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S Arvidson

Publications and source records attributed to S Arvidson.

At least 37 records · Page 2Linked to original sources

Secretory S complex of Bacillus subtilis: sequence analysis and identity to pyruvate dehydrogenase.

We have cloned the operon coding for the Bacillus subtilis S complex, which has been proposed to be a component in protein secretion machinery. A lambda gt10 library of B. subtilis was screened with antiserum directed against the Staphylococcus aureus membrane-bound ribosome protein complex, which is homologous to the B. subtilis S complex. Two positive overlapping lambda clones were sequenced. The S-complex operon, 5 kilobases in size, was shown to contain four open reading frames and three putative promoters, which are located upstream of the first, the third, and the last gene. The four proteins encoded by the operon are 42, 36, 48, and 50 kilodaltons in size. All of these proteins were recognized by antisera separately raised against each protein of the S. aureus membrane-bound ribosome protein and B. subtilis S complexes, thus verifying the S-complex identity of the lambda clones. Sequence analysis revealed that all four proteins of the B. subtilis S complex are homologous to the four subunits of the human pyruvate dehydrogenase (PDH). Also, the N terminus of the 48-kilodalton protein was found to have 70% amino acid identity with the N-terminal 211 amino acids, determined so far, from the E2 subunit of B. stearothermophilus PDH. Furthermore, chromosomal mapping of the S-complex operon gave a linkage to a marker gene located close to the previously mapped B. subtilis PDH genes. Thus, the S complex is evidently identical to the B. subtilis PDH, which has been shown to contain four subunits with molecular weights very similar to those of the S complex. Therefore, we propose that the S complex is not a primary component of protein secretion.

Amino Acid Sequence↗

Identification and nucleotide sequence of the delta-lysin gene, hld, adjacent to the accessory gene regulator (agr) of Staphylococcus aureus.

A Tn551 insertional mutation in the accessory gene regulator (agr) locus of the Staphylococcus aureus chromosome resulted in the decreased production of at least seven extracellular toxins and enzymes and a simultaneous increase in the production of protein A and coagulase (Recsei et al. 1986). Adjacent to this locus we have now identified another gene, hld, transcribed into a 0.5 kb RNA which codes for the staphylococcal delta-lysin. The expression of hld was totally repressed in a strain carrying the agr insertional mutation. Hybridization with strand-specific probes and primer extension analysis revealed that hld and agr are transcribed in opposite directions, starting 188 nucleotides apart. The hld gene is mainly expressed during the post-exponential growth phase and is totally repressed during early exponential growth. Determination of hld mRNA half-life in different growth phases indicated that this regulation is at the level of transcription.

Amino Acid Sequence↗

Cloning of a chromosomal locus (exp) which regulates the expression of several exoprotein genes in Staphylococcus aureus.

Insertion of the erythromycin resistance transposon Tn551 into a single site of the Staphylococcus aureus chromosome resulted in decreased production of alpha-toxin, serine and metallo-proteinases and several other extracellular proteins and a simultaneous increase in the production of protein A. The site of insertion, designated exp, was separate from the structural gene for alpha-toxin and protein A. Hybridization analysis showed that the effect of the insertional mutation on the expression of the alpha-toxin and protein A was at the level of transcription. The chromosomal DNA flanking the transposon and the corresponding DNA of the wild-type strain was cloned in Escherichia coli. Northern blot hybridization experiments revealed that the exp locus codes for a major RNA of approximately 3.5 kb. This RNA was not found in the insertional mutant nor in a spontaneous exp mutant. A map of the exp locus constructed by Northern blot and restriction enzyme analysis showed that the insertional mutation was located in the middle of the coding sequence of the 3.5 kb RNA. The insertional mutant was reverted to wild type by inserting a recombinant plasmid containing most of the coding sequence of the 3.5 kb RNA.

Bacterial Proteins↗

Cloning and expression in Escherichia coli of genes encoding a multiprotein complex involved in secretion of proteins from Staphylococcus aureus.

The genes encoding the multiprotein membrane-bound ribosomal protein (MBRP) complex (mrp genes), associated with membrane-bound ribosomes in Staphylococcus aureus, were cloned in Escherichia coli. All four components (molecular sizes 71, 60, 46, and 41 kilodaltons) of the MBRP complex were expressed from an 8.5-kilobase DNA fragment as judged by Western blot (immunoblot) analysis. The order of the individual genes within the cloned DNA fragment was determined by deletion mutagenesis and subcloning of various restriction fragments. Three RNAs, transcribed from the same DNA strand, were identified within the MBRP-coding region: one large RNA of approximately 5.9 kilobases, presumably coding for all four MBRP components, and two minor RNAs, coding for MBRP-71 and MBRP-60. The two minor RNAs seemed to be transcribed from promoters within the large transcription unit. Attempts to make insertional inactivations of the mrp genes with an internal 600-base-pair DNA fragment of the MBRP-coding region as a target were unsuccessful, presumably because such insertions are lethal.

Blotting, Northern↗

Correlation between the rate of exoprotein synthesis and the amount of the multiprotein complex on membrane-bound ribosomes (MBRP-complex) in Staphylococcus aureus.

The membrane-bound ribosome protein (MBRP)-complex of Staphylococcus aureus was studied using antibodies to its individual components. The four polypeptides of the complex were firmly held together, and none were present in large excess. The membrane-bound fraction of the MBRP-complex was accessible to trypsin only after removal of the membrane-bound ribosomes; it also remained associated with the membrane-bound ribosomes even after solubilization of the membranes with Triton X-100. Furthermore, the amount of MBRP-complex in the membrane was proportional to the rate of exoprotein synthesis. These results strongly suggest a role for the MBRP-complex in protein secretion.

Autoradiography↗

Detection of a membrane-associated protein on detached membrane ribosomes in Staphylococcus aureus.

Membrane ribosomes from Staphylococcus aureus which were detached from the membrane by extraction with the nonionic detergent Triton X-100 retained a protein (MBRP) with a molecular weight of 60 000, which was absent from cytoplasmic ribosomes. MBRP was detected and quantified by immunological methods. When membrane ribosomes were dissociated into 50S and 30S subunits, MBRP remained associated with the 50S particle. MBRP was found both on membrane ribosomes and in the cytoplasm in roughly equal amounts. When added to Triton X-100-solubilized protoplasts, antibodies to MBRP produced immunoprecipitates which contained a complex of MBRP and three other proteins with molecular weights of 71 000, 46 000 and 41 000. Four proteins with the same molecular weights as those of the MBRP complex were found associated with membrane ribosomes. The proteins of molecular weight 71 000, 60 000, 46 000 and 41 000 seemed to be present in stoichiometrically equivalent amounts in the complex.

Autoradiography↗