Structural basis for inhibition of the Cation-chloride cotransporter NKCC1 by the diuretic drug bumetanide.

Zhao, Yongxiang; Roy, Kasturi; Vidossich, Pietro; Cancedda, Laura; De Vivo, Marco; Forbush, Biff; Cao, Erhu · Nat Commun · 2022

basic_science · Level V

Where this comes from

Abstract

Cation-chloride cotransporters (CCCs) NKCC1 and NKCC2 catalyze electroneutral symport of 1 Na<sup>+</sup>, 1 K<sup>+</sup>, and 2 Cl<sup>-</sup> across cell membranes. NKCC1 mediates trans-epithelial Cl<sup>-</sup> secretion and regulates excitability of some neurons and NKCC2 is critical to renal salt reabsorption. Both transporters are inhibited by the so-called loop diuretics including bumetanide, and these drugs are a mainstay for treating edema and hypertension. Here, our single-particle electron cryo-microscopy structures supported by functional studies reveal an outward-facing conformation of NKCC1, showing bumetanide wedged into a pocket in the extracellular ion translocation pathway. Based on these and the previously published inward-facing structures, we define the translocation pathway and the conformational changes necessary for ion translocation. We also identify an NKCC1 dimer with separated transmembrane domains and extensive transmembrane and C-terminal domain interactions. We further define an N-terminal phosphoregulatory domain that interacts with the C-terminal domain, suggesting a mechanism whereby (de)phosphorylation regulates NKCC1 by tuning the strength of this domain association.

Medical subject headings