Different ways to transport ammonia in human and Mycobacterium tuberculosis NAD<sup>+</sup> synthetases.

Chuenchor, Watchalee; Doukov, Tzanko I; Chang, Kai-Ti; Resto, Melissa; Yun, Chang-Soo; Gerratana, Barbara · Nat Commun · 2020

basic_science · Level V

Where this comes from

Abstract

NAD<sup>+</sup> synthetase is an essential enzyme of de novo and recycling pathways of NAD<sup>+</sup> biosynthesis in Mycobacterium tuberculosis but not in humans. This bifunctional enzyme couples the NAD<sup>+</sup> synthetase and glutaminase activities through an ammonia tunnel but free ammonia is also a substrate. Here we show that the Homo sapiens NAD<sup>+</sup> synthetase (hsNadE) lacks substrate specificity for glutamine over ammonia and displays a modest activation of the glutaminase domain compared to tbNadE. We report the crystal structures of hsNadE and NAD<sup>+</sup> synthetase from M. tuberculosis (tbNadE) with synthetase intermediate analogues. Based on the observed exclusive arrangements of the domains and of the intra- or inter-subunit tunnels we propose a model for the inter-domain communication mechanism for the regulation of glutamine-dependent activity and NH<sub>3</sub> transport. The structural and mechanistic comparison herein reported between hsNadE and tbNadE provides also a starting point for future efforts in the development of anti-TB drugs.

Medical subject headings