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J. Biol. Chem., Vol. 263, Issue 16, 7604-7609, Jun, 1988
A Katz and C Kahana
Mouse ornithine decarboxylase (ODC) genomic clones were isolated from a
bacteriophage lambda genomic library representing mouse myeloma 653-1 cells
which over-produce ODC due to amplification of an active ODC gene. Sequence
analysis of the amplified ODC gene revealed that ODC mRNA is encoded by 12
exons, 10 of which (exons 3 to 12) code for the ODC protein. Exon 12 also
corresponds to the 3' noncoding region of the two species of ODC mRNA which
are formed by alternative utilization of two polyadenylation signals
separated from each other by 422 nucleotides. The transcription initiation
site was mapped by S1 nuclease protection and by primer extension analysis.
The 5' flanking region is extremely rich in G + C and contains typical
promoter motifs such as the TATA box and SP1 transcription factor binding
sites. Joining the 5' flanking region to the Escherichia coli
chloramphenicol acetyltransferase structural gene and its introduction into
mouse cells resulted in the expression of a high level of chloramphenicol
acetyltransferase activity. Comparing the sequence of the ODC gene to our
previously published sequence of ODC cDNA revealed a disagreement between
the sequences located 5' to the AvaI site and demonstrated that this region
of our previously reported cDNA represents a cloning artifact. The portion
of the correct 5' noncoding region encoded by exon 1 is extremely rich in G
+ C and includes potential secondary structures which may be involved in
translational regulation of ODC mRNA.
Isolation and characterization of the mouse ornithine decarboxylase gene
Department of Virology, Weizmann Institute of Science, Rehovot, Israel.
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