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Volume 271,
Number 6,
Issue of February 9, 1996 pp. 3079-3084
©1996 by The American Society for Biochemistry and Molecular Biology, Inc.
Exchange of
Aspartate and Alanine
MECHANISM FOR DEVELOPMENT OF A PROTON-MOTIVE FORCE IN BACTERIA
(Received for publication, June 12, 1995; and in revised form, November 8, 1995)
Keietsu
Abe ,
Hisanobu
Hayashi ,
Peter C.
Malone
We examined the idea that aspartate metabolism by Lactobacillus subsp. M3 is organized as a proton-motive
metabolic cycle by using reconstitution to monitor the activity of the
carrier, termed AspT, expected to carry out the electrogenic exchange
of precursor (aspartate) and product (alanine). Membranes of Lactobacillus subsp. M3 were extracted with 1.25% octyl
glucoside in the presence of 0.4% Escherichia coli phospholipid and 20% glycerol. The extracts were then used to
prepare proteoliposomes loaded with either aspartate or alanine.
Aspartate-loaded proteoliposomes accumulated external
[ H]aspartate by exchange with internal substrate;
this homologous self-exchange (K = 0.4
mM) was insensitive to potassium or proton ionophores and was
unaffected by the presence or absence of Na ,
K , or Mg . Alanine-loaded
proteoliposomes also took up [ H]aspartate in a
heterologous antiport reaction that was stimulated or inhibited by an
inside-positive or inside-negative membrane potential, respectively.
Several lines of evidence suggest that these homologous and
heterologous exchange reactions were catalyzed by the same functional
unit. Thus, [ H]aspartate taken up by AspT during
self-exchange was released by a delayed addition of alanine. In
addition, the spontaneous loss of AspT activity that occurs when a
detergent extract is held at 37 °C prior to reconstitution was
prevented by the presence of either aspartate (K (aspartate) = 0.3 mM)
or alanine (K (alanine) 10
mM), indicating that both substrates interact directly with
AspT. These findings are consistent with operation of a proton-motive
metabolic cycle during aspartate metabolism by Lactobacillus
subsp. M3.

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Copyright © 1996 by the American Society for Biochemistry and Molecular Biology.
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