Affiliation:
1. National Institute for Medical Research, Mill Hill, London, NW7 lAA, England
Abstract
Sodium ion was shown to stimulate strongly the transport of
l
-glutamic acid into cells of
Bacillus licheniformis
6346 His
−
. Lithium ion had a slight capacity to replace Na
+
in this capacity, but K
+
was without effect. Three of five amino acids tested.
l
-glutamic acid,
l
-aspartic acid, and
l
-alanine, were concentrated against a gradient in the cells. Intracellular pools of these amino acids were extractable with 5% trichloroacetic acid. Pools of
l
-histidine and
l
-lysine could not be detected. No evidence of active transport of lysine into cells could be detected, and histidine was taken up in the absence of chloramphenicol but not in its presence. The uptake of glutamic acid by membrane vesicle preparations was strongly stimulated by reduced nicotinamide adenine dinucleotide (NADH) and to a lesser extent by succinate. The presence of phenazine methosulfate increased uptake in the presence of succinate. Either
l
- or
d
-lactate and adenosine triphosphate were without effect. None of these compounds stimulated the uptake of glutamic acid by mesosomes, although some mesosome preparations contained separable membrane which was very active. NADH strongly stimulated the uptake of aspartic acid and alanine by membrane vesicles but had only a slight effect on the uptake of histidine and lysine. No evidence of active transport of any of the amino acids into mesosomes could be detected either in the presence or absence of NADH. NADH stimulation of the uptake of glutamic acid by membrane vesicles was destroyed by exposure to light of 360 nm; this inactivation was reversible by vitamin K
2
(5)
or K
2
(10)
. Sodium ion stimulated transport of glutamic acid by membrane vesicles.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Reference38 articles.
1. /B-Galactoside transport in bacterial membrane preparations: energy coupling via membrane-bound D-lactic dehydrogenase;Barnes E. M.;Proc. Nat. Acad. Sci. U.S.A.,1970
2. Mechanisms of active transport in isolated membrane vesicles. I. The site of energy coupling between D-lactic dehydrogenase and ,B-galactoside transport in Escherichia coli membrane vesicles;Barnes E. M.;J. Biol. Chem.,1971
3. Changes in amino acid permeation during sporulation;Bernlohr R. W.;J. Bacteriol.,1967
4. Ubiquinone and vitamin K in bacteria;Bishop D. H. L.;Biochem. J.,1962
5. Oxidative phosphorylation in fractionated bacterial systems. II. The role of vitamin K;Brodie A. F.;J. Biol. Chem.,1960
Cited by
43 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献