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Appl. Environ. Microbiol., 04 1996, 1274-1282, Vol 62, No. 4
C Labarre, J Guzzo, JF Cavin and C Divies
Using degenerated primers from conserved regions of the protein sequences
of malic enzymes, we amplified a 324-bp DNA fragment by PCR from
Leuconostoc oenos and used this fragment as a probe for screening a
Leuconostoc oenos genomic bank. Of the 2,990 clones in the genomic bank
examined, 7 with overlapping fragments were isolated by performing colony
hybridization experiments. Sequencing 3,453 bp from overlapping fragments
revealed two open reading frames that were 1,623 and 942 nucleotides long
and were followed by a putative terminator structure. The first deduced
protein (molecular weight, 59,118) is very similar (level of similarity,
66%) to the malolactic enzyme of Lactococcus lactis; as in several malic
enzymes, highly conserved protein regions are present. The synthesis of a
protein with an apparent molecular mass of 60 kDa was highlighted by the
results of labelling experiments performed with Escherichia coli minicells.
The gene was expressed in E. coli and Saccharomyces cerevisiae and
conferred "malolactic activity" to these species. The second open reading
frame encodes a putative 34,190-Da protein which has the characteristics of
a carrier protein and may have 10 membrane-spanning segments organized
around a central hydrophilic core. Energy-dependent L-[14C]malate transport
was observed with E. coli dicarboxylic acid transport-deficient mutants
carrying the malate permease-expressing vector. Our results suggest that in
Leuconostoc oenos the genes that encode the malolactic enzyme and a malate
carrier protein are organized in a cluster.
Copyright © 1996, American Society for Microbiology
Cloning and characterization of the genes encoding the malolactic enzyme and the malate permease of Leuconostoc oenos
Laboratoire de Microbiologie, ENSBANA, Dijon, France.
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