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P Canepari

Publications and source records attributed to P Canepari.

At least 19 recordsLinked to original sources

Cell elongation and septation are two mutually exclusive processes in Escherichia coli.

Bacterial rod morphogenesis was studied in synchronously growing cells of Escherichia coli C600 during the reshaping process that follows the removal of mecillinam, a beta-lactam antibiotic that specifically inhibits lateral wall formation of gram-negative rods and causes transition to coccal shape. Removal of mecillinam after 30 min of action did not affect the timing of subsequent cell division, but removal after 50 min delayed resumption of cell division for approximately one generation time. In order to study the interplay between lateral wall elongation and septum formation in determining and maintaining the bacterial rod shape, we evaluated the effect of re-adding mecillinam or of adding aztreonam (a specific inhibitor of septum formation) at various stages of the reshaping process. We conclude that mecillinam was active only during the reshaping process, while aztreonam was active only later when the cells were close to dividing again. These results provide further evidence for our previous proposal according to which elongation and septation are two alternating and competing events of the cell cycle and are linked to each other to force bacterial rods to grow to a given length.

Amdinocillin

Alterations in the chemical composition of peptidoglycan of Escherichia coli DH5 alpha induced by the expression of Enterococcus faecalis penicillin binding protein 5.

Low-affinity penicillin binding proteins (PBPs) are a particular class of membrane proteins involved in penicillin resistance in Enterococci and other micro-organisms. This PBP is thought to be capable of taking over the activity of all other PBPs during peptidoglycan synthesis. Unfortunately, nothing is known about the enzymatic activity catalyzed by this PBP, but a transpeptidase/transglycosylase action can be postulated to allow complete peptidoglycan synthesis. Recently, we cloned and expressed in Escherichia coli the PBP5 (a low-affinity PBP) of Enterococcus faecalis (Signoretto, C., Boaretti, M., and Canepari, P.: FEMS Microbiol. Lett. 123, 99-106, 1994). Here we describe some of the effects of this PBP when expressed in E. coli, in terms of increased growth rate and autolysis, and particularly its effects on the fine chemical composition of the E. coli peptidoglycan. A distinct increase in the di- and tripeptide monomers and a parallel decrease in the tetrapeptide monomer are described. The results presented here are explained in terms of a partial action of the postulated transpeptidase/ transglycosylase enzymatic complex which leads to the cleavage of one, two or three amino-acids from the pentapeptide monomer, but is incapable of performing the cross-linking between two side-chains due to lack of the natural substrate which is different from that of E. coli.

Amino Acid Sequence

The gene encoding for penicillin-binding protein 5 of Enterococcus faecalis is useful for development of a species-specific DNA probe.

Recently, in Escherichia coli was cloned a Sau3AI 3.4-kb fragment containing the gene encoding for penicillin-binding protein 5 (PBP5) of Enterococcus faecalis. The structural gene for the PBP of E. faecalis and the flanking regions were entirely sequenced (C. Signoretto, M. Boaretti, and P. Canepari, FEMS Microbiol. Lett. 123:99-106, 1994). When the entire cloned E. faecalis DNA insert, labeled with digoxigenin, was used as a probe to detect a homology gene in enterococci, it was observed that only DNAs of all the E. faecalis strains reacted to the probe. The same results were obtained when a HindIII fragment of 0.35 kb from the entire insert of 3.4 kb was used. In this study we tested a total of 62 clinically isolated enterococcal strains, belonging to the species E. faecalis (36 strains), E. faecium (13), E. gallinarum (6), E. bovis (2) E. avium (3), E. hirae (1), and E. casseliflavus (1). The results indicate that both the entire segment and the HindIII fragment may be useful for preparing a species-specific probe for rapid identification of E. faecalis species.

Bacterial Proteins

Lipoteichoic acid as a target for antimicrobial action.

Daptomycin, a lipopeptide antibiotic active against gram-positive bacteria, has been found to inhibit lipoteichoic acid (LTA) synthesis as a consequence of membrane binding in the presence of Ca2+. The present study shows that among the bacterial-membrane components, daptomycin binds the protein fraction with a noncovalent bond, as suggested by the instability of the bond in the presence of an ionic detergent such as sodium dodecyl sulfate. Analysis of membrane proteins by isoelectric focusing electrophoresis reveals that 5 bands with isoelectric points ranging from 5.9 to 6.2 bind radioactive daptomycin. These proteins are therefore called daptomycin-binding proteins. In an attempt to correlate these proteins with the main inhibition observed in LTA synthesis, two-dimensional thin-layer chromatography of lipids synthesized during daptomycin treatment was performed. A 3-fold increase in diglucosyl diacylglycerol is demonstrated, while the compounds phosphatidyl-alpha-kojibiosyldiacylglycerol, glycerophosphophosphatidyl-alpha-kojibiosyldiacyl glycerol, and glycerophosphokojibiosyldiacylglycerol, which follow diglucosyl diacylglycerol in LTA synthesis, decrease progressively with time during the course of daptomycin treatment.

Anti-Bacterial Agents

Modified peptidoglycan chemical composition in shape-altered Escherichia coli.

Peptidoglycan synthesis and its fine chemical composition were studied in dividing cocci of Escherichia coli carrying the lov-1 mutation and in which the coccal shape was obtained either by mecillinam treatment or by transferring a pbpA mutation (penicillin-binding protein 2- phenotype), as compared to normal rods and non-dividing cocci. Synchronously dividing cocci showed peptidoglycan synthesis only in the cell cycle phase corresponding to cell septation. During the phase corresponding to lateral wall elongation, peptidoglycan synthesis was strongly reduced. This type of synthesis suggests that the dividing cocci consisted only of the two poles. Analysis of the muropeptide composition revealed a specific fourfold increase in the tetra-tetra-tetra trimer in dividing cocci as compared to non-dividing cocci or parental rods. We postulate that, in E. coli, the chemical composition of septal peptidoglycan differs from that of lateral wall peptidoglycan.

Amdinocillin

Simpler peptidoglycan chemical composition in the highly transformant Escherichia coli DH5 alpha strain.

Artificial transformation of Escherichia coli is obtainable by treating the culture with CA2+ and other substances known to increase the permeability of the outer membrane. Nevertheless, particular strains of E. coli are more useful for transformation since the number of transformants obtained is far higher. We postulate that an additional layer of the envelope may play an important role comparable to that of the outer membrane. The chemical composition of the peptidoglycan of a highly efficient transformant E. coli strain (DH5 alpha) was analyzed in comparison with a normal and poorly transformant E. coli strain (KN126) revealing a simpler peptidoglycan chemical composition in the DH5 alpha strain. This may be responsible for the simpler architecture of the peptidoglycan which, in turn, may interfere less with the passage of the DNA across the bacterial envelope.

Bacteriolysis

Identification of daptomycin-binding proteins in the membrane of Enterococcus hirae.

Daptomycin, a lipopeptide antibiotic active against gram-positive bacteria, was preliminarily shown to inhibit lipoteichoic acid (LTA) synthesis as a consequence of membrane binding in the presence of Ca2+ (P. Canepari, M. Boaretti, M. M. Lleó, and G. Satta, Antimicrob. Agents Chemother. 34:1220-1226, 1990). In the present study, it is shown that, along with binding bacterial-membrane components, daptomycin binds the protein fraction with a noncovalent bond, as suggested by the instability of the bond in the presence of ionic detergents such as sodium dodecyl sulfate. Analysis of membrane proteins by isoelectric focusing electrophoresis reveals that five bands with isoelectric points ranging from 5.9 to 6.2 bind radioactive daptomycin. These proteins are therefore called daptomycin-binding proteins. In an attempt to correlate these proteins to the main inhibition observed during LTA synthesis, two-dimensional thin-layer chromatography of lipids synthesized during daptomycin treatment was performed. A threefold increase in diglucosyl diacylglycerol is demonstrated, while the compounds phosphatidyl-alpha-kojibiosyldiacylglycerol, glycerophospho-phosphatidyl-alpha-kojibiosyldiacylglycerol, and glycerophospho-kojibiosyldiacylglycerol, which follow diglucosyl diacylglycerol in LTA synthesis, decrease progressively with time during the course of daptomycin treatment.

Anti-Bacterial Agents

Cloning, sequencing and expression in Escherichia coli of the low-affinity penicillin binding protein of Enterococcus faecalis.

Low-affinity penicillin binding proteins are particular membrane proteins, in several Gram-positive bacteria, which are involved in beta-lactam antibiotic resistance. The structural gene for the low-affinity penicillin binding protein 5 (PBP5) of Enterococcus faecalis was cloned and sequenced. From the sequence of the 3378 bp, a 2040 bp coding region was identified. From biochemical analysis it emerges that E. faecalis PBP5 is a type II membrane protein with an uncleaved N-terminal and is composed of 679 amino acids with a molecular weight of 74055. This protein showed 48 and 33% of identity with Enterococcus hirae PBP5 and Staphylococcus aureus PBP2a, both low-affinity PBPs involved in beta-lactam resistance. Anti-PBP5 antibodies cross-reacted with a membrane protein present in other species of enterococci, but the entire gene fragment cloned hybridized only with DNAs of E. faecalis strains, thus suggesting that genes coding for low-affinity PBPs of enterococci are not strictly homologous. In this experiment digoxigenin-labelled E. faecalis DNA was used.

Amino Acid Sequence

Lack of correlation between salivary Streptococcus mutans and lactobacilli counts and caries in IDDM children.

In a previous clinical study regarding the incidence of caries and the periodontal health, a group of young patients with various levels of glyco-metabolic control was studied and the results showed that the decayed-missing-filled teeth (DMFT) index was higher in insulin dependent diabetes mellitus (IDDM) type 1 patients with a poor glyco-metabolic balance than in a control group or in IDDM patients with sufficient glyco-metabolic balance. In light of these results, the purpose of this study was to find an explanation for these clinical observations by searching at a microbiological level. The results indicate that salivary counts of Streptococcus mutans and lactobacilli were higher in patients with active caries whether or not they be diabetic, than in people with no active caries, but the count of S. mutans was not directly correlated to the DMFT index. No significant alterations were found in salivary flow, pH, buffer capacity and glucose concentration in all the groups in this study. We conclude that the salivary count of S. mutans is not sufficient alone to account for the higher susceptibility to active caries of young IDDM patients with poor glyco-metabolic control.

Adolescent

[Microbiological contamination in the dental office and its possible decrease].

A microbiological analysis of the environment after dental work is presented in this paper. Detection of oral streptococci in the air is used as an index of the presence of salivary aerosol in consequence of the use of dental tools at high spin. This salivary aerosol may be considered a very important cause for the transmission of infectious diseases in the dental surgery. The real efficacy of a tool for the production of a dry aerosol of phenols or clorexidine with the purpose of environmental disinfection, is evaluated. Among possible parameters has been considered both the spray ability of the tool and the bactericidal activity of the aerosol at variable length from the source. Data here presented demonstrate the real utility of such an instrument for the disinfection of the dental surgery to be applied daily at the end of the work, not only in reducing environment microbial counts but also in totally eliminating salivary microorganisms.

Aerosols

Rapid detection of PCR products of hepatitis C virus (HCV) with a non-radioactive oligoprobe.

Dot-blot for rapid detection of PCR amplification products of hepatitis C virus (HCV) using a digoxigenin (DIG)-labelled oligoprobe was developed and its sensitivity compared with Southern blot hybridization. The specificity and sensitivity of the DIG-labelled probe were identical to those of the 32P-labelled when the DIG-labelled nucleic acids were detected by enzyme-catalyzed chemiluminescent reaction. The lack of radioactivity makes this procedure suitable for routine use in diagnostic laboratories.

Base Sequence

The activity of daptomycin on Enterococcus faecium protoplasts: indirect evidence supporting a novel mode of action on lipoteichoic acid synthesis.

The effect of daptomycin, an acidic lipopeptide antibiotic active against Gram-positives, was studied in Enterococcus faecium protoplasts. This antibiotic killed 99% of the protoplasts within 60 minutes of treatment, while vancomycin was ineffective, thus excluding peptidoglycan synthesis as the only target of the action of daptomycin. As previously seen with whole cells, in protoplasts lipoteichoic acid synthesis was the earliest and most strongly inhibited among types of macro-molecular synthesis. Radioactive daptomycin tightly bound only to the cytoplasmic membrane, in which the enzymes involved in lipoteichoic acid synthesis are located. These conclusions strongly support our previous proposal that daptomycin, though active against peptidoglycan synthesis, primarily inhibits lipoteichoic acid synthesis.

Anti-Bacterial Agents

The reshaping process of Klebsiella pneumoniae cells after removal of mecillinam, an antibiotic that causes transition from rod to coccal shape.

The process of bacterial morphogenesis that leads to rod shape formation was studied in synchronous cells during the reshaping process after removal of mecillinam, a beta-lactam antibiotic which, by specifically inhibiting lateral wall formation of rods, cause rod-to-sphere transition in Gram-negative rods. The addition of mecillinam for 50 min of the cell cycle made the cells to skip a division, while the addition of the antibiotic for 30 min (or less), allowed the cells to divide regularly. In order to study the interplay between lateral wall elongation and septum formation in reacquisition of rod shape, we evaluated the effect of re-adding mecillinam or adding piperacillin, a specific inhibitor of septum formation, at various stages of the reshaping process. It was found that mecillinam was active only when added within the first 30 min of the reshaping process, while piperacillin was active only after 30 min when the cells were close to starting to divide again. These findings provide further support for our previous proposal that, in bacterial rods, elongation and septation are two alternating and competing events of the cell cycle, and are linked to each other in such a way as to force bacterial rods to grow to a given length.

Amdinocillin

Peptidoglycan synthesis and its fine chemical composition in dividing and not dividing Klebsiella pneumoniae cocci.

Peptidoglycan synthesis and its fine chemical composition were studied in dividing and in non-dividing Klebsiella pneumoniae cocci and compared with rods. The beta-lactam mecillinam, a specific inhibitor of lateral wall elongation which causes rod-to-sphere transition in rods, showed 50% inhibition of the peptidoglycan in normal rods of the parent Mir A12 only if added at an early stage of the cell cycle and no effect if added later or during septation. In the rods of the mutant Mir M7, mecillinam was shown to inhibit 50% of peptidoglycan synthesis until rods become cocci, and thereafter to be absolutely devoid of effects. On the contrary, piperacillin, a specific inhibitor of septum formation, was active on all strains regardless of their cell shape, only if added at 20 and removed at 40 min of the cell cycle. As regards the analysis of peptidoglycan fine chemical composition, bacteria dividing as cocci showed alterations in the muropeptide composition consisting in a 50-fold increase in the tetramer family. This alteration was not seen in the cocci that did not divide as such. These results confirm our previous claim that septum formation and lateral wall elongation are mutually exclusive in normal rods and that septum formation requires the synthesis of a peptidoglycan of different chemical composition.

Amdinocillin

In vitro activity of cefpirome (HR 810) against enterococci and staphylococci.

The inhibitory activity of cefpirome (HR 810), a new cephalosporin derivative for parenteral use, was tested by agar dilution methods against Enterococcus faecalis (100 strains), Staphylococcus aureus (40 strains) and coagulase-negative staphylococcal species (60 strains) in comparison with other beta-lactam antibiotics. For E. faecalis, the cefpirome minimum inhibitory concentration (MIC) range was 2-128 micrograms/ml, with an MIC50 of 8 micrograms/ml, and an MIC90 of 64 micrograms/ml. The optimal bactericidal activity against strains with MICs of < or = 8 micrograms/ml occurred at 2-4 times the MIC, and the reduction in the initial inoculum was 99.9-99.7% after 24 h incubation at these concentrations. Mec gene-negative staphylococci (both S. aureus and coagulase-negative species) had cefpirome MICs of 0.25-2 micrograms/ml (MIC50 0.5 microgram/ml, MIC90 1 microgram/ml). Mec gene-positive strains had MICs of 0.5-128 micrograms/ml (MIC50 2 micrograms/ml, MIC90 32 micrograms/ml). Strains with borderline resistance to oxacillin which did not harbor the mec gene and which were susceptible to cefpirome maintained their susceptibility even when high-density inocula were used and after several passages in media containing the antibiotic. These studies present some potential advantages of cefpirome over other cephalosporins in the inhibitory activity against Gram-positive cocci.

Anti-Bacterial Agents

Mechanisms of resistance of enterococci to beta-lactam antibiotics.

Two mechanisms are responsible for resistance of enterococci to beta-lactam antibiotics: alterations of penicillin-binding proteins and production of a beta-lactamase. The latter has been found in a few clinical isolates of Enterococcus faecalis, whereas the former appears to account for resistance in most strains. A correlation has been established between the amount of a particular penicillin-binding protein which has a low affinity for penicillin and the level of resistance. The higher activity of some penicillins, as compared to cephalosporins, has been related to the relatively higher affinity for these penicillins of the penicillin-binding protein involved in the mechanism of resistance. Alterations in the autolytic enzyme pattern have been associated with the paradoxical response to bactericidal activity of penicillin often exhibited by Enterococcus faecalis clinical isolates.

Anti-Bacterial Agents

Lipoteichoic acid as a new target for activity of antibiotics: mode of action of daptomycin (LY146032).

Daptomycin at the MIC allowed the cell mass increase of enterococcal strains and Bacillus subtilis to continue for 2 to 3 h at rates comparable to those of the controls. During this time the cell shape of the former changed to a rod configuration and that of the latter changed to long rods. In these bacteria, in which cell mass continued to increase, the MIC of daptomycin inhibited peptidoglycan synthesis by no more than 20% after 20 min of incubation and by roughly 50% after 2 h of incubation. Other macromolecules, such as DNA, RNA, and proteins, were only slightly affected. In contrast, incorporation of [14C]acetate into lipids was reduced by about 50% in the various strains after 20 min of treatment with daptomycin at the MIC. When the effect of the major lipid-containing polymers on synthesis was evaluated in detail, it was found that under conditions in which peptidoglycan and the other macromolecules mentioned above were inhibited only slightly (20%) and total lipid synthesis was inhibited by 50%, synthesis of teichoic and lipoteichoic acid was inhibited by 50 and 93%, respectively. Daptomycin was not found to enter the cytoplasm of either bacterial or mammalian cells. It bound, in the presence of calcium ions only, to whole bacterial cells, cell walls (both those that contained and those that did not contain membranes), and isolated membranes of bacterial and mammalian cells. Washing with EDTA removed daptomycin from all cells mentioned above and cell fractions except the bacterial membrane. It is concluded that lipoteichoic acid is most likely the primary target of daptomycin.

Acetates