Diverse roles of the metal binding domains and transport mechanism of copper transporting P-type ATPases.

Guo, Zongxin; Orädd, Fredrik; Bågenholm, Viktoria; Grønberg, Christina; Ma, Jian Feng; Ott, Peter; Wang, Yong; Andersson, Magnus et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Copper transporting P-type (P<sub>1B-1</sub>-) ATPases are essential for cellular homeostasis. Nonetheless, the E1-E1P-E2P-E2 states mechanism of P<sub>1B-1</sub>-ATPases remains poorly understood. In particular, the role of the intrinsic metal binding domains (MBDs) is enigmatic. Here, four cryo-EM structures and molecular dynamics simulations of a P<sub>1B-1</sub>-ATPase are combined to reveal that in many eukaryotes the MBD immediately prior to the ATPase core, MBD<sup>-1</sup>, serves a structural role, remodeling the ion-uptake region. In contrast, the MBD prior to MBD<sup>-1</sup>, MBD<sup>-2</sup>, likely assists in copper delivery to the ATPase core. Invariant Tyr, Asn and Ser residues in the transmembrane domain assist in positioning sulfur-providing copper-binding amino acids, allowing for copper uptake, binding and release. As such, our findings unify previously conflicting data on the transport and regulation of P<sub>1B-1</sub>-ATPases. The results are critical for a fundamental understanding of cellular copper homeostasis and for comprehension of the molecular bases of P<sub>1B-1</sub>-disorders and ongoing clinical trials.

Medical subject headings