Cryo-EM structures ofDrNKCC1 and hKCC1: a new milestone in the physiology of cation-chloride cotransporters

Author:

Delpire Eric1,Guo Jiangtao2

Affiliation:

1. Department of Anesthesiology, Vanderbilt University School of Medicine, Nashville, Tennessee

2. Department of Biophysics, Department of Pathology of Sir Run Run Shaw Hospital, Zhejiang University School of Medicine, Hangzhou, China

Abstract

New milestones have been reached in the field of cation-Clcotransporters with the recently released cryo-electron microscopy (EM) structures of the Danio rerio (zebrafish) Na+-K+-2Clcotransporter ( DrNKCC1) and the human K+-Clcotransporter (hKCC1). In this review we provide a brief timeline that identifies the multiple breakthroughs in the field of solute carrier 12 transporters that led to the structure resolution of two of its key members. While cation-Clcotransporters share the overall architecture of carriers belonging to the amino acid-polyamine-organocation (APC) superfamily and some of their substrate binding sites, several new insights are gained from the two individual structures. A first major feature relates to the largest extracellular domain between transmembrane domain (TMD) 5 and TMD6 of KCC1, which stabilizes the dimer and forms a cap that likely participates in extracellular gating. A second feature is the conservation of the K+and Clbinding sites in both structures and evidence of an unexpected second Clcoordination site in the KCC1 structure. Structural data are discussed in the context of previously published studies that examined the basic and kinetics properties of these cotransport mechanisms. A third characteristic is the evidence of an extracellular gate formed by conserved salt bridges between charged residues located toward the end of TMD3 and TMD4 in both transporters and the existence of an additional neighboring bridge in the hKCC1 structure. A fourth feature of these newly solved structures relates to the multiple points of contacts between the monomer forming the cotransporter homodimer units. These involve the TMDs, the COOH-terminal domains, and the large extracellular loop for hKCC1.

Funder

HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases

Fondation Leducq

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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1. Function and regulation of the insect NaCCC2 sodium transport proteins;Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology;2024-10

2. Both chloride-binding sites are required for KCC2-mediated transport;Journal of Biological Chemistry;2023-10

3. SLC12A cryo-EM: analysis of relevant ion binding sites, structural domains, and amino acids;American Journal of Physiology-Cell Physiology;2023-10-01

4. Structure-function relationships in the sodium chloride cotransporter;Frontiers in Physiology;2023-03-14

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