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Identification and characterization of variable-number tandem repeats in the Yersinia pestis genome.

Yersinia pestis, the infamous plague-causing pathogen, appears to have emerged in relatively recent history. Evidence of this fact comes from several studies that document a lack of nucleotide diversity in the Y. pestis genome. In contrast, we report that variable-number tandem repeat (VNTR) sequences are common in the Y. pestis genome and occur frequently in gene coding regions. Larger tandem repeat arrays, most useful for phylogenetic analysis, are present at an average of 2.18 arrays per 10 kbp and are distributed evenly throughout the genome and the two virulence plasmids, pCD1 and pMT1. We examined allelic diversity at 42 chromosomal VNTR loci in 24 selected isolates (12 globally distributed and 12 from Siskiyou County, Calif.). Vast differences in diversity were observed among the 42 VNTR loci, ranging from 2 to 11 alleles. We found that the maximum copy number of repeats in an array was highly correlated with diversity (R = 0.86). VNTR-based phylogenetic analysis of the 24 strains successfully grouped isolates from biovar orientalis and most of the antiqua and mediaevalis strains. Hence, multiple-locus VNTR analysis (MLVA) appears capable of both distinguishing closely related strains and successfully classifying more distant relationships. Harnessing the power of MLVA to establish standardized databases will enable researchers to better understand plague ecology and evolution around the world.

Animals↗

Variation between geographical populations of Lutzomyia (Nyssomyia) whitmani (Antunes & Coutinho, 1939) sensu lato (Diptera:Psychodidae:Phlebotominae) in Brazil.

Phylogenetic analysis of morphometric and biological characters indicated that there are two distinct forms of Lutzomyia whitmani in Brazil: one is present both north and south of the River Amazonas in the State of Pará while the other occurs in northeast Brazil, in the State of Ceará, and further south, including the type locality in State of Bahia. The Amazonian form is reportedly neither strongly anthropophilic nor synanthropic, and it is the vector of Leishmania shawi; whereas the southern form is often collected peridomestically, while biting man, and has been found infected with Le.(V.) braziliensis. The ratio of the length of the genital filaments to that the genital pump was found to be consistently smaller in males of the Amazonian populations. A middle repetitive DNA element was isolated by differentially screening a genomic library made using Amazonian material, and the sequence was diagnostic for this form of Lu. whitmani (being absent or occurring in low copy number in the southern form). The total evidence suggests there are at least two, geographically-isolated forms of Lu. whitmani, which may represent different cryptic species.

Animals↗

Active mariner transposable elements are widespread in natural populations of Drosophila simulans.

The occurrence of active, or autonomous, mariner elements was investigated by crossing white-peach mutant Drosophila simulans females with wild-type males from various geographic origins. From a total of 194 experimental crosses only 17 failed to produce progeny with eye mosaicism (MOS, i.e. pigmented spots in otherwise white-peach eyes). Therefore, active mariner elements inducing somatic excision of the copy inserted at the white locus are abundant in all populations sampled. In the experimental crosses the frequency of mosaic offspring ranged from 0 to 100%, showing that the phenotypic expression is highly variable. The MOS phenotype, measured by the number of spots on the eyes, is quite variable within the progeny of single crosses. Although a difference was observed in the average MOS score (percentage of mosaic flies) between northern and southern populations of France, there was no indication of long range variation between geographic populations. Neither was there a systematic difference between recently collected populations and samples kept several years as isofemale lines.

Animals↗

Effect of chronic feline immunodeficiency infection, and efficacy of marbofloxacin treatment, on 'Candidatus Mycoplasma haemominutum' infection.

The purpose of this study was to investigate the effect of chronic feline immunodeficiency virus (FIV) infection, and efficacy of marbofloxacin treatment, on 'Candidatus Mycoplasma haemominutum' infection. Six cats chronically infected with FIV-Glasgow8 (group A) and six FIV-free cats (group B) were infected with 'Candidatus M. haemominutum' on day 0 by intravenous inoculation of blood. From day 0 to 105 post-infection (pi), blood samples were collected for 'Candidatus M. haemominutum' and FIV provirus quantitative real-time polymerase chain reaction (PCR) and haematological examination. Three of the six cats in each of the groups were randomly selected to receive marbofloxacin treatment (2mg/kg PO SID) from day 49 to day 76 pi, with the remaining cats being untreated controls. Maximum 'Candidatus M. haemominutum' copy number was reached around day 30 pi. No overt cycling or marked variation in copy number was observed. No significant effect of FIV infection on 'Candidatus M. haemominutum' copy number kinetics or anaemia indices was found. No correlation was found between FIV provirus copy number and 'Candidatus M. haemominutum' copy number or haematological variables. Although marbofloxacin treatment was associated with a significant decrease in 'Candidatus M. haemominutum' copy number, the copy number plateaued during treatment, with no negative PCR results. Additionally, after termination of marbofloxacin treatment the copy numbers of the treated cats increased to reach levels similar to those of the untreated cats within 7-10 days. This study documents, for the first time, the infection kinetics and antibiotic responsiveness of 'Candidatus M. haemominutum' infection.

Animals↗

Sister chromatid exchange and the evolution of rDNA spacer length.

The structures of rDNA spacers from several species have been characterized and virtually all have internally repeated sequences. Different numbers of these internal repeats are responsible for most spacer length variation. Because unequal recombination between these internal repeats will cause new length variation, while unequal exchange between rDNA copies will homogenize the variants, we modeled the interaction of these two processes. Two models were used to simulate both types of unequal exchange at the sister chromatid level. Both models indicate that a narrow range of relative recombination frequencies is required to produce levels of variability comparable to those published. One model puts a lower limit on the number of internal repeats, and the other puts both a lower and upper limit on the number of repeats. The model with both maximum and minimum constraints produces a distribution closer to actual spacer distributions. These results imply that small changes in recombination rates can generate the differences in numbers of length variants observed in different species.

Animals↗

Evaluation of the Saccharomyces cerevisiae ADH2 promoter for protein synthesis.

The Saccharomyces cerevisiae ADH2 promoter (P(ADH2)) is repressed several hundred-fold in the presence of glucose; transcription is initiated once the glucose in the medium is exhausted. The promoter can thus be utilized for effective regulation of recombinant gene expression in S. cerevisiae without the addition of an inducer. To evaluate this promoter in the absence of plasmid copy number and stability variations, the P(ADH2)-lacZ cassette was integrated into the yeast chromosomes. The effects of medium composition, glucose concentration and cultivation time on promoter derepression and expression level were investigated. Maximum protein activity was obtained after 48 h of growth in complex YPD medium containing 1% glucose. The widely used S. cerevisiae GAL1 and CUP1 promoters both require the addition of an inducer [galactose and copper(II) ion, respectively] before regulated genes will be expressed. The strengths of these three different promoters were compared for cells containing one copy of an integrated lacZ gene under their control. The ADH2 promoter was superior for all induction strategies investigated.

Alcohol Dehydrogenase↗

Molecular diversity and phylogenetic analysis of mariner-like transposons in the genome of the silkworm Bombyx mori.

Genome-wide screening of mariner-like elements (MLEs) in the silkworm Bombyx mori has revealed the presence of five different types of MLEs (Bmmar1, Bmmar2, Bmmar3, Bmmar4 and Bmmar5). We isolated and characterized sixty copies of the MLEs representing the five Bmmar types. Their nucleotide sequences, nucleotide compositions, deduced transposase sequences, codon preferences, and the copy numbers showed extensive variations. Phylogenetic analysis of the sequences revealed that Bmmar1, Bmmar2, and Bmmar3 have been in the B. mori genome for a long time, while Bmmar4 is probably a recent invader of the genome. Because of the long-term association of Bmmar1 and Bmmar2 with the genome, highly mutated miniature Bmmar1 and Bmmar2 are widespread in the genome, and the footprints of these elements are also present in different silkworm genes. However, miniature copies of Bmmar4 were not detected. This recently acquired element has very few mutations. None of the characterized copies had functional transposase open reading frames. They essentially exist as fossils in the genome.

Amino Acid Sequence↗

Rhizobium etli and Rhizobium gallicum nodulate common bean (Phaseolus vulgaris) in a traditionally managed milpa plot in Mexico: population genetics and biogeographic implications.

The stability of the genetic structure of rhizobial populations nodulating Phaseolus vulgaris cultivated in a traditionally managed milpa plot in Mexico was studied over three consecutive years. The set of molecular markers analyzed (including partial rrs, glnII, nifH, and nodB sequences), along with host range experiments, placed the isolates examined in Rhizobium etli bv. phaseoli and Rhizobium gallicum bv. gallicum. Cluster analysis of multilocus enzyme electrophoresis and plasmid profile data separated the two species and identified numerically dominant clones within each of them. Population genetic analyses showed that there was high genetic differentiation between the two species and that there was low intrapopulation differentiation of the species over the 3 years. The results of linkage disequilibrium analyses are consistent with an epidemic genetic structure for both species, with frequent genetic exchange taking place within conspecific populations but not between the R. etli and R. gallicum populations. A subsample of isolates was selected and used for 16S ribosomal DNA PCR-restriction fragment length polymorphism analysis, nifH copy number determination, and host range experiments. Plasmid profiles and nifH hybridization patterns also revealed the occurrence of lateral plasmid transfer among distinct multilocus genotypes within species but not between species. Both species were recovered from nodules of the same plants, indicating that mechanisms other than host, spatial, or temporal isolation may account for the genetic barrier between the species. The biogeographic implications of finding an R. gallicum bv. gallicum population nodulating common bean in America are discussed.

Agriculture↗

A sensitive method for detecting variation in copy numbers of duplicated genes.

Gene duplications are common in the vertebrate genome, and duplicated loci often show a variation in copy number that may have important phenotypic effects. Here we describe a powerful method for quantification of duplicated copies based on pyrosequencing. A reliable quantification was obtained by amplification of the duplication break-point and a corresponding nonduplicated sequence in a competitive PCR assay. A comparison with an independent method for quantification based on the Invader technology revealed an excellent correlation between the two methods. The pyrosequencing-based method was evaluated by analyzing variation in copy number at the duplicated KIT/Dominant white locus in pigs. We were able to distinguish haplotypes at this locus by combining the duplication breakpoint test with a diagnostic test for a functionally important splice mutation in the duplicated gene. An extensive allelic variation, including the presence of a new allele carrying a single KIT copy expected to encode a truncated KIT receptor, was revealed when analyzing white pigs from commercial lines.

Algorithms↗

Genetic characterization of CHO production host DG44 and derivative recombinant cell lines.

The dihydrofolate reductase-deficient Chinese hamster ovary (CHO) cell line DG44 is the dominant mammalian host for recombinant protein manufacturing, in large part because of the availability of a well-characterized genetic selection and amplification system. However, this cell line has not been studied at the cytogenetic level. Here, the first detailed karyotype analysis of DG44 and several recombinant derivative cell lines is described. In contrast to the 22 chromosomes in diploid Chinese hamster cells, DG44 has 20 chromosomes, only seven of which are normal. In addition, four Z group chromosomes, seven derivative chromosomes, and 2 marker chromosomes were identified. For all but one of the 16 DG44-derived recombinant cell lines analyzed, a single integration site was detected by fluorescence in situ hybridization regardless of the gene delivery method (calcium phosphate-DNA coprecipitation or microinjection), the topology of the DNA (circular or linear), or the integrated plasmid copy number (between 1 and 51). Chromosomal aberrations, observed in more than half of the cell lines studied, were mostly unbalanced with examples of aneuploidy, deletions, and complex rearrangements. The results demonstrate that chromosomal aberrations are frequently associated with the establishment of recombinant CHO DG44 cell lines. Noteworthy, there was no direct correlation between the stability of the genome and the stability of recombinant protein expression.

Animals↗

Frequent alteration of the DF3 tumor-associated antigen gene in primary human breast carcinomas.

The gene for the human DF3 breast carcinoma-associated antigen contains a conserved (G + C)-rich 60-base pair tandem repeat and maps to chromosome 1q21-24. In the present study we isolated and characterized 1220 base pairs of nonrepetitive adjacent sequences. Multiple alleles were identified by fragment size. Signal intensity of hybrids with the tandem and unique sequence probes indicated that allelic variation is due to different numbers of repeats. Probes for both the tandem and the unique sequences were used to study the DF3 locus in human breast tumor DNAs. Seventy of 110 breast tumor DNAs were informative at the DF3 locus. Of these, 20 (29%) showed a loss of heterozygosity, while eight (11%) had an increased copy number of one allele. In some cases, the loss of heterozygosity or increased copy number did not extend to other markers on chromosome 1q or 1p. These data indicate that the chromosomal region around the DF3 locus is affected by mutations at high frequency.

Amino Acid Sequence↗

Molecular basis of length polymorphism in the human zeta-globin gene complex.

The length polymorphism between the human zeta-globin gene and its pseudogene is caused by an allele-specific variation in the copy number of a tandemly repeating 36-base-pair sequence. This sequence is related to a tandemly repeated 14-base-pair sequence in the 5' flanking region of the human insulin gene, which is known to cause length polymorphism, and to a repetitive sequence in intervening sequence (IVS) 1 of the pseudo-zeta-globin gene. Evidence is presented that the latter is also of variable length, probably because of differences in the copy number of the tandem repeat. The homology between the three length polymorphisms may be an indication of the presence of a more widespread group of related sequences in the human genome, which might be useful for generalized linkage studies.

Base Composition↗

Frequent spontaneous deletions at a shuttle vector locus in transgenic mice.

Transgenic mice carrying multiple copies of a recoverable lambda phage shuttle vector (lambda supF) were constructed for the purpose of studying mutagenesis in a whole animal. Spontaneous mutations in rescued supF target genes from several different lines of transgenic mice were analyzed. One mouse line, 1139, was identified in which the frequency of spontaneous mutations was unusually high (3.15 x 10(-4)), 20-fold higher than in other transgenic mice carrying a similar number of copies of the lambda transgene (approximately 100). Over 75% of the spontaneous mutations from 1139 mice were found to be deletions, whereas mostly point mutations were recovered from the other mice. In 1139 no significant variation among adult tissues has been detected. However, embryonic tissue yielded a 3- to 4-fold lower frequency of mutations, most of which were point mutations rather than deletions. The frequency of mutations at another locus, the hypoxanthine phosphoribosyl transferase gene, was not elevated in fibroblast lines established in culture from the 1139 mice. Overall, these results suggest that the deletion mutagenesis affecting the transgene sequences in 1139 mice is a locus-specific effect occurring during growth and development. The increased mutagenesis could not be explained by the degree of methylation of the transgene sequences, since hypermethylation was seen in both 1139 mice and other mice with a low frequency of shuttle vector mutations. The integrated lambda vector DNA in 1139 mice was mapped to a single site on chromosome 7, but no mechanism for the mutagenesis was suggested by this localization. It is proposed that the lambda DNA may have either integrated into an unstable genomic site or created a newly unstable locus in the process of integration.

Animals↗

Evolution of immunoglobulin kappa chain variable region genes in vertebrates.

The major source of immunoglobulin diversity is variation in DNA sequence among multiple copies of variable region (V) genes of the heavy- and light-chain multigene families. In order to clarify the evolutionary pattern of the multigene family of immunoglobulin light kappa chain V region (V kappa) genes, phylogenetic analyses of V kappa genes from humans and other vertebrate species were conducted. The results obtained indicate that the V kappa genes so far sequenced can be grouped into three major monophyletic clusters, the cartilaginous fish, bony fish and amphibian, and mammalian clusters, and that the cartilaginous fish cluster first separated from the rest of the V kappa genes and then the remaining two clusters diverged. The mammalian V kappa genes can further be divided into 10 V kappa groups, 7 of which are present in the human genome. Human and mouse V kappa genes from different V kappa groups are intermingled rather than clustered on the chromosome, and there are a large number of pseudogenes scattered on the chromosome. This indicates that the chromosomal locations of V kappa genes have been shuffled many times by gene duplication, deletion, and transposition in the evolutionary process and that many genes have become nonfunctional during this process. This mode of evolution is consistent with the model of birth-and-death evolution rather than with the model of concerted evolution. An analysis of duplicate V kappa functional genes and pseudogenes in the human genome has indicated that pseudogenes evolve faster than functional genes but that the rate of nonsynonymous nucleotide substitution in the complementarity-determining regions of V kappa genes has been enhanced by positive Darwinian selection.

Animals↗

[Evaluation of wild-type estrogen receptor beta and its isoforms: ER-beta/delta 5/6 i ER-beta/delta 6 in endometrial adenocarcinoma].

Estrogen target genes play essential role among pathogenetic and prognostic factors of endometrial adenocarcinoma; and among them estrogen receptor genes. Although prevailing estrogen receptor type is ER-alpha in endometrium, transduction of signal carried by estrogens can be also mediate by ER-beta, which biological meaning relies on modulation of ER-alpha transcriptional activity. There is hypothesized that ER-beta can keep under control mitogenic activity mediating by ER-alpha. The aim of the study was qualitative and quantitative analysis of wtER-beta and ER-beta/delta 5-6, ER-beta/delta 6 isoforms in endometrial adenocarcinoma. Material used in the study included specimens obtained from 27 female: group I--normal endometrium (n = 12), group II--endometrial adenocarcinoma (n = 15). RNA was extracted from the analyzed material using phenol-chloroform method by Total RNA Prep Plus. Qualitative analysis was performed basing on RT-PCR reaction and polyacrylamide gel electrophoreses. For all RNA extracts of the samples examined RT-PCR was performed with a sequence detector ABIPRISMTM7700--Perkin-Elmer Applied Biosystems (RT: 600 C-30 min; PCR: 950 C-5 min, 40 cycles: 950 C-30s, 600 C-1 min, and 720 C-10 min) in order to determine the number of RNA copies (which corresponds to the number of cDNA copies) for wtER-beta and ER-beta/delta 5-6 and ER-beta/delta 6. Specificity of QRT-PCR reaction was determined by delimitation of melting temperature of all examined amplimers (ABI PRISM7000, Qu-antiTect SYBR Green RT-PCR Kit) and by sequence analysis using ABI PRISM377 DNA Sequencer. Wild-type of estrogen receptor beta and ER-beta/delta 5-6, ER-beta/delta 6 isoforms--coming into alternative splicing of mRNA, presented both, in proliferative endometrium and endometrial adenocarcinoma. Copy number of wtER-beta mRNA was significantly (p < 0.05, Mann-Whitney U test) lower in comparison with proliferative endometrium and correlated with decrease of ER-beta/delta 6 mRNA copy number (r = 0.85; p < 0.05). Preliminary results confirming decrease of wtER-beta, ER-beta/delta 5/6 and ER-beta/delta 6 mRNA copy number in endometrial adenocarcinoma can show their relationship with high risk of carcinogenesis.

Adenocarcinoma↗

Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method.

The two most commonly used methods to analyze data from real-time, quantitative PCR experiments are absolute quantification and relative quantification. Absolute quantification determines the input copy number, usually by relating the PCR signal to a standard curve. Relative quantification relates the PCR signal of the target transcript in a treatment group to that of another sample such as an untreated control. The 2(-Delta Delta C(T)) method is a convenient way to analyze the relative changes in gene expression from real-time quantitative PCR experiments. The purpose of this report is to present the derivation, assumptions, and applications of the 2(-Delta Delta C(T)) method. In addition, we present the derivation and applications of two variations of the 2(-Delta Delta C(T)) method that may be useful in the analysis of real-time, quantitative PCR data.

Algorithms↗

Comparison of a duplex quantitative real-time PCR assay and the COBAS Amplicor CMV Monitor test for detection of cytomegalovirus.

A duplex quantitative real-time PCR (qPCR) assay was designed to detect both the polymerase gene (pol) and the glycoprotein gene (gB) of cytomegalovirus (CMV). The detection limit of the qPCR was determined to be 1 to 3 copies/reaction and the linear measure interval was 10(3) to 10(8) copies/ml. The qPCR system was compared to the COBAS Amplicor CMV Monitor test (COBAS) by an analysis of 138 plasma samples. Both systems detected CMV in 71 cases and had negative results for 33 samples. In addition, 34 samples were positive by qPCR and negative by the COBAS assay, but in no case was the COBAS result positive and the qPCR result negative. Thus, qPCR detected 48% more positive cases than the COBAS method. For samples with > or = 10(5) copies/ml by qPCR, a saturation effect was seen in the COBAS assay and quantification required dilution. Copy numbers for pol and gB by qPCR generally agreed. However, the reproducibility of qPCR assays and the need for an international standard are discussed. Discrepant copy numbers for pol and gB by qPCR were found for samples from two patients, and sequence analysis revealed that the corresponding CMV strains were mismatched at four nucleotide positions compared with the gB fragment primer sequences. In conclusion, a duplex qPCR assay in a real-time format facilitates quantitative measurements and minimizes the risk of false-negative results.

Base Sequence↗

Association of short alleles of a VNTR of the serotonin transporter gene with anxiety symptoms in patients presenting after deliberate self harm.

The polymorphism of a variable number tandem repeat (VNTR) region of the serotonin transporter gene consists of three alleles containing, respectively, 9 (STin2.9), 10 (STin2.10) and 12 (STin2.12) copies of a repetitive element. The frequencies of the three alleles in 384 individuals presenting after deliberate self harm were the same as a group of 346 controls. However, ratings of anxiety (and state anger) were higher in those patients with genotypes including the shorter repetitive elements. The findings support the hypothesis that, in this group of patients with low rates of severe psychiatric disorder, allelic variation in the serotonin transporter gene may contribute to the expression of anxiety symptoms.

Aggression↗