A1 Vertaisarvioitu alkuperäisartikkeli tieteellisessä lehdessä

Evolutionarily divergent, Na+-regulated H+-transporting membrane-bound pyrophosphatases




TekijätHeidi H. Luoto, Erika Nordbo, Anssi M. Malinen, Alexander A. Baykov, Reijo Lahti

KustantajaPORTLAND PRESS LTD

Julkaisuvuosi2015

JournalBiochemical Journal

Tietokannassa oleva lehden nimiBIOCHEMICAL JOURNAL

Lehden akronyymiBIOCHEM J

Vuosikerta467

Aloitussivu281

Lopetussivu291

Sivujen määrä11

ISSN0264-6021

DOIhttps://doi.org/10.1042/BJ20141434


Tiivistelmä

Membrane-bound pyrophosphatase (mPPases) of various types consume pyrophosphate (PPi) to drive active H+ or Na+ transport across membranes. H+-transporting PPases are divided into phylogenetically distinct K+-independent and K+-dependent subfamilies. In the present study, we describe a group of 46 bacterial proteins and one archaeal protein that are only distantly related to known mPPases (23%-34% sequence identity). Despite this evolutionary divergence, these proteins contain the full set of 12 polar residues that interact with PPi, the nucleophilic water and five cofactor Mg2+ ions found in 'canonical' mPPases. They also contain a specific lysine residue that confers K+ independence on canonical mPPases. Two of the proteins (from Chlorobium limicola and Cellulomonas fimi) were expressed in Escherichia coli and shown to catalyse Mg2+ dependent PPi hydrolysis coupled with electrogenic H+, but not Na+ transport, in inverted membrane vesicles. Unique features of the new H+-PPases include their inhibition by Na+ and inhibition or activation, depending on PPi concentration, by K+ ions. Kinetic analyses of PPi hydrolysis over wide ranges of cofactor (Mg2+) and substrate (Mg-2-PPi) concentrations indicated that the alkali cations displace Mg2+ from the enzyme, thereby arresting substrate conversion. These data define the new proteins as a novel subfamily of H+ -transporting mPPases that partly retained the Na+ and K+ regulation patterns of their precursor Na+ transporting mPPases.




Last updated on 2024-26-11 at 21:46