Publication | Open Access
Primary Structure and Organization of the Gene for a Procaryotic, Cell Envelope-located Serine Proteinase
172
Citations
37
References
1989
Year
BacteriologyMolecular BiologyEscherichia ColiBiosynthesisProtein ExpressionGene StructureProteomicsProtein FunctionBiochemistryVirulence FactorMolecular MicrobiologyProteinase GeneStructural BiologyPrimary StructureLactococcus Lactis Sk11Natural SciencesMicrobiologyMedicineMicrobial Genetics
We have determined the complete nucleotide sequence of the gene for the cell envelope-located proteinase of Lactococcus lactis SK11. The gene contains a very AT-rich promoter region followed by the coding sequence of a protein of 1962 amino acids. Comparison of the NH2-terminal amino acid sequence of the mature proteinase and the expected primary translation product of the proteinase gene indicates that the enzyme is probably synthesized as a pre-pro-protein. This is confirmed by expression studies of the proteinase gene in Escherichia coli. The amino acid sequence of the proteinase shows significant homology to a number of serine proteinases of the subtilisin family. Compared with the related proteinase of L. lactis Wg2, the proteinase of L. lactis SK11 contains a 60-amino acids duplication and a total of 44-amino acid substitutions, some of which may account for the different cleavage specificity of both enzymes. Furthermore, a region was identified in the Lactococcus proteinase, which shows homology to the membrane-anchoring domains of a number of proteins from other Gram-positive bacteria.
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