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Microbial degradation of synthetic recalcitrant compounds.

Synthetic compounds, particularly highly chlorinated aromatics, comprise the bulk of the environmental pollutants that somehow must be removed from the environment. Microbial degradation of such compounds is usually very slow, making them highly persistent in nature. Some synthetic compounds, with a lower degree of chlorination are, however, biodegradable; biochemical, genetic, and molecular studies demonstrate the evolution of new plasmid-encoded enzymatic activities specifically designed for the chlorinated substrates. Nucleotide sequences of many of the genes encoding such enzymatic activities demonstrate considerable homology either near the active sites or throughout the molecules with the chromosomal genes encoding enzymes catalyzing analogous reactions. In some cases, unique repeated sequences, reminiscent of prokaryotic insertion sequence elements, are present at or near the newly evolved genes. This suggests gene duplication and divergence as well as recombinational events mediated by transposable type elements as key ingredients in the evolution of new degradative functions. An understanding of such evolutionary processes is an essential feature for the development of genetically-improved bacteria capable of utilizing and thereby removing highly chlorinated environmental pollutants from our environment.

Journal Article↗

Genome structure of spirochetes.

The genome structures of several pathogenic spirochetes have recently been determined. The genomes of Borrelia species consist of a linear chromosome of approximately one million base pairs (Mb) and various linear and circular plasmids. Analysis of restriction fragment length polymorphisms and 16S ribosomal RNA sequence data indicate the division of Borrelia burgdorferi into at least three distinct genetic groups. Leptospira interrogans has a circular chromosome 5 Mb in size and a 0.35 Mb extrachromosomal element. Repetitive sequence elements similar to insertion sequences have been identified in the Leptospira interrogans genome. The chromosome of Treponema pallidum subsp. pallidum is circular and has a size of approximately one Mb. Genetic studies conducted to date indicate that B. burgdorferi and L. interrogans have a high degree of genetic diversity, whereas remarkably few genetic differences have been observed among the pathogenic Treponema. Knowledge of the genomic structure of these organisms will serve as a basis for future genetic studies.

Borrelia burgdorferi Group↗

Carbapenemase-producing Acinetobacter baumannii from Spanish hospitals, 2016-2020: Interregional spread of ST2PAS isolates co-harbouring blaOXA-23, blaOXA-66 and armA genes.

INTRODUCTION AND AIMS: Carbapenem-resistant Acinetobacter baumannii (CRAB) poses a serious global threat, prioritized by the World Health Organization for new antibiotic development. The European Centre for Disease Prevention and Control proposed the integration of genomic sequencing into surveillance. This study characterizes phenotypic and genotypic features of nationwide-collected CRAB isolates from Spanish hospitals (2016-2020). MATERIALS AND METHODS: A total of 822 CRAB isolates sent to the Spanish reference laboratory were analysed, and 108 representative isolates were selected from 48 hospitals in 25 Spanish provinces. Antibiotic susceptibility was determined according to European Committee on Antimicrobial Susceptibility Testing guidelines, and WGS was performed by Illumina. Resistome, virulome, phylogeny (core-genome Multi-Locus Sequence-Typing; 2390 genes), insertion sequences and plasmids were analysed. RESULTS: Of the 108 representative isolates, 68.5% produced OXA-23, 10.2% OXA-24, 7.4% OXA-58, 1.9% NDM-1 and 2.7% others. 3.7% co-produced two acquired carbapenemases, and six that did not have them showed the ISAba1 upstream of the blaOXA-51 like. The predominant sequence types were ST2pas (82.4%) and ST218Oxf (61.1%). blaOXA-66 chromosomal carbapenemase allele was present in 75% of the 108 isolates, armA 16 s rRNA methyltransferase gene in 61.1%, and the kL-7/OCL-18 was present in 59.3% of the isolates. The most active antibiotic was colistin. Overall, 65.4% of invasive cases were caused by isolates harbouring all 38 virulence genes tested. In 64.8% of isolates a plasmid type was detected, mainly pS32-1-like (54.6%). CONCLUSIONS: In Spain, CRAB dissemination is driven by interregional spread of isolates belonging to the ST218Oxf/ST2Pas clones, characterized by the blaOXA-23/blaOXA-66 genotype, the presence of armA, the KL7/OCL18 capsular profile and the presence of pS32-1 plasmid.

K Locus↗

Bordetella pertussis PCR: simultaneous targeting of signature sequences.

The absence of analytical controls for polymerase chain reaction (PCR)-based diagnostic tests for Bordetella pertussis limits their clinical utility. In this study, multiplex PCR simultaneously targeted two specific Bordetella pertussis sequences, the chromosomal repeated insertion sequence IS481 (IS) and the pertussis toxin promoter region (PT). A multi-target hybridization-EIA (Hyb-EIA) method in a 96-well microtiter-plate format was used to detect amplicons. Forty-seven (15%) of the 318 nasopharygeal specimens tested positive for at least one DNA target of B. pertussis by PCR, including the 10 known positive samples by culture and/or direct fluorescent antibody (DFA). Forty-six of the 47 PCR positive samples were considered positive for B. pertussis using the consensus interpretation criteria. Simultaneous detection of multiple chromosomal regions may identify false-positive and -negative results due to analytical variations or potential sequence polymorphism, and uncover a wider range of pathogenic strains.

Adolescent↗

Recognition of UGA as a selenocysteine codon in type I deiodinase requires sequences in the 3' untranslated region.

Selenocysteine is incorporated cotranslationally at UGA codons, normally read as stop codons, in several bacterial proteins and in the mammalian proteins glutathione peroxidase (GPX), selenoprotein P and Type I iodothyronine 5' deiodinase (5'DI). Previous analyses in bacteria have suggested that a stem-loop structure involving the UGA codon and adjacent sequences is necessary and sufficient for selenocysteine incorporation into formate dehydrogenase and glycine reductase. We used the recently cloned 5'DI to investigate selenoprotein synthesis in eukaryotes. We show that successful incorporation of selenocysteine into this enzyme requires a specific 3' untranslated (3'ut) segment of about 200 nucleotides, which is found in both rat and human 5'DI messenger RNAs. These sequences are not required for expression of a cysteine-mutant deiodinase. Although there is little primary sequence similarity between the 3'ut regions of these mRNAs and those encoding GPX, the 3'ut sequences of rat GPX can substitute for the 5'DI sequences in directing selenocysteine insertion. Computer analyses predict similar stem-loop structures in the 3'ut regions of the 5'DI and GPX mRNAs. Limited mutations in these structures reduce or eliminate their capacity to permit 5'DI translation. These results identify a 'selenocysteine-insertion sequence' motif in the 3'ut region of these mRNAs that is essential for successful translation of 5'DI, presumably GPX, and possibly other eukaryotic selenocysteine-containing proteins.

Animals↗

Mariner (Mos1) transposase and genomic integration of foreign gene sequences in Bombyx mori cells.

Widespread occurrence in insects and the capacity to transpose in the absence of host-derived factors means that mariner-like elements are considered to be attractive candidates for the development of a universal insect genetic transformation system. Here we show that the Mos1 mariner element of Drosophila mauritiana is capable of mediating excision and transposition events in a silkmoth (Bombyx mori) derived tissue culture cell line (Bm5 cells). Plasmid rescue assays, in combination with Southern hybridization and polymerase chain reaction (PCR) analyses, confirm that the Mos1 transposase can mediate excision of DNA sequences, inserted between terminally repeated sequences recognized by the transposase, and integration into the chromosomal DNA of the Bm5 cells. In addition to chromosomal integration events, inter- and intraplasmid transposition and target element excision events were also detected. Approximately 50% of the plasmids recovered from plasmid rescue assays were found to contain the 'signature' of Mos1-specific excision and/or integration events, indicating that the mariner transposase functions efficiently in the Bombyx cells. Because mariner-induced excision and integration events are strictly dependent on the presence of a co-transfected Mos1 transposase expression vector, it is clear that the multiple copies of endogenous mariner-like elements (Bmmar1) that exist in the Bombyx genome are neither functional nor do they interfere with the efficiency of the transposition process. Thus, the Mos1 element and, probably, mariner elements, in general, hold great promise for the development of genetic transformation systems for lepidopteran insects.

Animals↗

Translocation of a plasmid DNA sequence which mediates ampicillin resistance: molecular nature and specificity of insertion.

A series of recombinant plasmids was generated in Escherichia coli in which the TEM beta-lactamase translocon (TnA) was inserted into the small plasmid RSF1010. RSF1010 is a 5.5 X 10(6) dalton nonconjugative plasmid which confers resistance to streptomycin and sulfonamide. The recombinant plasmids can be classified into three clearly defined phenotypic groups. Group I is ampicillin-, streptomycin- and sulfonamide-resistant. Group II is ampicillin- and sulfonamide-resistant but has lost streptomycin resistance. Group III is ampicillin-resistant but is sensitive to sulfonamide and shows a simultaneous 30-fold reduction in the minimal inhibitory concentration of streptomycin. It was possible to map the site of insertion of TnA within RSF1010 by electron microscope studies of DNA heteroduplexes formed between RSF1010 and recombinant plasmids. Insertions of TnA occur at, at least, 12 distinct sites in a region corresponding to one-third of the RSF1010 DNA molecule. Those insertions giving rise to particular phenotypes are clustered. Insertions of TnA-like insertion sequences (IS) appear to give rise to strongly polar mutations.

Ampicillin↗

Using transposon Tn5 insertions to sequence bacteriophage T4 gene 11.

A simple and rapid method of creating an overlapping set of deletions in cloned DNA in preparation for sequencing has been developed. The method is based on a positive selection for Tn5 transposition into the cloned DNA fragment on a high-copy-number filamid, resolution of potential filamid dimers by filamentous phage infection, and the use of Tn5 both as a "portable" restriction enzyme site for in vitro DNA deletion and a "portable" sequencing primer binding site to initiate DNA sequencing reactions using a custom primer complementary to the outside ends of IS50. This new method has been utilized to sequence bacteriophage T4 gene 11, encoding the T4 baseplate protein gp11. The coding sequence of gene 11 is 657 bp in length, and predicts a primary structure of 219 amino acids that agrees well with the biochemical data previously obtained. DNA sequence around gene 11 suggests that the expression of genes 10, 11, and 12 of phage T4 are translationally coupled. Plasmids carrying deletions generated using this method have been used to map genetically five amber alleles of gene 11. These amber alleles were sequenced to confirm the proposed reading frame. The five amber alleles actually represent two different mutational changes at either codon 206 or 207, changing these adjacent glutamine codons to amber. The position of these amber alleles lends support to earlier studies identifying the carboxyl terminus of gp11 as essential in the interaction of P11 with baseplate protein P10 (Plishker and Berget, 1984).

Amino Acid Sequence↗

Phenotypic and molecular characterization of a Brucella strain isolated from a minke whale (Balaenoptera acutorostrata).

Isolation of Brucella spp. in marine mammals has been reported during the past several years. A Brucella strain from the spleen and liver of a minke whale (Balaenoptera acutorostrata) was isolated. Conventional typing methods indicated that this isolate was related to the genus Brucella but did not match the profiles of any known Brucella species or biovar. Successful PCR amplification of the Brucella rrs-rrl spacer sequence and of the insertion sequence IS6501 also indicated that the minke whale strain was related to the genus Brucella. In addition, the rrs gene of this strain shared a very high degree of nucleotide identity (>98%) with published Brucella spp. rrs sequences. However, RFLP studies using an IS6501-specific probe showed a unique profile for this strain in comparison with the profiles of the six known Brucella species. Moreover, analysis of the omp2 locus by PCR-RFLP, by Southern hybridization using omp2a- and omp2b-specific probes, and by DNA sequencing showed that the minke whale isolate possesses two copies of the omp2b gene instead of one omp2a and one omp2b gene copy or two copies of the omp2a gene described in the six known Brucella species. Thus, molecular typing methods showed that this isolate is clearly distinct from all other known Brucella species and strains. The specific molecular features of this minke whale Brucella isolate raise questions about the lineage between the Brucella strains isolated from marine mammals and the Brucella species isolated from terrestrial mammals.

Animals↗

Mode of membrane insertion and sequence of a 32-amino acid peptide stretch of the penicillin-binding protein 4 of Enterococcus hirae.

Analysis of water-soluble derivatives of the Enterococcus hirae 75-kDa membrane-bound penicillin-binding protein 4 (PBP4) has yielded the amino acid sequence of a 32-amino acid polypeptide stretch. This peptide is similar to peptide segments known to occur in the N-terminal domain of high-Mr PBPs of class B. The E. hirae PBP4 probably belongs to the same class. It is anchored in the membrane at the N-terminus of the polypeptide chain.

Amino Acid Sequence↗

Characterization of new insertion-like sequences of Enterococcus hirae and their dissemination among clinical Enterococcus faecium isolates.

Sequence analysis of different fragments that hybridized with a 4.5-kb EcoRI fragment originally cloned from Enterococcus hirae ATCC 9790 showed 66% homology to IS-like sequences found in staphylococci and lactococci. We tested several enterococcal ATCC strains and found that only E. hirae ATCC 9790 and Enterococcus faecium ATCC 19434 hybridized with the IS-like sequence. Moreover, we wanted to investigate the dissemination of this new IS among E. faecium strains. We analyzed 131 clinical E. faecium isolated in Italy and the USA for the presence of the IS and we found its presence in more than 63% of the isolates. The hybridization patterns obtained vary considerably between unrelated strains and allow further classification among ribotype-grouped species.

Base Sequence↗

Tandem insertion sequence-like elements define the expression site for variable antigen genes of Borrelia hermsii.

The spirochete Borrelia hermsii avoids the immune response of its mammalian host through multiphasic antigenic variation. Serotype specificity is determined by variable antigens, Vmp proteins, in the outer membrane. Through nonreciprocal recombination between linear plasmids, a formerly silent vmp gene replaces another vmp gene downstream from a common expression site. To further characterize this activating site, we determined the nucleotide sequence of 6.9 kb of the common upstream expression region of strain HS1 of B. hermsii. Preceding the vmp gene promoter and a poly(dT.dA) run were three imperfectly repeated segments of 2 kb. Each of the 2-kb segments contained 1-kb elements with inverted repeats of approximately 0.2 kb each at their termini. The potential of the 1-kb elements to form stem-and-loop structures was demonstrated by heteroduplex analysis. There was no evidence of the presence of the elements elsewhere in the genome of B. hermsii. One or more of these elements may confer the unidirectionality that characterizes vmp gene switches.

Animals↗

The organization of the outside end of transposon Tn5.

The end sequences of the IS50 insertion sequence are known as the outside end (OE) and inside end. These complex ends are related but nonidentical 19-bp sequences that serve as substrates for the activity of the Tn5 transposase. Besides providing the binding site of the transposase, the end sequences of a transposon contain additional types of information necessary for transposition. These additional properties include but are not limited to host protein interaction sites and sites that program synapsis and cleavage events. In order to delineate the properties of the IS50 ends,the base pairs involved in the transposase binding site have been defined. This has been approached through performing a variety of in vitro analyses: a ++hydroxyl radical missing-nucleoside interference experiment, a dimethyl sulfate interference experiment, and an examination of the relative binding affinities of single-site end substitutions. These approaches have led to the conclusion that the transposase binds to two nonsymmetrical regions of the OE, including positions 6 to 9 and 13 to 19. Proper binding occurs along one face of the helix, over two major and minor grooves, and appears to result in a significant bending of the DNA centered approximately 3 bp from the donor DNA-OE junction.

Base Sequence↗

Sequence of the 165-kilobase catabolic plasmid pAO1 from Arthrobacter nicotinovorans and identification of a pAO1-dependent nicotine uptake system.

The 165-kb catabolic plasmid pAO1 enables the gram-positive soil bacterium Arthrobacter nicotinovorans to grow on the tobacco alkaloid L-nicotine. The 165,137-nucleotide sequence, with an overall G+C content of 59.7%, revealed, besides genes and open reading frames (ORFs) for nicotine degradation, a complete set of ORFs for enzymes essential for the biosynthesis of the molybdenum dinucleotide cofactor, as well as ORFs related to uptake and utilization of carbohydrates, sarcosine, and amino acids. Of the 165 ORFs, approximately 50% were related to metabolic functions. pAO1 conferred to A. nicotinovorans the ability to take up L-[(14)C]nicotine from the medium, with an K(m) of 5.6 +/- 2.2 micro M. ORFs of putative nicotine transporters formed a cluster with the gene of the D-nicotine-specific 6-hydroxy-D-nicotine oxidase. ORFs related to replication, chromosome partitioning, and natural transformation functions (dprA) were identified on pAO1. Few ORFs showed similarity to known conjugation-promoting proteins, but pAO1 could be transferred by conjugation to a pAO1-negative strain at a rate of 10(-2) to 10(-3) per donor. ORFs with no known function represented approximately 35% of the pAO1 sequence. The positions of insertion sequence elements and composite transposons, corroborated by the G+C content of the pAO1 sequence, suggest a modular composition of the plasmid.

Arthrobacter↗

Identification of restriction fragment length polymorphisms in DNA from Mycobacterium paratuberculosis.

DNAs from 34 mycobactin-dependent isolates of Mycobacterium paratuberculosis and 1 isolate of M. paratuberculosis 18 were digested with four restriction endonucleases. Southern hybridization experiments were performed with a 32P-labeled oligonucleotide DNA probe derived from the sequence of IS900, an insertion sequence present in 15 to 20 copies per M. paratuberculosis chromosome. The probe hybridized with DNA from each of the mycobactin-dependent isolates, and restriction fragment length polymorphisms were detected among the isolates with each restriction endonuclease used. Restriction fragment length polymorphism analysis may permit identification of various strains of M. paratuberculosis, which has not been possible with other techniques.

Animals↗

Automated quantitative determination of hepatitis C virus viremia by reverse transcription-PCR.

An automated reverse transcription-PCR was developed for the quantitative detection of hepatitis C virus. The quantitation is based on the coamplification and labelling with digoxigenin-dUTP during PCR of two similar templates, the viral genome and a modified RNA which acts as a mimic target. Known amounts of the mimic RNA sequence were introduced into the clinical samples. The automated quantitation of the two coamplified and labelled products depends on the use of two biotinylated caputre probes which are complementary, respectively, to a deleted sequence and to an inserted sequence introduced by site-directed mutagenesis in a wild viral cloned cDNA. This method proved to be simple, reproducible, and useful for quantitate hepatitis C virus viremia in chronically infected patients. This easy-to-perform, automated assay could also be used for the accurate determination of human immunodeficiency virus viremia or other RNA molecules.

Base Sequence↗