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Nonlethal deleterious mutation-induced stress accelerates bacterial aging.

Random mutagenesis, including when it leads to loss of gene function, is a key mechanism enabling microorganisms' long-term adaptation to new environments. However, loss-of-function mutations are often deleterious, triggering, in turn, cellular stress and complex homeostatic stress responses, called "allostasis," to promote cell survival. Here, we characterize the differential impacts of 65 nonlethal, deleterious single-gene deletions on Escherichia coli growth in three different growth environments. Further assessments of select mutants, namely, those bearing single adenosine triphosphate (ATP) synthase subunit deletions, reveal that mutants display reorganized transcriptome profiles that reflect both the environment and the specific gene deletion. We also find that ATP synthase α-subunit deleted (ΔatpA) cells exhibit elevated metabolic rates while having slower growth compared to wild-type (wt) E. coli cells. At the single-cell level, compared to wt cells, individual ΔatpA cells display near normal proliferation profiles but enter a postreplicative state earlier and exhibit a distinct senescence phenotype. These results highlight the complex interplay between genomic diversity, adaptation, and stress response and uncover an "aging cost" to individual bacterial cells for maintaining population-level resilience to environmental and genetic stress; they also suggest potential bacteriostatic antibiotic targets and -as select human genetic diseases display highly similar phenotypes, - a bacterial origin of some human diseases.

Escherichia coli

Failure of correlation between in vitro and in vivo effect of T and B cell mitogens in the mouse.

T and B cell mitogens as PHA, PWM, LPS, SIII, DS, PVP were investigated in vitro in direct MI assay with mouse PECs as well as in vivo for their phagocytosis-enhancing capacity. All mitogens induced a dose-dependent MI although of differing degrees. In contrast, a phagocytosis-stimulating effect in vivo could be observed only by using the mitogens of bacterial origin such as LPS and SIII; the other mitogens induced, however, rather a loss of phagocytosis, although a cellular reaction in the sense of an increased PEC number was partly registered. The reactivity of PEC to LPS but not to PHA disappeared in the MI assay after foregoing desensitization of mice with the corresponding mitogen, suggesting the existence of a cellular immunity against the bacterial antigen. The importance of the induction of cell-mediated events in infection immunity in a classical immunological way will be discussed.

Animals

Multichassis Expression of Cyanobacterial and Other Bacterial Biosynthetic Gene Clusters.

Heterologous expression of biosynthetic gene clusters (BGCs) is a powerful strategy for natural product (NP) discovery, yet achieving consistent expression across microbial hosts remains challenging. Here, we developed cross-phyla vector systems enabling the expression of BGCs from cyanobacteria and other bacterial origins in Gram-negative Escherichia coli, Gram-positive Bacillus subtilis, and two model cyanobacterial strains including unicellular Synechocystis PCC 6803 and filamentous Anabaena sp. PCC 7120. Following validation using constitutive and inducible expression of the enhanced yellow fluorescent protein (eYFP), we applied these vectors to express the shinorine and violacein BGCs in all four hosts. Promoter tuning, substrate feeding, BGC refactoring, and inducible control enhanced NP production and mitigated host toxicity. Notably, we demonstrated that B. subtilis can serve as a chassis for cyanobacterial NP BGC expression. Our results provide versatile expression platforms for probing BGC function and accelerating natural product discovery from diverse cyanobacterial and other bacterial lineages.

Multigene Family

Histochemical investigation of some mitochondrial and microsomal enzymes in the kidneys of rabbits immunized with type B botulinus anatoxin.

Immunization of rabbits with botulinus anatoxin containing a number of proteins of bacterial origin causes a statistically significant increase in the activity of succinate dehydrogenase, NAD diaphorase and NADP diaphorase as early as after 24 hours. After 5-7 days, the activity of all mitochondrial enzymes drops below the control level and returns to normal by the 14th day. The activity of glucose 6-phosphatase decreases significantly already 24 hours after immunization and returns to normal by the end of the 7th day. The mechanism of excretion of foreign protein in the kidneys of immunized animals is discussed.

Animals

Treatment of acute otitis media of infancy with cefaclor.

The emergence of ampicillin-resistant Haemophilus as a clinical problem in otitis media necessitates a search for alternative, effective therapy. An orally absorbable cephalosporin derivative, cefaclor, is equally effective in vitro against ampicillin-susceptible and -resistant Haemophilus and against other bacteria that cause acute otitis media. Two dosage schedules of cefaclor (40 and 60 mg/kg/day) were evaluated in 95 infants with acute otitis media. Bacterial origin was determined by a culture of tympanocentesis fluid. Success rates using the smaller dosage were inferior to those using the larger dosage. Results of therapy for pneumococcal and Haemophilus infection with 60 mg/kg/day were comparable to those previously found with amoxicillin trihydrate or with combinations of trisulfapyrimadines with erythromycin or penicillin V. One patient with an ampicillin-resistant Haemophilus infection responded well to cefaclor and did not have a relapse. Cefaclor was well tolerated and caused an acceptably low incidence of minor, adverse effects. Cefaclor deserves further testing as a candidate for preferred status as a single-drug treatment of acute otitis media.

Acute Disease

Comparison of solubility properties of alpha-paramyosin, beta-paramyosin and acid-extracted paramyosin.

The solubility properties of paramyosin in the zones of pH and ionic strength in which aggregation occurs were initially studied using preparations isolated by a method originally described by Bailey (Bailey, K. (1956), Pubbl. Stn. Zool. Napoli 29, 26). Other preparations yielding apparently different protein components have been described by Hodge (Hodge, A.J. (1952), Proc. Natl. Acad. Sci., U.S.A. 38, 850) using acid conditions, and Stafford and Yphantis (Stafford, W.F., AND Yphantis, D. (1972), Biochem. Biophys. Res. Commun. 49, 848) have identified alpha-, beta-, and gamma-paramyosin using various times and temperatures of extraction with or without ethylenediaminetetraacetic acid. We have found that acid-extracted paramyosin is very similar if not identical to alpha-paramyosin, but that both acid and alpha forms differ considerably from beta- and gamma-paramyosin. Beta-Paramyosin precipitates abruptly from solution in narrow zone of pH below neutrality, and increases in ionic strength shift the zone of precipitation toward lower pH values. In contrast, both acid and alpha-paramyosin show gradual aggregation with changing pH at lowerionic strength (less than 0.3) but sharp transitions similar to beta-paramyosin at higher ionic strength (greater than 0.3). Transitions were also found at lower pH (ca. 4.0) which were not mirror images of transitions at higher pH (ca. 7.0). Viscosity measurements show that acid extracted paramyosin is close in behavior to a native extract obtained by extraction in mild, nondenaturing media containing mixed antibiotics. Each of these extracts differed considerably from beta-paramyosin. Mild, nonhydrolytic procedures employed by others to remove small, noncovalent bonded components or to separate protein complexes were not effective in converting alpha- to beta-paramyosin. Comparison of extraction procedures strongly supports the suggestion of Stafford and Yphantis that beta- and gamma-paramyosin are hydrolytic products of alpha-paramyosin and that the proteases responsible may be of bacterial origin.

Animals

Autoimmune hemolytic anemia and the Kell blood groups.

Approximately one in 250 people with autoimmunity involving their red cells have IgG autoantibodies with specificity in the Kell blood groups. Red cells of these individuals have an acquired temporary weakening of their Kell antigens. Some of the patients also have allo-anti-K in their serum. This report presents a case in which an IgG autoantibody may define a new high-incidence red cell antigen related to the Kell blood groups. The patient's Kell blood group antigens are depressed, and his serum contains allo-anti-K. It is postulated that reduced red cell Kell antigenicity is caused by enzymatic degradation, possibly of bacterial origin, and that the acquired loss of Kell antigens, the Kell-specific autoimmune state, and the serum all0-anti-K, are all related aspects of one phenomenon.

Adult

Recurrent herpetic angular blepharitis in an adult.

A 36-year-old man had several episodes of left angular blepharoconjunctivitis associated with upper respiratory infections, herpes labialis, or emotional stress. The clinical diagnosis had always been a blepharitis of bacterial origin. During the last attack, cytologic examination of a scraping obtained from an eyelid pustule vesicle revealed multinucleated keratinocytes, diagnostic of a herpetic infection. Virologic studies proved that herpes simplex virus type 1 was the causal agent.

Adult

Paramagnetic spin label interactions with the envelope of a group A arbovirus. Lipid organization.

Electron paramagnetic resonance observations were made on nitroxide spin- labeled molecules which were bound to the TC-83 vaccine strain of Venezuelan equine-encephalomyelitis virus. Paramagnetic resonance parameters derived from the observations and their dependence on sample temperature were similar but not identical to those which have been reported for these labels dissolved in lipid bilayer membranes of mammalian and bacterial origin. The data has a mechanical rigidity substantially greater than that of bilayers in cellular membranes. A model is presented which assumes the location of the lipid bilayer outside the nucleoprotein capsid and inside a spherical layer of envelope proteins. The model is in accord with Harrison's X-ray diffraction results for Sindbis virus. The model is discussed in terms of its implications with respects to the role played by lipid in viral maturation and infectivity.

Animals

Transcription and translation of cloned Drosophila DNA fragments in Escherichia coli.

The expression of three unique DNA fragments from Drosophila melanogaster which have been inserted into Escherichia coli (E. coli) via the plasmid, pSC 101, was studied. The hybrid plasmid DNA molecules containing Drosophila DNA were transformed into the minicell producing strain of E. coli, X1411. Drosophila DNA-directed RNA synthesis was studied by hybridizing newly synthesized RNA isolated from the minicells with various DNA fragments which were immobilized on nitrocellulose filters. RNA was synthesized as readily from the inserted Drosophila DNA as from the original bacterial plasmid, pSC 101. In one case, transcription appeared to be initiated preferentially on one of the two strands of a Drosophila DNA fragment regardless of the orientation of that Drosophila DNA fragment with respect to the pSC 101 sequences. Two of the three Drosophila DNA fragments did not induce the synthesis of new polypeptides in minicells as detected by autoradiography of [35S]methionine-labeled polypeptides on polyacrylamide gels. The third Drosophila DNA fragment caused the synthesis of one additional polypeptide of 29 000 daltons. When an 8200 base pair portion of the third inserted Drosophila DNA (63% OF THE TOTAL Drosophila insertion) was removed by digestion with the restriction enzyme, Eco R1, this new polypeptide was no longer synthesized by minicells containing the remaining Drosophila DNA. When the 8200 base pair fragment was placed back into its parent plasmid as an inversion, the new polypeptide did not reappear. In addition, the presence of some, but not all, of the Drosophila DNA insertions affected the relative synthesis of the six polypeptides coded for by the parent plasmid, pSC 101.

Animals

Auto anti-Kpb associated with weakened antigenicity in the Kell blood group system: a second example.

An 84-year-old woman with intestinal bleeding had marked reduction of red blood cell antigenicity in the Kell system, and a positive direct antiglobulin test caused by auto-anti-Kpb. KX antigen activity of her cell was increased, an observation which supports the belief that KX marks a precursor structure utilized in the normal Kell biosynthetic pathway. It is postulated that reduced Kell antigenicity was an acquired change that resulted from enzymatic degradation, possibly of bacterial origin.

Adolescent

The nutritional toxicity of Phaseolus vulgaris lectins.

In rats fed on beans (Phaseolus vulgaris) the poorly digestible lectins were shown to react with intestinal cells in vivo and to cause a disruption of many of the brush borders of duodenal and jejunal enterocytes. Although depressed to a certain extent, absorption still occurred, probably through the non-disrupted cells of the small intestine. In addition, abnormal absorption of potentially harmful substances, lectin-related or of bacterial origin, could also occur, possibly as a direct effect of the disruption caused by the lectins on the enterocytes. It is suggested that toxicity was the result of ensuing systemic effects, such as for example the observed high N excretion possibly through increased tissue catabolism.

Animals

Inhibition of urease activity by hydroxamic acid derivatives of amino acids.

Hydroxamic acids have been reported to be potent and specific inhibitors of urease (EC 3.5.1.5) activity of plant and bacterial origin. The present investigation was performed on the inhibitory effect of hydroxamic acid derivatives of naturally occurring amino acids on the urease activity of the Jack Bean and the alimentary tracts of rats. Methionine-hydroxamic acid was the most powerful inhibitor (I50=3.9 X 10(-6) M) among nineteen alpha-aminoacyl hydroxamic acids. Phenylalanine-, serine-, alanine-, glycine-, histidine-, threonine-, leucine-, and arginine-hydroxamic acids followed, in order of decreasing inhibitory power. The inhibition proceeded with time at a comparable rate to fatty acyl hydroxamic acid inhibition. The I50 values of alpha-aminoacyl hydroxamic acids were found to be almost equal to those of the corresponding fatty acyl hydroxamic acids. This fact shows that the alpha-amino group did not affect inhibitory power. However, aspartic-beta-, lysine-, and glutamic-gamma-hydroxamic acids, in descending order, were much less inhibitory, probably due to the presence of a carboxyl or omega-amino group. Furthermore, the pH optimum of the inhibition shifted to lower pH in the presence of a carboxyl group, and to a higher pH in e presence of an amino group. The results suggest that the dissociation of an acidic or a basic group reduces the inhibitory power of hydroxamic acid. Hydroxamic acid inhibits urease activity with strict specificity, excpet for aspartic-beta-hydroxamic acid, which inhibited asparaginase competitively. Hydroxamic acid derivatives of amino acids inhibited not only the urease activity of the Jack Bean, but also that of the caecum and ileum parts of the rat intestine.

Amino Acids

Properties of a gonococcal inhibitor produced by Escherichia coli.

Strains of Escherichia coli can inhibit the in vitro growth of Neisseria gonorrhoeae. One E. coli strain released a potent agar-diffusible gonococcal growth inhibitor which was extracted and assayed in an agar well assay system. The culture conditions necessary to produce the inhibitor were determined. The inhibitor was bacteriostatic, in most cases, for N. gonorrhoeae. Based on ultrafiltration and column chromatography, the inhibitor appeared to have a molecular weight in the range of 1200 to 2000. Evidence that the molecule contained charged sites was obtained by membrane binding and column chromatography. The inhibitor was stable to extremes of heat, cold and pH. It was not volatile or susceptible to proteolytic enzymes, lysozyme, lipase, DNAase, RNAase or certain chelating agents. Its activity was completely blocked by ferric ammonium citrate. This inhibitor is dissimilar to previously reported gonococcal inhibitors of bacterial origin.

Escherichia coli

Esterolytic activities of rat intestinal mucosa. 1. Characterization, cellular distribution and subcellular localization of a glycerol-ester hydrolase.

The preferential cellular distribution in the villus tip and the subcellular localization in the endoplasmic reticulum of an intestinal glycerol-ester hydrolase from rat mucosa are described. The enzyme is shown not to be from either pancreatic or bacterial origin; it catalyzes the hydrolysis of short- and medium chain triglycerides and of p-nitrophenylacetate. Contrarily to the specificity found for the pig intestinal lipase (Serrero, Négrel and Ailhaud, 1975), no activity is detectable against acylCoA; a thiolester hydrolase different from the glycerol-ester hydrolase was demonstrated after differential solubilization and chromatographic separation. A high proportion of glycerol-ester hydrolase is present in the intestinal lumen; its possible complementary role in lipid degradation is discussed.

Aging

Regulation of exocellular proteases in Neurospora crassa: metabolic requirements of the process.

To induce exocellular proteolytic enzyme from carbon-starved exponential-phase cells of Neurospora crassa, both a protein substrate and an activating protease of certain specific properties must be present at the same time. The cells must be capable of protein synthesis, since cycloheximide inhibits the process, but cell growth, as determined by increase in cell mass, does not appear to be required. Both soluble (bovine serum albumin, myoglobin) and insoluble protein substrates (collagen, corn zein) will affect protease induction, although certain soluble, globular proteins (egg white globulin, bovine gamma globulin) will not. In most cases, rates of protease induction are proportional to protein concentration, regardless of the nature of the inducing protein. All activating proteases capable of affecting induction in a manner similar to that of N. crassa exocellular protease were of bacterial origin and were exoproteases. Mammalian proteases and peptidases had little or no effect on the induction process.

Cycloheximide

Some characteristics of collagenase activity in gingival crevicular fluid and its relationship to gingival diseases in humans.

Collagenase activity in human gingival fluid was measured using a radioactive collagen fibril assay. The activity was positively correlated with the severity of gingival disease. The fluid collagenase seemed to be controlled by alpha 2-macroglobulin, based on its activation by NaSCN, and to be present solely in the extracellular fraction. Examination of the collagen breakdown products by acrylamide gel electrophoresis indicated that the fluid collagenase was of tissue rather than bacterial origin.

Adult

Pharmacokinetic and therapeutic studies of pivmecillinam in patients with normal and impaired renal function.

Pivmecillinam which is the oral form of mecillinam was evaluated by treatment of 26 patients presenting various types of urinary tract infections and by prophylactic treatment of 12 patients. Pivmecillinam given in a daily dosage of 1.2 g for periods of 1 to 56 weeks was well tolerated in all of the patients including those with impaired renal function without any dose reduction. The original bacterial strain in the urine was eradicated in 100% of the cases. Two patients had a superinfection and 4 had a recurrence during a 3-month follow-up period. The oral absorption of pivmecillinam was investigated in 15 patients with normal or slightly reduced renal function and in 5 patients on maintenance hemodialysis. High serum levels were achieved within 1 to 2 h after administration. Patients with reduced renal function showed retarded elimination rates, suggesting that the dose should be adjusted in this category of patients.

Acute Kidney Injury