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Biomedical subjects

M Sugai

Publications and source records attributed to M Sugai.

At least 91 records · Page 5Linked to original sources

Cytotoxic necrotizing factor type 2 produced by virulent Escherichia coli modifies the small GTP-binding proteins Rho involved in assembly of actin stress fibers.

Cytotoxic necrotizing factor type 2 (CNF2) produced by Escherichia coli strains isolated from intestinal and extraintestinal infections is a dermonecrotic toxin of 110 kDa. We cloned the CNF2 gene from a large plasmid carried by an Escherichia coli strain isolated from a lamb with septicemia. Hydropathy analysis of the deduced amino acid sequence revealed a largely hydrophilic protein with two potential hydrophobic transmembrane domains. The N-terminal half of CNF2 showed striking homology (27% identity and 80% conserved residues) to the N-terminal portion of Pasteurella multocida toxin. Methylamine protection experiments and immunofluorescence studies suggested that CNF2 enters the cytosol of the target cell through an acidic compartment and induces the reorganization of actin into stress fibers. Since the formation of stress fibers in eukaryotic cells involves Rho proteins, we radiolabeled these small GTP-binding proteins from CNF2-treated and control cells with a Rho-specific ADP-ribosyltransferase. The [32P]ADP-ribosylated Rho proteins from CNF2-treated cells migrated slightly more slowly in SDS/PAGE than did the labeled proteins from the control cells. This shift in mobility of Rho proteins in SDS/PAGE was also observed when CNF2 and the RhoA protein were coexpressed in E. coli. We propose that Rho proteins are the targets of CNF2 in mammalian cells.

Actin Cytoskeleton↗

Effect of combination of oxacillin and non-beta-lactam antibiotics on methicillin-resistant Staphylococcus aureus.

The in-vitro activity of oxacillin combined with non-beta-lactam antibiotics, bacitracin, vancomycin, enduracidin, tunicamycin, flavomycin, fosfomycin, and cycloserine, was investigated in 23 methicillin-resistant and 15 methicillin-susceptible Staphylococcus aureus strains. In the presence of a non-beta-lactam antibiotic (0.25 MIC), the MICs of oxacillin for methicillin-resistant S. aureus (MRSA) strains and methicillin-susceptible S. aureus (MSSA) strains were lowered. This effect was most marked with MRSA strains, and bacitracin, flavomycin, and tunicamycin increased the susceptibility of MRSA to oxacillin by greater than 200-fold. More than 87% and 77% of MRSA and MSSA strains, respectively, were synergically inhibited by a combination of oxacillin with bacitracin, tunicamycin, flavomycin or cycloserine (fractional inhibitory concentration < or = 0.5). Polyanetholesulfonic acid prevented the lysis of MRSA cells treated with a combination of oxacillin and 0.25 MIC of bacitracin, but did not prevent cell death. The penicillin binding protein (PBP) profile of MRSA was not affected by incubation with 0.25 MIC of non-beta-lactam antibiotics. These results suggest that the increased antibacterial activity of oxacillin in the presence of non-beta-lactam antibiotic is not the consequence of activation of autolysis or of a decrease in bulk PBP synthesis.

Anti-Bacterial Agents↗

The effect of Triton X-100 on the in-vitro susceptibility of methicillin-resistant Staphylococcus aureus to oxacillin.

The effect of the non-ionic detergent, Triton X-100, on the in-vitro activity of oxacillin against methicillin-resistant (MRSA) and methicillin-susceptible (MSSA) strains of Staphylococcus aureus was investigated. In the presence of Triton X-100, the MICs of oxacillin for both MRSA and MSSA isolates were reduced; this enhancing effect was particularly marked for the MRSA strains. Triton X-100 therefore counteracted the resistance to methicillin encoded by mecA. In the presence of oxacillin at subinhibitory concentrations, Triton X-100 induced the bacteriolysis of MRSA and potentiated the autolysis of these organisms. However, the detergent had no effect on the bacteriolytic enzyme profile or the susceptibility of the bacterial cell wall to bacteriolytic enzymes, nor did it promote the binding of oxacillin to the penicillin-binding protein (PBP) 2A. On the other hand, it stimulated the release from the bacteria of acylated lipoteichoic acid (LTA), a putative endogenous regulator of autolysins. Autolytic enzyme-deficient MRSA mutants were equally as sensitive as the parent strain to the effect of Triton X-100 on susceptibility to oxacillin. These results indicate that the enhanced in-vitro activity of oxacillin against MRSA in the presence of Triton X-100 cannot be accounted for simply by the induction of bacteriolysis following activation of autolytic enzymes by the detergent-stimulated release of LTA.

Autolysis↗

Isolation and characterization of Staphylococcus aureus mutants which form altered cell clusters.

Staphylococcus aureus FDA 209P produces two extracellular bacteriolytic enzymes, 51-kDa endo-beta-N-acetylglucosaminidase (GL) and 62-kDa N-acetylmuramyl-L-alanine amidase (AM), both of which can disperse cell clusters. To characterize the physiological roles of these enzymes in vivo, mutants with altered autolysin activity were isolated, and their degree of cluster formation in broth culture was assessed. Bacteriolytic activities of GL and AM, produced and secreted from these mutants into the culture fluid and detected with activity gels, coincided well with the degree of cluster formation of the mutants. The mutants with little or no enzyme activity grew in clusters, whereas those with high activity grew as well-separated cocci, suggesting that these enzymes are involved in cell separation of S. aureus in vivo.

Acetylglucosaminidase↗

[The effect of stellate ganglion block on the local and global cardiac uptake of 123I-metaiodobenzylguanidine].

To investigate the effect of stellate ganglion block (SGB) on the cardiac uptake of 123I-metaiodobenzylguanidine (MIBG), four patients without heart disease underwent SGB. Studies were done twice: once with SGB and once without SGB. Anterior planar images and myocardial SPECT images were taken at 10 minutes and 60 minutes after MIBG injection both with and without SGB. Cardiac uptake of MIBG on planar images estimated by heart/liver ratio was significantly higher with SGB at both imaging times (p < 0.01, p < 0.05) than without SGB. SGB had no effect on the local uptake of MIBG on SPECT images. In conclusion, SGB did not change the local cardiac uptake of MIBG, but it appeared to increase the global myocardial uptake of MIBG.

3-Iodobenzylguanidine↗

Processing of lipid-modified prolipoprotein requires energy and sec gene products in vivo.

The kinetics of processing of glyceride-modified prolipoprotein that accumulated in globomycin-treated Escherichia coli has been found to be affected by sec mutations, i.e., secA, secE, secY, secD, and secF, and by metabolic poisons which affect proton motive force (PMF). The effect of sec mutations on processing of glyceride-modified prolipoprotein in vivo was not due to a secondary effect on PMF. Neither a secF mutation nor metabolic poisons affected the processing of previously accumulated proOmpA protein in vivo, suggesting that the requirements for functional sec gene products and PMF are specific to the processing of lipoprotein precursors by signal peptidase II.

Anti-Bacterial Agents↗

Staphylococcal ADP-ribosyltransferase-sensitive small G protein is involved in brefeldin A action.

An early event in the action of brefeldin A (BFA) is the dissociation of beta-coat protein (beta-COP) from the Golgi membrane. We have recently shown that staphylococcal ADP-ribosyltransferase (epidermal cell differentiation inhibitor (EDIN)), which specifically modifies a small G protein, rho, mimics the action of BFA and disassembles the Golgi apparatus in Vero cells (Sugai, M., Chen, C-h., and Wu, H. C. (1992) Proc. Natl. Acad. Sci. U.S.A. 89, 8903-8907). Three independent BFA-resistant cell lines (BER-40 from Vero cells, PtK1, and MDCK) showed cross-resistance to EDIN regarding the release of the beta-COP from the Golgi membrane by EDIN or BFA. BFA as well as EDIN induced disassembly of the actin microfilaments in Vero cells, and they both failed to induce the disassembly of actin microfilaments in BER-40, PtK1, and MDCK cells. BFA inhibited protein secretion in Vero cells but not in BFA-resistant cell lines, whereas EDIN did not inhibit protein secretion in either Vero or other cell lines. AlF-4 inhibited the effect of EDIN as well as that of BFA on the distribution of the beta-COP. These results suggest that an EDIN-sensitive rho protein together with trimeric and other small G protein(s) is involved in the regulation of the assembly of coated vesicles and vesicular transport in the Golgi apparatus.

Animals↗

Bacterial ADP-ribosyltransferase with a substrate specificity of the rho protein disassembles the Golgi apparatus in Vero cells and mimics the action of brefeldin A.

Epidermal-cell differentiation inhibitor (EDIN) is an exoenzyme produced by Staphylococcus aureus that catalyzes the ADP-ribosylation of rho proteins, members of the small GTP-binding protein family. In this study we demonstrate that EDIN induces a rapid morphological change in the Golgi structure of monkey kidney Vero cells that is similar to the changes elicited by brefeldin A (BFA). Treatment of Vero cells with EDIN resulted in a rapid disappearance of N-7-(4-nitrobenzo-2-oxa-1,3-diazole)-6-aminocaproylsphingosine, a 110-kDa protein (beta-COP, coat protein), and mannosidase II from the Golgi structure. Lower doses of EDIN and BFA had a synergistic effect on the redistribution of the Golgi markers. The similarities in the effects of EDIN and BFA in Vero cells also include the EDIN- or BFA-mediated protection of Vero cells from ricin cytotoxicity and prevention of the effects of EDIN or BFA on the distribution of Golgi markers by the pretreatment of Vero cells with guanosine 5'-[gamma-thio]triphosphate or forskolin. Incubation of a Vero-cell homogenate with [32P]NAD+ and EDIN in vitro resulted in the appearance of a labeled band with an apparent molecular mass of 22 kDa. The morphological change of the Golgi structure induced by EDIN was inhibited by nicotinamide, an inhibitor of EDIN-catalyzed ADP-ribosylation. Thus these data suggest that a rho protein is involved in the membrane trafficking between the Golgi and the endoplasmic reticulum of Vero cells and that this rho protein may be a target shared by EDIN and BFA.

4-Chloro-7-nitrobenzofurazan↗

Possible influence of lysophospholipase on the production of 1-acyl-2-acetylglycerophosphocholine in macrophages.

The rate of production of 1-O-alkyl-2-acetyl-sn-glycero-3-phosphocholine (PAF) and 1-acyl-2-acetyl-sn-glycero-3-phosphocholine (acylPAF) was measured in macrophages following the incorporation of [3H]acetate. Upon activation by A23187, guinea pig alveolar macrophages incorporated [3H]acetate into PAF, but a little radioactivity was found in acylPAF. However, labeling of acylPAF and PAF with [3H]acetate was greatly enhanced in A23187-stimulated alveolar macrophages that had been pretreated with phenylmethanesulphonyl fluoride (PMSF). [3H]PAF was predominantly converted to 1-[3H]alkyl-2-acyl glycerophosphocholine, but [14C]acylPAF rapidly hydrolyzed to 14C-labeled free fatty acid by the incubation with lysates prepared from macrophages. The deacetylation of [14C]acylPAF and [3H]PAF by acetylhydrolase and also the hydrolysis of [14C]lysoPC by lysophospholipase were strongly inhibited in macrophages that had been pretreated with PMSF, while PMSF failed to inhibit the activities of acetyltransferase and acyltransferase. The relative proportions of PAF and acylPAF were quite different in different types of cells. In contrast to alveolar macrophages, peritoneal macrophages, neutrophils and spleen cells from guinea pigs incorporated 2-4 times more [3H]acetate into acylPAF than into PAF. The presence of high levels of acylPAF in peritoneal macrophages was confirmed by GLC-MS analysis. The activities of lysophospholipase, acetylhydrolase and acetyltransferase were measured in alveolar and peritoneal macrophages to determine whether the preferential formation of acylPAF as compared to PAF in peritoneal macrophages was due to differences in these activities between alveolar and peritoneal macrophages. The activity of acetylhydrolase of peritoneal macrophages was almost the same as that in alveolar macrophages. The activity of acetyltransferase in peritoneal macrophages was about half of that in alveolar macrophages. However, the activity of lysophospholipase in peritoneal macrophages was one-sixth of that in alveolar macrophages. These results suggest that lysophospholipase is one of the primary factors involved in the control of the production of acylPAF in activated cells, and that it acts by modulating the availability of lysoPC for the synthesis of acylPAF. Furthermore, high levels of activity of lysophospholipase allow the preferential formation of PAF, via the rapid hydrolysis of lysoPC which would act as a competitive inhibitor of the incorporation of acetate into lysoPAF.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Epidermal cell differentiation inhibitor ADP-ribosylates small GTP-binding proteins and induces hyperplasia of epidermis.

Epidermal cell differentiation inhibitor (EDIN) is a recently discovered protein which inhibits terminal differentiation of cultured keratinocytes (Sugai, M., Enomoto, T., Hashimoto, K., Matsumoto, K., Matsuo, Y., Ohgai, H., Hong, Y.-M., Inoue, S., Yoshikawa, K., and Suginaka, H. (1990) Biochem. Biophys. Res. Commun. 173, 92-98). The amino acid sequenced deduced from the EDIN gene has revealed that EDIN shares high amino acid sequence homology with the exoenzyme C3 of Clostridium botulinum (Inoue, S., Sugai, M., Murooka, Y., Paik, S.-Y., Hong, Y.-M., Ohgai, H., and Suginaka, H. (1991) Biochem. Biophys. Res. Commun. 174, 459-464), which has been shown to ADP-ribosylate the rho/rac proteins (members of the small GTP-binding protein family). We show here that EDIN ADP-ribosylates rhoB p21 in time- and dose-dependent manners in a cell-free system. Kinetic studies of the ADP-ribosylation and peptide mapping of the reaction products of rhoB p21 by EDIN and C3 suggest that the mode of action of the ADP-ribosylation by EDIN is quite similar to that by C3 and that the ADP-ribosylation site of rhoB p21 by EDIN is presumably the same as that by C3. Proteins in epidermal membranes and keratinocyte homogenate with Mr values of about 22,000 are ADP-ribosylated by EDIN or C3. Treatment of cultured human keratinocytes by EDIN or C3 results in an inhibition of terminal differentiation and a stimulation of growth of the cells. Moreover, EDIN and C3 injected into adult mouse skin induce hyperplasia of epidermis. These results suggest that EDIN and C3 affect growth and differentiation of keratinocytes by ADP-ribosylation of protein(s) with a Mr of about 22,000, which may be the rho/rac proteins or related proteins.

Adenosine Diphosphate Ribose↗

Export of the outer membrane lipoprotein is defective in secD, secE, and secF mutants of Escherichia coli.

The export of major outer membrane lipoprotein has been found to be affected in secD, secE, and secF mutants of Escherichia coli, which are defective in protein export in general. After a shift to the nonpermissive temperature, the kinetics of accumulation of prolipoprotein and pre-OmpA protein was indistinguishable from that of pre-OmpA protein accumulation in the secD and secF mutants but different in the secE mutant. The prolipoprotein accumulated in the secD, secE, and secF mutants at the nonpermissive temperature was not modified with glyceride. We conclude from these results and those of previous studies that the export of lipoprotein requires all common sec gene products except the SecB protein, i.e., the SecA, SecD, SecE, SecF, and SecY proteins.

Bacterial Outer Membrane Proteins↗

[Effects of age on blood pressure, heart rate, and sensory blockade by spinal anesthesia with plain 0.5% bupivacaine].

To discover the influence of age on spinal blockade with plain bupivacaine, 23 patients were administered a subarachnoid injection of approximately 4.0 ml of 0.5% bupivacaine. The patients were divided into two groups. One group consists of patients with ages under 65 years (younger group, n = 13), and the other group consists of patients older than 65 years (elder group, n = 10). The following results were obtained. The time to onset of anesthetic effects (pinprick discrimination, temperature discrimination, and light touch discrimination) decreased with age. At 180 min after the administration, spinal blockade level did not have a significant difference. The degree of the decrease of systolic arterial pressure was greater in the elder group than in the younger group. However, the degree of the decrease of heart rate was greater in the elder group than in the younger group.

Adolescent↗

Suppression of penicillin-induced lysis of Staphylococcus aureus by cibacron blue 3G-A.

The effect of cibacron blue 3G-A (CB) on bacteriolysis induced by penicillin G was investigated using Staphylococcus aureus FDA 209P. Penicillin-induced lysis was completely inhibited by 30 microM CB. However, the bactericidal effect of penicillin G was not influenced by CB. These results indicate that a bacteriolytic process is not essential for penicillin to kill S. aureus.

Bacteriolysis↗

Molecular cloning and sequencing of the epidermal cell differentiation inhibitor gene from Staphylococcus aureus.

We recently purified to homogeneity a protein inhibiting differentiation of cultured keratinocytes from extracellular products of Staphylococcus aureus, and named it epidermal cell differentiation inhibitor (EDIN). In the present study, we isolated and sequenced the structural gene coding for EDIN from Staphylococcus aureus E-1 using oligonucleotide probes on the basis of the partial amino acid sequence of the purified EDIN. DNA sequencing of the cloned DNA revealed an open reading frame encoding 247 amino acids as a precursor of EDIN, which included an NH2-terminal signal sequence of 35 amino acid residues. Processing of this precursor produces a mature EDIN protein composed of 212 amino acids with a calculated Mr of 23,782. The EDIN shared 35% amino acid homology with the ADP-ribosyltransferase C3 of Clostridium botulinum. These results with biological properties of EDIN described previously indicate that EDIN is a novel protein.

Amino Acid Sequence↗

Cibacron blue 3G-A inhibits cell separation of gram-positive bacteria.

A triazine dye, Cibacron blue 3G-A (CB), is an inhibitor of cell separation of staphylococcal spp. therefore, we examined the effect of CB on growth of gram-positive bacteria other than Staphylococcus. CB added to the medium of growing cultures of strains of genus Micrococcus, Streptococcus, Lactobacillus and Bacillus caused inhibition of cell separation. Moreover, in case of Bacillus and Lactobacillus, individual cells were elongated as filament. Strains of the genus Micrococcus were as sensitive to CB as genus Staphylococcus in which the minimum concentrations of CB needed for inhibition of cell separation ranged from 15 to 100 microM. Other strains belong to genus Streptococcus, Bacillus and Lactobacillus were less sensitive; the minimum concentrations were 100 microM--25 mM.

Bacillus↗

Visualization of endo-beta-N-acetylglucosaminidase, lysozyme, and lysostaphin after polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulphate.

Bacteriolytic enzymes of different bond specificities, denatured by sodium dodecyl sulphate (SDS), were electrophoresed in polyacrylamide gels containing bacterial cells, then renatured after removal of SDS by diffusion. Enzyme activity was seen in sharp transparent bands resulting from bacteriolysis in the gels, while these sections containing bacterial cells appeared cloudy. Bacteriolytic enzymes including staphylococcal endo-beta-N-acetylglucosaminidase, lysozyme (N-acetylmuramidase), and lysostaphin (endopeptidase) were detected. The major bacteriolytic enzymes of Staphylococcus spp. were identified in gels after electrophoresis of crude enzyme preparations. This demonstrates the wide applicability of this method to the study of staphylococcal bacteriolytic enzymes. However, it should be noted that the method will fail to detect activities of bacteriolytic enzymes which are irreversibly inhibited by SDS.

Bacteriolysis↗

Mechanism of aminoglycoside enhancement of Staphylococcus aureus adherence to HeLa cells.

There is enhanced adherence of Staphylococcus aureus to HeLa cells if the organism is grown in the presence of sub-lethal concentration of aminoglycosides. In this study, we investigated the mechanism of this enhancement. Cell surface components obtained by lysosaphin digestion under hypertonic conditions were examined for binding to HeLa cells. The components considered responsible for the adherence were recovered more from aminoglycoside treated cells than from control, benzylpenicillin or chloramphenicol treated cells. Using a contact angle measurement, the bacterial cell surface was found to be more hydrophobic after growing in the presence of some aminoglycosides, and hydrophilic which decreased adherence, after growing in the presence of benzylpenicillin and ofloxacin. Spectinomycin and kasugamycin, which are both aminoglycosides which do not cause misreading, failed to enhance adherence suggesting that misreading caused by aminoglycosides plays an important role in the enhancement of adherence.

Aminoglycosides↗

Effects of antibiotics on nonopsonized adherence of Staphylococcus aureus to human polymorphonuclear leukocytes.

We investigated the effects of several antibiotics on the adherence of Staphylococcus aureus FDA 209P to polymorphonuclear leukocytes. Sublethal concentrations of aminoglycosides enhanced staphylococcal adherence to polymorphonuclear leukocytes, whereas beta-lactams, minocycline, ofloxacin and clindamycin decreased the adherence. Chloramphenicol and rokitamycin had no effect. It is likely that the adherence following antibiotic treatment is related to cell surface hydrophobicity determined by the measurement of the contact angle of 1-bromonaphthalene on a monolayer of staphylococcal cells.

Aminoglycosides↗