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[Immunological characteristics of the protein antigens of the family Neisseriaceae. II. The importance of an immunochemical analysis of the protein complexes for a study of taxonomy problems].

The study of antigenic interrelations in the family Neisseriaceae resulted in the isolation of 2 main immunologically separated variants of protein complexes: the first variant was characteristic of nonpathogenic and pathogenic species of the genus Neisseria as well as of 7 taxonomically undefined Neisseria species (N. lactamicus, N. cuniculi, N. ellongata, N. ovis, N. animalis, N. cinerea, N. canis) and Gemella haemolysans; the second variant was represented by the genera Branhamella and Acinetobacter. N. caviae and 3 out of 14 Neisseria strains of undefined species had no common antigens with the genera Neisseria and Branhamella. The importance of the immunotyping of protein complexes for studying the problems connected with the taxonomy of the family Neisseriaceae was considered.

Antigens, Bacterial

Occurrence and patterns of waxes in Neisseriaceae.

Forty-five strains classified in the family Neisseriaceae were analysed for wax esters by gas-liquid chromatography. The amounts and types of waxes varied between the taxa. Waxes were not detected in 16 strains of 'true neisseriae' (genus Neisseria) or in two strains of Kingella, but they were found in all 'false neisseriae', in all species of Moraxella except Moraxella phenylpyrouvica, in five out of 10 strains of Acintobacter, and in all strains of a group of psychrophilic, oxidase-positive organisms. The chain lengths of the wax esters ranged from C24 to C42, with C36 predominating. In all taxa, esters with even numbers of carbon atoms constituted 70 to 100% of the total. Saturated, mono-unsaturated and diunsaturated waxes were found. Acinetobacter strains were characterized by large amounts (30 to 98%) of di-unsaturated wax esters; such waxes did not exceed 8% in the 'false neisseriae' or Moraxella spp. Waxes of strains belonging to the psychrophilic, oxidase-positive group generally resembled those found in Moraxella. Wax esters with odd numbers of carbon atoms were abundant in M. lacunata (29%), M. atlantae (15%) and in the psychorophilic group (19 to 28%); long-chain esters (C40 or above) were characteristic of M. atlantae (30%) and one strain of M. osloensis (26%).

Chromatography, Gas

Neisseriaceae, a group of bacteria with dihydrofolate reductases, moderately susceptible to trimethoprim.

Dihydrofolate reductases of five species of the family Neisseriaceae were compared by means of inhibition profiles, using several structurally different inhibitors, including trimethoprim (TMP) and pyrimethamine. All enzymes were seen to be highly susceptible to the folate analog aminopterin, but exhibited moderate susceptibility to all other inhibitors tested. Approximately 200-fold higher concentrations of TMP were needed to inhibit neisserial reductases as compared to the E. coli enzyme. Besides poor penetration this is assumed to be the main basis for the low susceptibility of neisseriae to TMP. In addition to TMP all other inhibitors were also moderately active or inactive in vitro. The enzymatic differences, as seen from inhibition profiles, were statistically significant but small among all species of the genus Neisseria. Branhamella catarrhalis on the other hand was seen to be far less related to the other neisseriae, as seen by the inhibition profile of its reductase, its dihydrofolate reductase conttent, as well as by its in vitro properties.

Drug Resistance, Microbial

Gas chromatography of bacterial whole cell methanolysates. VII. Fatty acid composition of Acinetobacter in relation to the taxonomy of Neisseriaceae.

The cellular fatty acids of seventeen Acinetobacter strains were determined. Most acids identified were previously found in neisseriae and moraxellae. Specific for Acinetobacter was 2-hydroxydodecanoid acid and a few minor unidentified components. The fatty acid data were analysed by numerical methods and compared with previous results obtained for neisseriae and moraxellae. The findings were consistent with genetic evidence for some affinities of genus Acinetobacter to genus Moraxella and "false neisseriae". Occasionally, a high resemblance in fatty acid pattern was demonstrated between a Moraxella strain and certain strains of Acinetobacter, and also between an Acinetobacter strain and certain "true neisseriae". Still, the acinetobacters constituted one single cluster separated from the other genera of Neisseriaceae.

Acinetobacter

[Immunologic characteristics of the protein antigens of the Neisseriaceae family. I. Antigenic interrelationships between nonpathogenic representatives of the genus Neisseria].

The immunological characteristics of protein complexes isolated from the filtrates of broth cultures, obtained after prolonged incubation, of 86 strains of N. perflava, N. flava, N. subflava, N. Flaviscens, N. sica and N. mucosa are presented. All these strains, irrespective of their species, had 11--15 common antigens and differed by 1--4 components. The presence of common antigens in all representatives of the family Neisseriaceae has been proved to be important for the study of immunological reactivity to this group of microorganisms.

Antigens, Bacterial

IgA protease production as a characteristic distinguishing pathogenic from harmless neisseriaceae.

IgA proteases are extracellular enzymes of bacteria that have human immunoglobulin A of the IgA1 subclass as their only known substrate. The identification of this enzyme in neisseria prompted us to determine whether IgA protease production correlates with pathogenicity within this genus. Multiple clinical isolates of Neisseria gonorrhoeae, N. meningitidis and eight species of non-pathogenic neisseria that commonly colonize the normal human nasopharynx were examined for IgA protease activity. All N. gonorrhoeae and N. meningitidis strains were enzyme positive; all non-pathogenic strains were negative. Among meningococci, the enzyme occurred in strains carried harmlessly in the nasopharynx as well as those isolated from systemic infections. Because mucosal immune defense is largely mediated by antibodies of the IgA isotype, the finding that IgA protease activity is linked specifically to the pathogenic neisseria suggests that the enzyme may be involved in the pathogenesis of neisserial infection.

Gonorrhea

Relationship of Neisseria elongata subsp. Glycolytica to other members of the family Neisseriaceae.

Neisseria elongata subsp. glycolytica strain 6171/75 is closely similar to the type strain of N. elongata, M2, as regards DNA base composition, fatty acid content and electrophoretic mobility of two glutamate dehydrogenases, one of which showed a reaction of identity with the corresponding enzyme from M2 in double immunodiffusion in agar. The strain showed genetic homologies with strain M2 in genetic transformation at a level suggesting species identity, and with N. meningitidis at a lower level. No affinity to Moraxella species or "false neisseriae" was demonstrated, with the exception of a production of a few transformants in the 6171/75 recipient by DNA from Kingella kingae. The strain showed the same pattern of associated variation of colony type, fimbriation and competence in transformation as that found in other Neisseria and Moraxella species. After continuous subcultivation for some time some clones of the strain appeared to have lost the ability to produce acid from glucose.

Clone Cells

Cellular monosaccharide patterns of Neisseriaceae.

Sixty-four strains of Neisseria, Moraxella, and Acinetobacter were screened for cellular monosaccharides by gas-liquid chromatography and other chromatographic techniques. The four sugars ribose, glucose, glucosamine, and 2-keto-3-deoxyoctonate (KDO) were detected in all strains. Heptose was detected only in "true neisseriae" (Neisseria gonorrhoeae, N. meningitidis, N. sicca, N. cinerea, N. flavescens, and N. elongata) and in the tentaively named species Moraxella urethralis. Some marked interspecies dissimilarities within groups were revealed. Thus, N. ovis and M. atlantae were characterized by the presence of mannose. Intraspecies differences were also encountered. N. meningitidis strains of serogroups B and C were distinguished from strains of serogroup A by their sialic acid content. This sugar was also detected in two out of three examined strains of M. nonliquefaciens. In Acinetobacter, heterogeneity of monosaccharide patterns was rather pronounced. The results show the applicability of gas chromatographic "monosaccharide" profiles fo whole cells or extracted carbohydrate in bacterial classification and identification, including differentiation at the subspecies level. In addition, such profiles may be useful for monitoring during purification of cellular polysaccharides.

Acinetobacter

[Daily bath and its effect on the normal human skin flora quantitative and qualitative investigations of the aerobic skin flora (author's transl)].

The behaviour of the aerobic skin flora of the flexor sides of the forearm, under a daily repeated bath during 21 days, using two marketable bath-supplements, was investigated in 24 volunteers for its quantitative and qualitative aspects. The combined scrubbing-washing-method was used as described by Burtenshaw with Ringer's solution. After the daily baths, using Wilcoxon-test, statistically no significant changes in the total number of microorganizations and in the number of the single groups of bacteria were found in the areas investigated by intermittent samplings of the skin flora. In the analysis of the composition of the normal aerobic skin flora, however, changes were obvious in 4 volunteers. There were no clinical changes of the skin surface in any of the volunteers.

Actinomycetales

Metabolic requirements for entry of DNA in Branhamella catarrhalis.

Although requirements for transformation in Branhamella catarrhalis are quite complex, DNA synthesis does not appear to be one of these needs, as indicated by the inability of nalidixic acid to interefere with transformation. Exogenous sources of energy, such as cAMP and cGMP also failed to enhance frequency, suggesting cells may actively engage in energy production to achieve uptake of DNA, or lack a transport mechanism for these compounds.

Cyclic AMP

Controlled human infection model of Neisseria lactamica in late pregnancy investigating mother-to-infant transmission in the UK: a single-arm pilot trial.

BACKGROUND: The infant respiratory microbiome is derived largely from the mother and is associated with downstream health and disease. Manipulating maternal respiratory flora peripartum to influence the infant microbiome has not previously been investigated. Neisseria lactamica is a harmless pharyngeal commensal that correlates inversely with Neisseria meningitidis carriage and disease. Intranasal N lactamica inoculation is a safe and well characterised controlled human infection model (CHIM) in non-pregnant healthy adults. We hypothesised that N lactamica inoculation in pregnancy induces mother-to-infant N lactamica transmission postnatally. METHODS: In this single-arm trial, 21 healthy pregnant female participants aged 18 years or older were inoculated at 36-38 weeks' gestation with 105 colony-forming units of N lactamica Y92-1009 at University Hospital Southampton Clinical Research Facility, Southampton, UK. N lactamica selective culture, genome sequencing, and serological testing were performed on maternal and infant oral, nasopharyngeal, breastmilk, and serum samples over 15 weeks postpartum. Seven female participants naturally colonised with N lactamica at baseline were followed up, but not inoculated. Oral samples were obtained from 12 cohabiting siblings younger than 5 years. The primary endpoint was infant N lactamica colonisation. This study was registered with ClinicalTrials.gov, NCT04784845, and is now complete. FINDINGS: Between Oct 25, 2021, and March 7, 2022, 31 adult female participants (median age 33·5 years [range 23·1-39·9]; 26 [84%] were White, British) were screened and enrolled, of whom seven were already colonised with N lactamica. After exclusion of three participants, 21 participants were inoculated, of whom 15 (71%) became N lactamica-colonised, and no sustained N lactamica Y92-1009 transmission to their infants was observed. Conversely, non-Y92-1009 N lactamica strain sharing was observed in four (57%) of seven uninoculated mother-sibling pairs, and Moraxella catarrhalis strain sharing in nine (38%) of 24 mother-infant pairs completing the study. Anti-N lactamica serum IgG titres increased in seven (88%) of eight N lactamica Y92-1009-colonised female participants, but none of their infants (where paired sera were available). There were no serious adverse reactions to the inoculum. INTERPRETATION: As the world's first perinatal CHIM, this trial demonstrates that this model in pregnancy is feasible, and that N lactamica Y92-1009 can safely and efficiently colonise pregnant individuals. Lack of sustained mother-to-infant N lactamica transmission, despite evidence supporting mother-to-infant M catarrhalis and sibling-to-mother N lactamica transmission, challenges conventional perceptions of infants as passive recipients of maternal microbes, suggesting that respiratory commensal transmission is selective and microbe-specific. FUNDING: Medical Research Council and National Institute for Health Research Southampton Biomedical Research Centre.

Adult

IgA protease.

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Endopeptidases

Pseudogonococcal ophthalmia neonatorum. Branhamella (Neisseria) catarrhalis conjunctivitis.

A culture from conjunctivitis occurring in a neonate in association with a recurrent fever yielded a nearly pure growth of Branhamella (Neisseria) catarrhalis. The conjunctivitis was not appreciated and effectively treated until a second hospitalization in the fourth week of life. Partial suppression of symptoms had followed short-term parenteral antibiotic therapy during the first admission. Resolution quickly occurred in response to instillation of sodium sulfacetamide ophthalmic solution. Although B. catarrhalis is considered a non-pathogen, the literature reviewed included a number of diverse infections, but no previous instance of conjunctivitis. The organism's close similarities to Neisseria gonorrhoeae necessitate isolation and correct biochemical differentiation. Misdiagnosis of gonococcal conjunctivitis carries obvious social, psychological and medical impact.

Conjunctivitis