Affiliation:
1. Oakes College and the Board of Studies in Biology, University of California, Santa Cruz, California 95064
Abstract
A
trpE
mutant of
Serratia marcescens
(E-7) was isolated, and the multimeric enzyme tryptophan synthetase (EC 4.2.1.20) was purified to homogeneity from derepressed cells. The A and B subunits were resolved, and the B subunit was partially characterized and compared with the
Escherichia coli
B subunit as part of a comparative evolution study of the
trpB
cistron of the
trp
operon in the
Enterobacteriaceae
. The
S. marcescens
B subunit is a dimer (β
2
), and its molecular weight was estimated to be 89,000. The separate subunits (β monomers) had molecular weights of approximately 43,000. The B subunit required pyridoxal phosphate for catalytic activity and had an apparent
K
m
of 9 × 10
−6
M. The N terminus of the B subunit was unavailable for reaction with terminal amine reagents (blocked), whereas carboxypeptidase digestion released a C-terminal isoleucine. Using
S. marcescens
B antiserum in agar immunodiffusion gave an almost complete reaction of identity between the B subunits of
S. marcescens
and
E. coli
. The antiserum was used in microcomplement fixation, allowing for a comparison of the overall antigenic surface structure of the two B subunits. The index of dissimilarity for the heterologous
E. coli
enzyme compared with the homologous
S. marcescens
enzyme was 2.4, indicating extensive similarity of the two proteins at their surfaces. Comparative antiserum neutralization of B-subunit enzyme activity showed the
E. coli
enzyme to cross-react 85% as well as the
S. marcescens
enzyme. With regard to the biochemical and immunochemical parameters used in this study, the
S. marcescens
and
E. coli
B subunits were either identical or very similar. These findings support the idea that the
trpB
cistron of the
trp
operon is a relatively conserved gene in the
Enterobacteriaceae
.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
7 articles.
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