Lm. Kucharski et al., Cation hexaammines are selective and potent inhibitors of the CorA magnesium transport system, J BIOL CHEM, 275(22), 2000, pp. 16767-16773
Cation hexaammines and related compounds are chemically stable analogs of t
he hydrated form of cations, particularly Mg2+: We tested the ability of se
veral of these compounds to inhibit transport by the CorA or MgtB Mg2+ tran
sport systems or the PhoQ receptor kinase for Mg2+ in Salmonella typhimuriu
m. Cobalt(III)-, ruthenium(II)-, and ruthenium(III)-hexaammines were potent
inhibitors of CorA-mediated influx, Cobalt(III)-and ruthenium(III)chlorope
ntaammines were slightly less potent inhibitors of CorA. The compounds inhi
bited uptake by the bacterial S. typhimurium CorA and by the archaeal Metha
nococcus jannaschii CorA, which bear only 12% identity in the extracellular
periplasmic domain. Cation hexaammines also inhibited growth of S. typhimu
rium strains dependent on CorA for Mg2+ up- take but not of isogenic strain
s carrying a second Mg2+ uptake system. In contrast, hexacyano-cobaltate (I
II) and ruthenate(II)- and nickel(II)hexaammine had little effect on uptake
, The inhibition by the cation hexaammines was selective for CorA because n
one of the compounds had any effect on transport by the MgtB P-type ATPase
Mg2+ transporter or the PhoQ Mg2+ receptor kinase. These results demonstrat
e that cation hexaammines are potent and highly selective inhibitors of the
CorA Mg2+ transport system and further indicate that the initial interacti
on of the CorA transporter is with a fully hydrated Mg2+ cation.