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Biomedical subjects

D Romero

Publications and source records attributed to D Romero.

At least 73 records · Page 4Linked to original sources

Short rib-polydactyly syndrome and pericentric inversion of chromosome 4.

We report on a newborn infant with clinical and radiological manifestations of some type of short rib-polydactyly syndrome who died soon after birth. Chromosomal studies on peripheral blood lymphocytes and chondrocytes demonstrated an apparently balanced pericentric inversion of chromosome 4 (present in the mother also). This association may have occurred by chance but, if not, the chromosomal breakpoints could interrupt the gene responsible for short rib-polydactyly syndromes, or else be related to the mechanism of short rib-polydactyly syndromes.

Abortion, Habitual↗

Transient myocardial injury after elective electrical cardioversion.

A patient with recent myocardial infarction underwent elective direct current countershock because of atrial fibrillation. After several shocks, the ST segments were strikingly raised throughout the precordial leads, which disappeared with the administration of a perfusion of nitroglycerin. This case is evidence that electrical cardioversion can cause myocardial damage.

Aged↗

Syncope and long QT syndrome with an initially normal QT interval.

We present two patients who were admitted to our Hospital because of repetitive syncopal attacks. The study previous to their admission included electrocardiograms in which the QT interval was normal. During their admission, an striking lengthening of the QT interval, in addition to other criteria of the long QT syndrome, was observed in both patients. We suggest that one normal measurement of the QT interval should not rule out this diagnosis.

Adult↗

Gene amplification in Rhizobium: identification and in vivo cloning of discrete amplifiable DNA regions (amplicons) from Rhizobium leguminosarum biovar phaseoli.

A genetic element that allows the positive selection of different genomic rearrangements was used to analyze DNA amplification in Rhizobium leguminosarum biovar phaseoli. Discrete amplifiable DNA regions (amplicons) were detected in different regions of the genome of the model strain CFN42, including the chromosome and several large plasmids. Amplicons were mobilized into Escherichia coli using a genetic approach that involves the introduction of an origin of replication active in E. coli and an origin of conjugal transfer into the amplifiable DNA regions of the Rhizobium genome. The strategy can be a valuable tool for studies on genome organization and function. We propose that amplicons define a structural characteristic of the genome that may play an important biological role.

Blotting, Southern↗

Copy number and location of insertion sequences ISS1 and IS981 in lactococci and several other lactic acid bacteria.

Genomic DNA from 49 lactococcal strains was screened by Southern hybridization for the presence and relative copy number of lactococcal insertion sequence ISS1: ISS1 was found in 47 of 49 strains giving 1 to 20 hybridizing bands per strain. Southern hybridizations of undigested plasmid DNA from 17 lactococcal strains probed with ISS1 and IS981 showed that ISS1 was present on plasmids in all 17 strains, whereas IS981 was present on plasmids in 14 of the 17 strains. Both insertion sequences were present primarily on larger plasmids (> 25 kb), and some plasmids contained copies of both insertion sequences. When probed with ISS1, Southern hybridizations of DNA isolated from Lactococcus lactis ssp. lactis ML3 frozen stock culture and from isolated colonies showed that the stock culture consisted of a mixture of cells having different ISS1-hybridizing bands, indicating that stock cultures may contain cells with varying locations of ISS1 sequences. The number of copies and their widespread distribution among lactococcal strains establish that insertion sequences will contribute significantly to genotypic and phenotypic events that may affect the industrial performance and stability of lactococcal strains.

Blotting, Southern↗

The multiple-minima problem in small peptides revisited. The Threshold Accepting approach.

A recently reported optimization method, known as Threshold Accepting, was tested for the purpose of locating the structure of several peptide molecules with the lowest conformational energy. A comparison with previous results obtained with the Simulated Annealing technique was made. Our study indicate Threshold Accepting as a better technique in locating such structures.

Algorithms↗

Different plasmids of Rhizobium leguminosarum bv. phaseoli are required for optimal symbiotic performance.

Rhizobium leguminosarum bv. phaseoli CFN42 contains six plasmids (pa to pf), and pd has been shown to be the symbiotic plasmid. To determine the participation of the other plasmids in cellular functions, we used a positive selection scheme to isolate derivatives cured of each plasmid. These were obtained for all except one (pe), of which only deleted derivatives were recovered. In regard to symbiosis, we found that in addition to pd, pb is also indispensable for nodulation, partly owing to the presence of genes involved in lipopolysaccharide synthesis. The positive contribution of pb, pc, pe, and pf to the symbiotic capacity of the strain was revealed in competition experiments. The strains that were cured (or deleted for pe) were significantly less competitive than the wild type. Analysis of the growth capacity of the cured strains showed the participation of the plasmids in free-living conditions: the pf- strain was unable to grow on minimal medium, while strains cured of any other plasmid had significantly reduced growth capacity in this medium. Even on rich medium, strains lacking pb or pc or deleted for pe had a diminished growth rate compared with the wild type. Complementation of the cured strains with the corresponding wild-type plasmid restored their original phenotypes, thus confirming that the effects seen were due only to loss of plasmids. The results indicate global participation of the Rhizobium genome in symbiotic and free-living functions.

Blotting, Southern↗

Prevention of myocardial infarction by nitroglycerin plus intravenous beta-blockers.

Seven patients with ongoing angina with ST-segment elevation, refractory to oral nifedipine and intravenous nitroglycerin, were treated by adding intravenous beta-blockers. Chest pain resolved in all of them in a few minutes, and myocardial infarction did not develop in 5 patients. We recommend this approach for patients to whom thrombolytics are contraindicated or have been very recently administered, although further investigation is needed to extend its application more widely. It does not preclude the use of other therapies, if considered necessary.

Adrenergic beta-Antagonists↗

Molecular cloning and characterization of the recA gene of Rhizobium phaseoli and construction of recA mutants.

The Rhizobium phaseoli recA gene has been cloned by interspecific complementation of the Fec phenotype of bacteriophage lambda. The cloned gene restored the recombination proficiency and conferred resistance to DNA-damaging agents (methyl methanesulfonate and nitrofurantoin) to an Escherichia coli recA mutant. The direction of transcription and the localization of the recA gene were determined by mutagenesis with phage MudIIPR13 and heterologous hybridization with an E. coli recA probe. An R. phaseoli recA::Spcr mutation was introduced in two R. phaseoli strains by homogenotization. The R. phaseoli recA mutants were more sensitive to DNA-damaging agents and exhibited a 100-fold reduction in recombination frequency as compared with their parental strains. A deletion of the symbiotic plasmid abolishing nodulation was found at high frequency (10(-2)) in R. phaseoli CNF42. This event was recA dependent. In R. phaseoli CFN285, two events of symbiotic instability were found at high frequency (10(-3]: one was a deletion in the symbiotic plasmid, and the other was the loss of whole symbiotic plasmid. In the CFN285 recA::Spcr mutant, only the loss of the symbiotic plasmid was observed.

Blotting, Southern↗

High-frequency rearrangements in Rhizobium leguminosarum bv. phaseoli plasmids.

High-frequency genomic rearrangements affecting the plasmids of Rhizobium leguminosarum bv. phaseoli CFN42 were analyzed. This strain contains six large plasmids ranging in size from 200 to 600 kb. In the absence of any selective pressure, we found 11 strains from 320 analyzed colonies that presented different kinds of plasmid-borne rearrangements, including sequence amplification, deletion, cointegration, and loss of plasmids. These data support the concept that the R. leguminosarum bv. phaseoli genome is a dynamic structure and imply that strains are mixtures of similar but not identical cells.

Phenotype↗

Structural complexity of the symbiotic plasmid of Rhizobium leguminosarum bv. phaseoli.

The complete physical map of the symbiotic plasmid of Rhizobium leguminosarum bv. phaseoli strain CFN42 was established. The data support the concept that Rhizobium symbiotic genes are part of a complex genomic structure which contains a large amount of reiterated DNA sequences. This plasmid is a circular structure of 390 kb with approximately 10 families of internally reiterated DNA sequences of two to three elements each. One family includes two directly oriented nitrogenase operons situated 120 kb apart. We also found several stretches of pSym that are reiterated in other replicons of the cell. Localization of symbiotic gene sequences by heterologous hybridization revealed that nodABC sequences are separated in two regions, each of which contains a nod boxlike element, and it also suggested the presence of two copies of the nifA and nodD gene sequences. We propose that the complex structure of the symbiotic plasmid allows interactions between repeated DNA sequences which, in turn, might result in frequent rearrangements.

Blotting, Southern↗

Amplification and deletion of a nod-nif region in the symbiotic plasmid of Rhizobium phaseoli.

One remarkable characteristic of the genomes of some Rhizobium species is the frequent occurrence of rearrangements. In some instances these rearrangements alter the symbiotic properties of the strains. However, no detailed molecular mechanisms have been proposed for the generation of these rearrangements. To understand the mechanisms involved in the formation of rearrangements in the genome of Rhizobium phaseoli, we have designed a system which allows the positive selection for amplification and deletion events. We have applied this system to investigate the stability of the symbiotic plasmid of R. phaseoli. High-frequency amplification events were detected which increase the copy number of a 120-kb region carrying nodulation and nitrogen fixation genes two to eight times. Deletion events that affect the same region were also found, albeit at a lower frequency. Both kinds of rearrangements are generated by recombination between reiterated nitrogenase (nifHDK) operons flanking the 120-kb region.

Blotting, Southern↗

Genomic instability in Rhizobium phaseoli.

Experience from different laboratories indicates that Rhizobium strains can generate variability in regard to some phenotypic characteristics such as colony morphology or symbiotic properties. On the other hand, several reports suggest that under certain stress conditions or genetic manipulations Rhizobium cells can present genomic rearrangements. In search of frequent genomic rearrangements, we analyzed three Rhizobium strains under laboratory conditions that are not considered to cause stress in bacterial populations. DNAs from direct descendants of a single cell were analyzed in regard to the hybridization patterns obtained, using as probes different recombinant plasmids or cosmids; while most of the probes utilized did not show differences in the hybridization patterns, some of them revealed the occurrence of frequent genomic rearrangements. The implications and possible biological significance of these observations are discussed.

Cloning, Molecular↗