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A Asenjo

Publications and source records attributed to A Asenjo.

At least 19 recordsLinked to original sources

Genetics of Drosophila simulans male mating discrimination in crosses with D. melanogaster.

The genetic bases of sexual isolation between Drosophila melanogaster and D. simulans have been mainly studied in females, and there is little information about the role of the males in interspecific mating discrimination. Using D. simulans synthetic lines with compound chromosomes from a population of the Seychelles Islands (high frequency of interspecific mating) and a multimarker strain (low frequency), we show that D. simulans males play an important role in discriminating D. melanogaster females. The genetics of male discrimination fits well with the inheritance mode of a single locus, dominant for sexual isolation, located in chromosome II near the net mutation (2L-0.0). The heterospecific mating success of the male was not related to his sexual vigor. The specific load of male cuticular hydrocarbons was counted as a possible source of discrimination used by the D. melanogaster female.

Analysis of Variance↗

Regulated but not constitutive human respiratory syncytial virus (HRSV) P protein phosphorylation is essential for oligomerization.

Purified human respiratory syncytial virus (HRSV) P phosphoprotein from transfected HEp-2 cells is able to oligomerize forming tetramers. The bulk of constitutive P protein phosphorylation (99. 8%) (serine residues 116, 117, 119, 232 and 237) can be removed without affecting protein oligomerization. However, dephosphorylated P protein, produced in bacteria, is unable to oligomerize. This difference can be explained by a transient P protein phosphorylation, detected in HEp-2 cells, that could be essential for P protein oligomerization.

Amino Acid Sequence↗

Location of Shfr, a new gene that rescues hybrid female viability in crosses between Drosophila simulans females and D. melanogaster males.

As a rule, progeny of crosses between Drosophila simulans females and D. melanogaster males are formed by sterile males, because females die as embryos. However, populations of these species have been found that produce a certain frequency of viable hybrid females. We have found that 94% of the females of a D. simulans population from Tel Aviv gave hybrid progenies with both sexes. The segregation of phenotypes with different rescue success adjusts to the action of a single, dominant, zygotic-acting gene involved in hybrid female viability. This gene, which we named 'Simulans hybrid females rescue' (Shfr), is temperature-sensitive, showing a much smaller effect as temperature increases. Reciprocal crosses between Tel Aviv and a nonrescue population indicate some influence of cytoplasm or maternal effect in rescue. Using a chromosome substitution analysis we have located Shfr on the second chromosome. Using synthetic lines with this chromosome having different segments from Tel Aviv and from a multimarker strain we have mapped Shfr between black (2 L-43. 0) and pearly (2 R-74.0).

Animals↗

The bulk of the phosphorylation of human respiratory syncytial virus phosphoprotein is not essential but modulates viral RNA transcription and replication.

The ability of variants of the human respiratory syncytial virus (HRSV) phosphoprotein (P protein) to support RNA transcription and replication has been studied by using HRSV-based subgenomic replicons. The serine residues normally phosphorylated in P during HRSV infection have been replaced by other residues. The results indicate that the bulk of phosphorylation of P (98%) is not essential for viral RNA transcription or replication but that phosphorylation can modulate these processes.

HN Protein↗

Structural phosphoprotein M2-1 of the human respiratory syncytial virus is an RNA binding protein.

The structural phosphoprotein M2-1 of human respiratory syncytial virus (HRSV) Long strain shows RNA binding capacity in three different assays that detect RNA-protein complexes: cross-linking, gel retardation, and Northern-Western assays. It is able to bind HRSV leader RNA specifically with cooperative kinetics, with an apparent K(d) of at least 90 nM. It also binds to long RNAs with no sequence specificity. The RNA binding domain has been located between amino acid residues 59 and 85, at the NH(2) terminus of the protein. This region contains the phosphorylatable amino acid residues threonine 56 and serine 58, whose modification decreases the binding capacity of M2-1 protein to long RNAs.

5' Untranslated Regions↗

Interactions between cellular actin and human respiratory syncytial virus (HRSV).

Actin the main component of the cellular microfilament network, is present in human respiratory syncytial virus (HRSV) purified virions, as an internal component. This fact and the results of immunoprecipitation studies indicate that during HRSV infection in HEp-2 cells there are interactions between cellular actin and viral components, that can promote a transitory increase in the polymerization of synthetized actin, mainly of the beta isotype. This increased actin polymerization can be related with the formation of cytoplasmic extensions, that contain beta actin and viral particles observed in the HRSV infected HEp-2 cells. The formation of these structures may indicate that HRSV has developed an actin-based motility system similar to that described for other viral and bacterial systems.

Actins↗

Genetics of hybridization between Drosophila simulans females and D. melanogaster males.

Drosophila simulans and D. melanogaster are sibling cosmopolitan species with imperfect ethological isolation. Hybridization is easy between D. melanogaster females and D. simulans males, but the reciprocal cross has been traditionally considered as very scarce and little is known about the environmental and genetic factors that affect it. We used classical genetic analyses to determine the influence of each major chromosome on the breakdown of sexual isolation between females of D. simulans and D. melanogaster males. In addition, we have made a first attempt to locate the genetic systems involved in this process. At least two genes, or two groups of genes, are responsible for hybridization, located in the X chromosome and in the left arm of chromosome II. The inheritance mode of both genetic systems is different. The genes in the X chromosome show dominance for high levels of hybridization, whereas those in chromosome II show dominance for low levels. These results contrast with other investigations on the melanogaster subgroup, suggesting independent evolutionary events events during the speciation process in each species.

Animals↗

Worldwide survey of neurosurgical training requirements and certifying mechanisms: report of the Committee on Neurosurgical Education of the World Federation of Neurosurgical Societies.

This is the report of the Committee on Neurosurgical Education of the World Federation of Neurosurgical Societies, which report was presented at the Seventh International Congress of Neurological Surgery in Munich in July 1981. The Committee was charged to conduct a survey of neurosurgical training requirements and certifying mechanisms throughout the world. These data are summarized in the tables in this report.

Certification↗