Affiliation:
1. Centre for Cellular and Molecular Biology, Hyderabad 500007
2. Laboratory of Bacterial Genetics, Centre for DNA Fingerprinting and Diagnostics, Hyderabad 500076, India
Abstract
ABSTRACT
The anonymous open reading frame
yggA
of
Escherichia coli
was identified in this study as a gene that is under the transcriptional control of
argP
(previously called
iciA
), which encodes a LysR-type transcriptional regulator protein. Strains with null mutations in either
yggA
or
argP
were supersensitive to the arginine analog canavanine, and
yggA-lac
expression in vivo exhibited
argP
+
-dependent induction by arginine. Lysine supplementation phenocopied the
argP
null mutation in that it virtually abolished
yggA
expression, even in the
argP
+
strain. The dipeptides arginylalanine and lysylalanine behaved much like arginine and lysine, respectively, to induce and to turn off
yggA
transcription. Dominant missense mutations in
argP
(
argP
d
) that conferred canavanine resistance and rendered
yggA-lac
expression constitutive were obtained. The protein deduced to be encoded by
yggA
shares similarity with a basic amino acid exporter (LysE) of
Corynebacterium glutamicum
, and we obtained evidence for increased arginine efflux from
E. coli
strains with either the
argP
d
mutation or multicopy
yggA
+
. The null
yggA
mutation abolished the increased arginine efflux from the
argP
d
strain. Our results suggest that
yggA
encodes an ArgP-regulated arginine exporter, and we have accordingly renamed it
argO
(for “arginine outward transport”). We propose that the physiological function of
argO
may be either to prevent the accumulation to toxic levels of canavanine (which is a plant-derived antimetabolite) or arginine or to maintain an appropriate balance between the intracellular lysine and arginine concentrations.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
78 articles.
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