Structure of an Ancient Respiratory System.

Yu, Hongjun; Wu, Chang-Hao; Schut, Gerrit J; Haja, Dominik K; Zhao, Gongpu; Peters, John W; Adams, Michael W W; Li, Huilin · Cell · 2018

basic_science · Level V

Where this comes from

Abstract

Hydrogen gas-evolving membrane-bound hydrogenase (MBH) and quinone-reducing complex I are homologous respiratory complexes with a common ancestor, but a structural basis for their evolutionary relationship is lacking. Here, we report the cryo-EM structure of a 14-subunit MBH from the hyperthermophile Pyrococcus furiosus. MBH contains a membrane-anchored hydrogenase module that is highly similar structurally to the quinone-binding Q-module of complex I while its membrane-embedded ion-translocation module can be divided into a H<sup>+</sup>- and a Na<sup>+</sup>-translocating unit. The H<sup>+</sup>-translocating unit is rotated 180° in-membrane with respect to its counterpart in complex I, leading to distinctive architectures for the two respiratory systems despite their largely conserved proton-pumping mechanisms. The Na<sup>+</sup>-translocating unit, absent in complex I, resembles that found in the Mrp H<sup>+</sup>/Na<sup>+</sup> antiporter and enables hydrogen gas evolution by MBH to establish a Na<sup>+</sup> gradient for ATP synthesis near 100°C. MBH also provides insights into Mrp structure and evolution of MBH-based respiratory enzymes.

Medical subject headings