorics , aqueous solution
The volume-regulated anion channel (VRAC) is activated when a cell swells, and it plays a central role in maintaining cell volume in response to osmotic challenges. SWELL1 (LRRC8A) was recently identified as an essential component of VRAC. However, the identity of the pore-forming subunits of VRAC and how the channel is gated by cell swelling are unknown. Here, we show that SWELL1 and up to four other LRRC8 subunits assemble into heterogeneous complexes of ∼800 kDa. When reconstituted into bilayers, LRRC8 complexes are sufficient to form anion channels activated by osmolality gradients. In bilayers, as well as in cells, the single-channel conductance of the complexes depends on the LRRC8 composition. Finally, low ionic strength (Γ) in the absence of an osmotic gradient activates the complexes in bilayers. These data demonstrate that LRRC8 proteins together constitute the VRAC pore and that hypotonic stress can activate VRAC through a decrease in cytoplasmic Γ.

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