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Biomedical subjects

I Nur

Publications and source records attributed to I Nur.

12 recordsLinked to original sources

Use of sulfonated primers to detect and type papillomavirus in cell cultures and cervical biopsies.

Human papillomavirus (HPV) was detected by using two sets of deoxyribonucleotide primers for differentiating between 'low-risk' types (HPV11 and HPV6) and 'high-risk' (hri) types (HPV16, HPV18 and HPV33). A new application of the Chemiprobe method for labeling DNA was used to detect products of the polymerase chain reaction (PCR) from 36 cervical biopsies. This method, first demonstrated by Uchimura et al. (submitted), is based on the sulfonation of a polycytidylic acid tail of 5-20 monomers attached to the 5' end of either one or both of the PCR primers. This procedure can increase the sensitivity of detection of PCR products more than 100-fold with respect to ethidium bromide (EtdBr) staining. Various methods were used to detect hri HPV DNA in the 36 clinical samples. The number of positive results obtained was as follows, two by Southern-blot hybridization; five by PCR amplification followed by electrophoresis and detection of products by EtdBr staining; six by PCR amplification using one or two sulfonated C-tailed primers followed by electroblotting and immunoenzymatic visualization; and five by hybridization of sulfonated genomic viral recombinant with a PCR product immobilized on a membrane. The yield of the PCR product was significantly greater when one of the primers was C-tailed than when both or neither of the primers were C-tailed. PCR employing sulfonated C-tailed oligo primers is very specific and sensitive, and the entire procedure can be employed as a nonradioactive substitute for radioactive dot-blot or Southern-blot hybridization procedures, routinely used for detection of HPV in clinical samples.

Base Sequence

Hybricomb. A novel diagnostic tool for DNA probing.

A technique is described in which unlabeled DNA probes are immobilized on the plastic surface of a 12-tooth comb and used to capture homologs by a hybridization procedure. In the examples described, cellular DNA from cervical biopsies is chemically labeled using the Chemi-probe system. The sample containing labeled DNA is then hybridized with the immobilized unlabeled probe (reverse hybridization). By means of this technique, human papillomavirus sequences can be detected with a sensitivity comparable to that of radioactive probe procedures. DNA hybrids are visualized as colored spots on each tooth by moving the comb through the reagent solutions of the prefilled developing plate. The whole procedure requires less than 50 minutes hands-on time, and the results are obtained in a few hours. Application of the technique to the detection and typing of mycoplasma DNA is also reported.

Bacterial Typing Techniques

Chemiprobe, a nonradioactive system for labeling nucleic acid. Principles and applications.

The Chemiprobe Kit provides a complete system for nonradioactive labeling of DNA probes and their detection in hybridization studies. The system is highly sensitive, permitting the detection of 0.2-0.4 pg DNA which allows detection of a single gene sequence in 0.5-1 microgram of bacterial DNA or in 3-5 micrograms of mammalian DNA. In this paper the authors show that the rRNA genes of M. capricolum can be detected by using only 50 ng/ml of sulfonated probe cloned from another mycoplasma, M. pneumoniae. The Chemiprobe system has been successfully used in the detection of the single copy human gene for glucocerobrosidase from total embryonic DNA by hybridization to a specific sulfonated cDNA. 5 x 10(4) M. pneumoniae cells can be detected either free or mixed with sputum using a standard dot blot technique: mycoplasma cells were lysed by a mucolytic agent, denaturated by NaOH, immobilized on a nylon membrane filter, and then hybridized with pPN4, a plasmid DNA probe specific for M. pneumoniae. The resulting hybrids were then detected by the standard Chemiprobe procedure. A new kit based on the Chemiprobe system has been designed especially for the detection of mycoplasmas in tissue culture. This kit has been tested on 70 random samples collected from tissue culture fluids from 11 different sources. Of these, 42 were found to be contaminated by the Chemiprobe procedure, whereas 41 were found to be contaminated by classical microbiological methods. No false negatives were found.

DNA

The left end of rat L1 (L1Rn, long interspersed repeated) DNA which is a CpG island can function as a promoter.

Here we report that the 600 bp promoter-like region at the left end of a newly isolated and characterized rat L1 DNA element can activate the prokaryotic chloramphenicol acyltransferase gene in a rat cell line. Activation only occurs when the promoter region is oriented to the transferase gene as it is to the L1 protein encoding sequences and is 75% inhibited by methylation of just 5 of the 22 CpGs present in the promoter. The G + C rich promoter contains enough CpGs to qualify it as a CpG island, but in contrast to other CpG islands, genomic L1 promoters are fully methylated in both somatic cell and sperm DNA as judged by restriction enzyme analysis. Partial demethylation of the genomic promoters by treatment with 5-azacytidine failed to produce discrete L1 transcripts. The relationship of methylation to the evolutionary history and fate of the rat L1 promoter is discussed.

Animals

Short, interspersed, and repetitive DNA sequences in Spiroplasma species.

Small fragments of DNA from an 8-kbp plasmid, pRA1, from a plant pathogenic strain of Spiroplasma citri were shown previously to be present in the chromosomal DNA of at least two species of Spiroplasma. We describe here the shot-gun cloning of chromosomal DNA from S. citri Maroc and the identification of two distinct sequences exhibiting homology to pRA1. Further subcloning experiments provided specific molecular probes for the identification of these two sequences in chromosomal DNA from three distinct plant pathogenic species of Spiroplasma. The results of Southern blot hybridization indicated that each of the pRA1-associated sequences is present as multiple copies in short, dispersed, and repetitive sequences in the chromosomes of these three strains. None of the sequences was detectable in chromosomal DNA from an additional nine Spiroplasma strains examined.

Chromosome Mapping

Spiroplasma plasmids.

Extrachromosomal DNA, constituting plasmids or replicative forms of viruses, has been detected in a variety of spiroplasmas, particularly in Spiroplasma citri. Only a few of the S. citri plasmids were characterized by restriction enzyme mapping, and essentially nothing is known on functions encoded by the plasmids. Our studies revealed in S. citri (R8A2) an 8.0-kbp plasmid that differed from previously described plasmids in its restriction map. It was also clonable in pBR322. The plasmid, named pRA1, was found in large quantities as free plasmid in S. citri (R8A2) subclones of low passage level. In subclones of higher passage levels, free plasmid was replaced by plasmid sequences integrated into the spiroplasma chromosome, as revealed by Southern hybridization blots of digested spiroplasmal DNA with nick-translated pRA1 or its recombinant as probes. Significant quantities of integrated plasmid sequences were also observed in S. kunkelii and in Spiroplasma sp. P40. Small quantities of free and/or integrated plasmid DNA were detected in some spiroplasmas serologically and genotypically remote from S. citri. Chromosome-integrated pRA1 sequences were cloned into the Escherichia coli plasmids pUC13 and M13. Hybridization tests and restriction maps of these clones indicated that the integrated plasmid sequences consisted of small repetitive sequences inserted into specific sites on the spiroplasma chromosome. Despite the large number of the inserts they do not appear to affect significantly gene expression in the spiroplasma. Due to the abundance of free and integrated pRA1 in S. citri, nick-translated pRA1 was effective as a DNA probe in detecting small numbers of S. citri in infected periwinkle plants and leafhoppers.

Cloning, Molecular

DNA probes for detection and identification of mycoplasmas (Mollicutes).

DNA probes are expected to prove a specific, sensitive, rapid and inexpensive means for diagnosis of mycoplasma infections, replacing procedures that depend on cultivation of the fastidious organisms. Probes made up of conserved genes, such as rRNA genes, do offer the advantage of identifying and distinguishing multiple species with a single labeled reagent. The mycoplasmal rRNA gene probe pMC5 was effective in detection and identification of mycoplasmas infecting cell cultures. However, use of pMC5 for detection of spiroplasmas and mycoplasma-like organisms (MLOs) in infected plants was hindered by hybridization of this probe with chloroplast rRNA genes. Moreover, for identifying species and strains by pMC5, a complex hybridization procedure--involving DNA purification, digestion, electrophoresis, and Southern blot hybridization--is required. More specific DNA probes, on the other hand, can identify specific Mollicutes by the much simpler, faster and more sensitive dot blot technique. Thus, a probe made of a cloned Spiroplasma citri plasmid could detect by this technique as little as 10 pg of S. citri DNA (equivalent to about 10(3) organisms) in infected plants and insects. DNA probes specific for Mycoplasma pneumoniae and M. genitalium were selected from genomic libraries and prepared in pUC13 by screening the libraries for inserts hybridizing only with DNA of the specific mycoplasma. The probes, labeled by nick translation with 32P-nucleotides, could detect as little as approximately 100 pg of the specific mycoplasmal DNA by dot blot hybridization. To eliminate radioactivity, the above DNA probes were labeled by biotinylation of sulfonation systems. Dot blot hybridization with these probes showed decreased sensitivity of detection by about one order of magnitude, and some nonspecific background reaction with large quantities of nonhomologous DNAs.

Animals

Procaryotic and eucaryotic traits of DNA methylation in spiroplasmas (mycoplasmas).

Differences in the type of base methylated (cytosine or adenine) and in the extent of methylation were detected by high-pressure liquid chromatography in the DNAs of five spiroplasmas. Nearest neighbor analysis and digestion by restriction enzyme isoschizomers also revealed differences in methylation sequence specificity. Whereas in Spiroplasma floricola and Spiroplasma sp. strain PPS-1 5-methylcytosine was found on the 5' side of each of the four major bases, the cytosine in Spiroplasma apis DNA was methylated only when its 3' neighboring base was adenine or thymine. In Spiroplasma sp. strain MQ-1 over 95% of the methylated cytosine was in C-G sequences. Essentially all of the C-G sequences in the MQ-1 DNA were methylated. Partially purified extracts of S. apis and Spiroplasma sp. strain MQ-1 were used to study substrate and sequence specificity of the methylase activity. Methylation by the MQ-1 enzyme was exclusively at C-G sequences, resembling in this respect eucaryotic DNA methylases. However, the MQ-1 methylase differed from eucaryotic methylases by showing high activity on nonmethylated DNA duplexes, low activity with hemimethylated DNA duplexes, and no activity on single-stranded DNA.

Base Composition

Cloning of L-2 DNA in Escherichia coli pOL4 plasmid.

A physical map of L-2 DNA was constructed using restriction endonucleases. Based on this map the five HincII-generated L-2 DNA fragments (A-E) were cloned into the SmaI site of Escherichia coli vector plasmid pOL4, that was designed to analyze promoters and transcriptional terminators. The insertion of the HincII-generated L-2 DNA fragments into this plasmid clearly demonstrated that a fragment (fragment E) with a size of 1.1 kbp carried a sequence that initiated transcription in E. coli.

Acholeplasma

Bilirubin incorporation into spiroplasma membranes and methylation of spiroplasmal DNA.

Spiroplasma floricola (BNR-1), Spiroplasma sp. MQ-1 and S. apis (B-31) grown in media containing horse serum exhibited intense yellow pigmentation. Yellow pigments were not observed in S. citri (R8A2) and Spiroplasma sp. strains BC-3 and PPS-1 grown in the same medium. The reddish-yellow pigment showed up in lipid extracts of both spiroplasma membranes and horse serum. It exhibited the typical features of bilirubin: specific absorption spectrum from 390 to 500 nm with a peak at 453 nm, and a characteristic sequence of color changes on addition of HNO3 to its solution in chloroform. The pigment comigrated with commercial bilirubin from bull gall and stained greenish blue when subjected to mild oxidation by iodine. S. floricola contained 5.4 micrograms bilirubin/mg cell protein or 9.7 micrograms bilirubin/mg membrane protein. High-performance liquid chromatography (HPLC) showed the presence of significant amounts of 5-methylcytosine and very little 6-methyladenine in the DNA of S. floricola, S. apis and Spiroplasma sp. strains PPS-1 and MQ-1. S. citri and Spiroplasma sp. strain BC-3 contained 6-methyladenine and very little, if any, 5-methylcytosine. The methylated cytosine residues in Spiroplasma sp. MQ-1 were almost exclusively located in the sequence CpG, as in eukaryotes.

5-Methylcytosine

Spiroplasma species share common DNA sequences among their viruses, plasmids and genomes.

Alkaline-Southern-blot analyses showed that a spiroplasma plasmid, pRA1, obtained from Spiroplasma citri (Maroc-R8A2), contained DNA sequences that were homologous to spiroplasma type 3 viruses (SV3) obtained from S. citri (Maroc-R8A2), S. citri (608) and S. mirum (SMCA). In addition, pRA1 and SV3(608) DNA shared common, but not necessarily related, sequences with extrachromosomal DNA derived from 11 Spiroplasma species or strains. Furthermore, SV3(608) had DNA homology with the chromosome from 6 distinct spiroplasmas but not with chromosomal DNA from eight other Spiroplasma species or strains. The biological function of these common sequences is unknown.

Bacteriophages