PubMed HealthSearch

Biomedical subjects

M G Bramucci

Publications and source records attributed to M G Bramucci.

14 recordsLinked to original sources

The Bacillus subtilis spo0J gene: evidence for involvement in catabolite repression of sporulation.

Previous observations concerning the ability of the Bacillus subtilis bacteriophages SP10 and PMB12 to suppress mutations in spo0J and to make wild-type sporulation catabolite resistant suggested that spo0J had a role in catabolite repression of sporulation. This suggestion was supported in the present report by the ability of the catabolite-resistant sporulation mutation crsF4 to suppress a Tn917 insertion mutation of the B. subtilis spo0J locus (spo0J::Tn917 omega HU261) in medium without glucose. Although crsF4 and SP10 made wild-type B. subtilis sporulation catabolite resistant, neither crsF4 nor SP10 caused a mutant with spo0J::Tn917 omega HU261 to sporulate in medium with glucose. Sequencing the spo0J locus revealed an open reading frame that was 179 codons in length. Disruption of the open reading frame resulted in a sporulation-negative (Spo-) phenotype that was similar to those of other spo0J mutations. Analysis of the deduced amino acid sequence of the spo0J locus indicated that the spo0J gene product contains an alpha-helix-turn-alpha-helix unit similar to the motif found in lambda Cro-like DNA-binding proteins.

Amino Acid Sequence

Bacteriophage-enhanced sporulation: comparison of spore-converting bacteriophages PMB12 and SP10.

The previously characterized bacteriophage SP10 enhanced the frequency of wild-type sporulation by Bacillus subtilis W23 and 3-13. Comparison of SP10 with the spore-converting bacteriophage PMB12 indicated that both bacteriophages significantly increased the sporulation frequency of an oligosporogenic mutant that contained spo0J::Tn917 omega HU261. SP10 and PMB12 caused wild-type bacteria to sporulate in a liquid medium that initially contained enough glucose to inhibit the sporulation and expression of alpha-amylase by uninfected bacteria. SP10 also induced the expression of alpha-amylase in the presence of glucose, whereas PMB12 had no detectable effect. These observations were consistent with the conclusion that SP10 is a spore-converting bacteriophage and that SP10 and PMB12 relieve glucose-mediated catabolite repression of sporulation by different mechanisms.

Bacillus subtilis

Host function specified by Bacillus pumilus plasmid pPL7065.

Plasmid pPL7065 ( approximately 4.7 x 10(6) daltons; approximately 20 copies per chromosome) determines the production of, and immunity or resistance to, a killing activity in strains of Bacillus pumilus. Plasmid pPL7065 is compatible with plasmid pPL576 ( approximately 28 x 10(6) daltons; approximately 2 copies per chromosome).

Bacillus

Selective plasmid transduction in Bacillus pumilus.

The inducible temperate bacteriophage phi75 and a clear-plaque-forming variant, phi75C1, mediated transduction of a 4.4 X 10(6)-dalton multicopy Bacillus pumilus plasmid, pPL10, at frequencies of 10(-5) to 10(-6) transductants per plaque-forming unit. phi75- and phi75C1-mediated transduction of several chromosome markers tested did not occur at a detectable frequency. phi75-mediated plasmid transducing activity resides in particles that are similar to infectious particles in sedimentation velocity and buoyant density.

Bacillus

Bacteriophage conversion of spore-negative mutants to spore-positive in Bacillus pumilus.

A pseudolysogenic phage, PMB1, was isolated from soil on the basis of its ability to increase the sporulation frequency of the oligosporogenic Bacillus pumilus strain NRS 576 (sporulation frequency, less than 1%). Several spore-negative mutants (sporulation frequency, less than 10-8) derived from strain NRS 576, which were converted to spore positive by infection with PMB1, were subsequently identified. PMB1 repeatedly grown on a given spore-negative mutant (e.g., GW2) converted GW2 cells to spore positive. Each plaque-forming unit initiated the conversion of a spore-positive clone in semisolid agar overlays. GW2 cells remained spore positive as long as they maintained PMB1. Return of PMB1-converted cells to the orginal spore-negative phenotype correlated with loss of PMB1. In liquid media, PMB1 infection increased the sporulation frequency of mutant GW2 over 106-fold. More than half of the spore-negative mutants we isolated from strain NRS 576 were converted to spore positive by PMB1 infection. PMB1-induced spores of the spore-negative mutant GW2 were somewhat more heat sensitive than uninfected or PMB1-infected spores of the spore positive parent of GW2. PMB1-induced spores of GW2 do not differ from wild-type spores in morphology by phase-contrast microscopy, dipicolinic acid content, or rate of sedimentation through Renografin gradients.

Bacillus

Bacteriophage PMB12 conversion of the sporulation defect in RNA polymerase mutants of Bacillus subtilis.

The pseudotemperate phage PMB12 was isolated from soil on the basis of its ability to enhance the rate of sporulation of Bacillus subtilis 168. PMB12 was subsequently shown to convert the sporulation defect in two genetically distinct classes of sporulation mutants. One class includes those rifampin-resistant mutants that are also spore-negative (mutated at the rif locus). The other class includes a strain carrying the sporulation mutation spoCM-1. The spoCM-1 mutation is linked to cysA15 by PBS1 transduction but is distinct from the rif locus. Several other sporulation mutants were not converted by PMB12. PMB12 is related to phage PBS1. However, PBS1 did not convert the above sporulation mutants. The replication of PBS2, a clear-plaquing derivative of PBS1, is rifampin insensitive, apparently due to a phage-induced rifampin-insensitive RNA polymerase. PMB12 replication is also rifampin insensitive.

Bacillus subtilis

Low-frequency, pbsi-mediated plasmid transduction in Bacillus pumilus.

Three bacteriophages were tested for ability to transduce the plasmid of pPL10 between W mutant derivatives of Bacillus pumilus NRS 576. Phage PBP1- and PMB1-generated plasmid transductants occurred at about 10% the frequency of transductants for a chromosome marker. Phage PBS1-generated plasmid transductants occurred at less than 0.1% the frequency of transductants for a chromosome marker. Possible reasons for the extremely reduced capacity of PBS1 to generate plasmid transductants are discussed.

Bacillus

Evidence for a nonrandom base sequence in a Bacillus pumilus plasmid: EcoR1 endonuclease digestion of pPL576.

EcoR1 endonuclease digested the Bacillus pumilus plasmid pPL576 (molecular weight similar to 28 X 10-6) into three distinct size classes of linear fragments. The molecular weights of the fragments are 13.0 X 10-6, 0.5 X 10-6, and 6.5 X 10-6 by sucrose gradient analysis. By electron microscope analysis the three fragments account for about 99% of the intact plasmid. These results indicate that pPL576 molecules contain a nonrandom base sequence, and are consistent with the interpretation that pPL576 is autonomous and not the result of cyclization of random chromosome fragments.

Bacillus

Plasmid deoxyribonucleic acid in Bacillus subtilis and Bacillus pumilus.

Two of eighteen strains of Bacillus subtilis examined contained covalently closed circular duplex deoxyribonucleic acid (DNA) of homogeneous size and buoyant density. Strain ATCC 15841 contained about 16 copies per chromosome of plasmid pPL1, a circular DNA element having a molecular weight of about 4.7 times 10(6) and a buoyant density of 1.700. Strain ATCC 7003 contained about one to two copies per chromosome of plasmid pPL2. pPL2 had a molecular weight of about 46 times 10(6) and a buoyant density of 1.696. Strain ATCC 7003 appeared to be closely related to B. subtilis 168 by genetic, physiological, and biochemical criteria. Strain ATCC 15841 appeared to be much less closely related. B. pumilus ATCC 12140 contained two size classes of covalently closed circular duplex DNA. The plasmids pMB1 and pMB2 had molecular weights of about 6.8 times 10(6) and 5.3 times 10(6), respectively, and were present in several copies per chromosome.

Bacillus

Biochemical studies of two Bacillus pumilus plasmids.

Bacillus pumilus NRS 576 harbored an estimated two copies per chromosome of a covalently closed, circular (CCC) deoxyribonucleic acid (DNA) molecule, the 576 plasmid. The 576 plasmid has a buoyant density of 1.698 g/cm(3) and a molecular weight of about 28 x 10(6). Plasmid copy number remained about the same in both exponentially growing and stationary-phase cells. Spontaneous variants of NRS 576 that formed spores at an elevated frequency were designated as W mutants. W mutants appeared to have lost the 576 plasmid on the basis of the following: W mutants (38 tested) lacked detectable CCC DNA, and the majority of the plasmid homologous sequences in bulk NRS 576 DNA were absent from bulk W mutant DNA. B. pumilus ATCC 7065 harbored at least 10 copies per chromosome of a CCC DNA element, the 7065 plasmid. The 7065 plasmid has a buoyant density of 1.696 g/cm(3) and a molecular weight of about 6 x 10(6). Although the copy number of the plasmid appeared to remain the same in exponentially growing and stationary-phase cells, an additional CCC form of higher molecular weight was detected in stationary-phase cells.

Bacillus

Temperate bacteriophage infectious for asporogenic variants of Bacillus pumilus.

Bacillus pumilus strain NRRL B-3275 is lysogenic for an inducible, nondefective temperate bacteriophage phi75. phi75 infects and lysogenizes several asporogenic mutants of B. pumilus strain NRS 576 but does not productively infect the spore(+) parent. phi75 DNA is a linear duplex with a mol wt of about 29 x 10(6) and a buoyant density of 1.701 g/cm(3). The location of the phi75 prophage attachment site on the chromosome of both host strains is adjacent to a lysine marker. The apparent order is phi75 att lys trp.

Bacillus