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Biomedical subjects

A Brunner

Publications and source records attributed to A Brunner.

At least 37 records · Page 2Linked to original sources

The Drosophila giant lens gene plays a dual role in eye and optic lobe development: inhibition of differentiation of ommatidial cells and interference in photoreceptor axon guidance.

The Drosophila giant lens (gil) gene encodes a secreted molecule which if absent leads to the recruitment of additional ommatidial cells normally eliminated by apoptosis. Heat induced ectopic gil expression leads to a reduction of ommatidial cells suggesting that gil is secreted by differentiating cells to prevent the development of an excess of cells of a given ommatidial cell type. A second important defect is the misrouting of photoreceptor axons in gil mutants. However, gil function is not required in photoreceptor axons for the establishment of proper connections. We propose that gil acts on the development of lamina cells preventing the correct differentiation of the target region of photoreceptor axons and therefore leading to an axon guidance phenotype.

Animals↗

Tenascin-C expression by fibroblasts is elevated in stressed collagen gels.

Chick embryo fibroblasts cultured on a collagen matrix exert tractional forces leading to the contraction of unrestrained, floating collagen gels and to the development of tension in attached, restrained gels. On a restrained, attached collagen gel the fibroblasts synthesize large quantities of tenascin-C, whereas in a floating, contracting gel tenascin-C synthesis is decreased. This regulation of tenascin-C synthesis can be observed by the secretion of metabolically labeled tenascin-C into the conditioned medium, as well as by the deposition of tenascin-C into the collagen matrix as judged by immunofluorescence. Regulation appears to occur at the transcriptional level, because when cells on attached or floating collagen gels are transfected with promoter constructs of the tenascin-C gene, luciferase expression driven by the tenascin-C promoter parallels the effects measured for endogenous tenascin-C synthesis, whereas luciferase expression under the control of the SV40 promoter does not depend on the state of the collagen gel. The promoter region responsible for tenascin-C induction on attached collagen gels is distinct from the region important for the induction of tenascin-C by serum, and may define a novel kind of response element. By joining this tenascin-C sequence to the SV40 promoter of a reporter plasmid, its activity can be transferred to the heterologous promoter. We propose that the tenascin-C promoter is directly or indirectly activated in fibroblasts generating and experiencing mechanical stress within a restrained collagen matrix. This may be an important aspect of the regulation of tenascin-C expression during embryogenesis as well as during wound healing and other regenerative and morphogenetic processes.

Animals↗

Concomitant modulation of serum-soluble interleukin-2 receptor and alveolar macrophage interleukin-2 receptor in sarcoidosis.

Interleukin-2 receptor (IL-2R) expression on bronchoalveolar lavage (BAL) cells was studied in patients with sarcoidosis using immune cytochemistry and cytometric analysis. A low percentage of alveolar lymphocytes (AL) was found positive for IL-2R, with 7% in patients with impaired lung function and 6% in patients with normal lung function (0.4% in control subjects). Expression of IL-2R on alveolar macrophages (AM) was considerably higher, with 25% in patients with lung function impairment compared with 14% in patients without lung function impairment (1.5% in control subjects). Serum-soluble IL-2R (ssIL-2R) was significantly elevated only in patients with impaired lung function (140.0 pM), but not in patients with normal lung function (52.2 pM; control subjects, 40.0 pM). These elevated levels of ssIL-2R positively correlated with the percentage of IL-2R positive AM (p < 0.001). Immunosuppressive treatment in three patients resulted in a decrease of IL-2R+ AM and in a decrease of ssIL-2R, whereas IL-2R+ AL were unaffected. The positive correlation and the concomitant decrease of IL-2R+ AM and ssIL-2R are consistent with the idea that in sarcoidosis with clinically apparent lung involvement, elevated levels of ssIL-2R may be derived from AM and may thus be a useful indicator of the degree of activation of these cells.

Adult↗

Giant lens, a gene involved in cell determination and axon guidance in the visual system of Drosophila melanogaster.

Mutations in the Drosophila gene giant lens (gil) affect ommatidial development, photoreceptor axon guidance and optic lobe development. We have cloned the gene using an enhancer trap line. Molecular analysis of gil suggests that it encodes a secreted protein with an epidermal-growth-factor-like motif. We have generated mutations at the gil locus by imprecise excision of the enhancer trap P-element. In the absence of gil, additional photoreceptors develop at the expense of pigment cells, suggesting an involvement of gil in cell determination during eye development. In addition, gil mutants show drastic effects on photoreceptor axon guidance and optic lobe development. In wildtype flies, photoreceptor axons grow from the eye disc through the optic stalk into the larval brain hemisphere, where retinal innervation is required for the normal development of the lamina and distal medulla. The projection pattern of these axons in the developing lamina and medulla is highly regular and reproducible. In gil, photoreceptor axons enter the larval brain but fail to establish proper connections in the lamina or medulla. We propose that gil encodes a new type of signalling molecule involved in the process of axon pathfinding and cell determination in the visual system of Drosophila.

Amino Acid Sequence↗

Mutations in the proximal region of the optomotor-blind locus of Drosophila melanogaster reveal a gradient of neuroanatomical and behavioral phenotypes.

Mutations in the complex optomotor-blind (omb) gene locus (4C4-6) lead to a number of different phenotypes in various tissues of the adult Drosophila melanogaster fly. At the core of the locus lies a lethal complementation group, named l(1)omb, whose mutations cause larval and pupal lethality. Some 40% of all males hemizygous for lethal omb alleles develop to the pharate adult stage. These flies can be rescued from the pupal case and show a severe disturbance in optic lobe development. The recessive viable allele In(1)ombH31 reduces the optomotor response in walking flies and during stationary flight of tethered flies. At the neuroanatomical level, these animals lack a subset of lobula plate giant neurons (LPGNs), which are thought to mediate optomotor behavior. Chromosomal aberrations deleting the proximal, non transcribed part of the locus complement the lethality, but still cause neuroanatomical and optomotor defects. Analysis of different allelic combinations of such mutations, in which increasing amounts of DNA downstream of the transcribed region are removed, reveals a step gradient of increasing severity of the neuroanatomical defects and behavioral phenotypes. On this basis the 3'-regulatory region is divided into three domains each having specific effects on optic lobe development.

Alleles↗

Hemoglobin biosynthesis enhancement following mitochondrial membrane growth and differentiation.

1. A quantitative increase of organelles in early reticulocytes has been observed compared to that found in late erythroblasts of the peripheral rabbit embryo blood. 2. The increase is due to the formation of hemosomes, organelles taken as sites for final hemoglobin (Hb) biosynthesis or where the assembly of heme and globin polypeptides could occur. 3. These organelles derive indirectly from mitochondria whose internal membrane grows concomitantly to its differentiation, originating lamellated bodies that modify successively to prehemosomal vesicles, prohemosomes and hemosomes. 4. The occurrence of membrane synthesis for the formation of lamellated bodies could explain the increase of organelles per cell and, thereby, the enhancement of the Hb biosynthesis rate in peripheral embryo blood in relation to this biosynthesis rate in the liver, as had been biochemically ascertained by other authors.

Animals↗

Identification of a gene family regulated by transforming growth factor-beta.

We have identified two related genes whose mRNAs are increased after treatment with transforming growth factor-beta (TGF-beta 1). Mouse AKR-2B cells were treated with TGF-beta 1 in the presence of cyclohexamide and a cDNA library was subjected to differential screening. Several TGF-beta-induced genes (beta IG) were isolated and two of these, beta IG-M1 and beta IG-M2, were characterized. beta IG-M1 and beta IG-M2 RNAs were significantly increased after TGF-beta 1 treatment and both were superinduced in the presence of cyclohexamide. cDNA sequence analysis of beta IG-M1 showed that it encoded a 379-amino-acid protein which was 81% homologous to CEF-10, a v-src and TPA-inducible gene, and identical to cyr61, a gene induced by serum in growth-arrested BALB-3T3 cells. cDNA sequence analysis of beta IG-M2 showed that it encoded a 348-amino-acid protein that was 50% homologous to beta IG-M1. Thirty-eight cysteine residues are conserved between beta IG-M1 and beta IG-M2, which are clustered at the amino and carboxy ends: The middle regions of the two proteins are cysteine free and display the highest degree of nonhomology. Both proteins contain an amino-terminal cysteine-rich motif common to insulin-like growth factor binding proteins and a carboxy-terminal domain with strong homology to a motif found near the carboxy-terminal of the malarial circumsporozoite protein which may be involved in cell adhesion. The regulation of mRNA encoding these proteins by TGF-beta 1 suggests that they may be involved in mediating some of the pleiotropic effects of this multipotent modulator of cell growth and differentiation.

Amino Acid Sequence↗

Restriction site variation, length polymorphism and changes in gene order in the mitochondrial DNA of the yeast Kluyveromyces lactics.

The purpose of this work was to compare mitochondrial DNA restriction endonuclease patterns in strains of the yeast Kluyveromyces lactis, from different sources, to see how conserved is the organization of this organellar genome. The mitochondrial DNA of five independently-isolated strains and one of unknown origin were compared. Strains NRRL Y-1205, NRRL Y-8279 and NRRL Y-1140 gave identical patterns. Strain NRRL Y-1564 showed an insertion, with respect to the other three, of approximately 1250 bp. Strain W600B had also an insertion with extra restriction sites for EcoRI, HpaI, HaeIII, HincII and XbaI. On the other hand, strain Y-123 showed a restriction pattern quite different from the others. Sequences putatively encoding apocytochrome b, ATPase subunit 9 and ribosomal RNA large subunit, were localized on the physical maps of three strains. Results demonstrated that the order of these three genes shows a common feature in strains W600B and WM37 (auxotroph of Y-1140) but a different distribution in WM27 (auxotroph derived from Y-123). All these facts explain the extensive intraspecific polymorphism observed in the mtDNA of this yeast.

Adenosine Triphosphatases↗

Comparative ultrastructure of maturing toad (Bufo ictericus) and rabbit (Oryctolagus cuniculus) erythroid cells with regard to hemoglobin biosynthesis.

1. Toad and rabbit maturing erythroid cells were comparatively analysed with regard to their ultrastructural modifications involved in hemoglobin (Hb) biosynthesis. 2. The mitochondrial inner membrane differentiates to a lamellated body that, successively, gives rise to prehemosomal vesicles, prohemosomes, and to hemoglobinized organelles called hemosomes. 3. The prehemosomal vesicle involves ferruginous inclusions, taken as iron sources for heme biosynthesis, as well as the polypeptide globin chains, assembling themselves in the course of volume reduction. 4. From the prohemosomal stage onwards, where possibly heme biosynthesis occurs, hemosomes are formed; these organelles are presumably sites where the final Hb biosynthesis could take place. 5. All development stages leading to hemosome formation are similar in toad and rabbit erythroid cells, except that, in the toad, the structural prohemosome characteristics persist in hemosomes. 6. Through toad erythroid cell fractionation and electrophoresis of the organelle lysate supernatant, a wide and a weak cytoplasmic Hb bands were obtained; the latter coincides with the intraorganellar Hb band.

Animals↗

Mitochondrial cytochrome b genes with a six-nucleotide deletion or single-nucleotide substitutions confer resistance to antimycin A in the yeast Kluyveromyces lactis.

Extrachromosomal mutants resistant to antimycin, from the yeast Kluyveromyces lactis, have been isolated, genetically characterized, and assigned to two specific genetic loci (Brunner et al., 1987). In the present work the cytochrome b nucleotide sequence from six of these mutants was determined. Five mutants had single point mutations, corresponding to transversions. In one mutant, a six-base-pair deletion, beginning at nucleotide 689, was observed. The amino acid sequence derived from the coding strand showed that, in three independent antimycin-resistant mutants, a change of asparagine 31 into lysine took place (two of these mutants are also resistant to diuron). Two other mutants showed a change from lysine 228 into isoleucine (or methionine). Leucine 230, isoleucine 231, and threonine 232, were lost in the deletion mutant and were replaced by serine.

Amino Acid Sequence↗

Isolation and characterization of a Saccharomyces cerevisiae mutant with impaired glutamate synthase activity.

A mutant of Saccharomyces cerevisiae that lacks glutamate synthase (GOGAT) activity has been isolated. This mutant was obtained after chemical mutagenesis of a NADP-glutamate dehydrogenase-less mutant strain. The gdh gus mutant is a glutamate auxotroph. The genetic analysis of the gus mutant showed that the GOGAT-less phenotype is due to the presence of two loosely linked mutations. Evidence is presented which suggests the possibility that S. cerevisiae has two GOGAT activities, designated GOGAT A and GOGAT B. These activities can be distinguished by their pH optima and by their regulation by glutamate. Furthermore, one of the mutations responsible for the GOGAT-less phenotype affected GOGAT A activity, while the other mutation affected GOGAT B activity.

Crosses, Genetic↗

Ultrastructural aspects of the final stage of hemoglobin biosynthesis.

1. Electron microscopic observations on rabbit embryo, adult rabbit, guinea pig, and human immature erythroid cells showed characteristic hemoglobinized organelles distinguishable from mitochondria by their highly dense matrix, two or three longitudinally arranged double lamellae, and smaller diameters. 2. The presence of hemoglobin (Hb) within these organelles was also demonstrated by electrophoresis of the concentrated supernatant from the isolated, washed and osmotically lysed organelle fraction. The term hemosome has been suggested for these organelles because of their Hb content. We propose that they are the sites of heme integration into the four polypeptide globin chains. 3. The frequency of hemosomes is higher in the peripheral blood erythroid cells of embryos than in the liver erythroid cells, coinciding with the higher Hb synthesis rate in peripheral blood than in the liver. 4. Peripheral blood reticulocytes of rabbits with anemia induced by bleeding presented a lower hemosome frequency than normal reticulocytes. The decrease paralleled the decay of Hb biosynthesis activity. Moreover, Hb biosynthesis induced in HeLa cell and epithelial cell tissue cultures was always associated with the formation of hemosomes. 5. Hemosomegenesis was studied in epithelial tissue culture cells experimentally induced to synthesize Hb, allowing the identification of several stages of hemosome formation in erythroid cells. The morphological data suggest that mitochondria are successively modified to lamellated bodies, prehemosomal vesicles, prohemosomes and hemosomes. These organelles have also been detected in erythroid cells of representative specimens from other vertebrate classes.

Anemia↗

Extrachromosomal genetics in the yeast Kluyveromyces lactis. Isolation and characterization of antimycin-resistant mutants.

Antimycin-resistant (AR) mutants of the yeast Kluyveromyces lactis, obtained either spontaneously or after manganese treatment, were isolated and genetically characterized. Most of the mutants obtained after manganese mutagenesis and two spontaneous mutants, tolerated high antimycin concentrations (more than 10 micrograms/ml) and were extrachromosomal. One mutant which grew only in low antimycin (1 microgram/ml) showed a Mendelian type of inheritance. The extrachromosomal mutants could be assigned to at least two genetic loci (ARI and ARII). Mutants representative of these two groups showed increased resistance to the antibiotic when the respiration of whole cells or mitochondria was studied. Extrachromosomal mutants of Saccharomyces cerevisiae resistant to antimycin were also induced with manganese, isolated and characterized. Comparative studies of the antimycin-resistant mutants of K. lactis and S. cerevisiae permitted the following observations: a) K. lactis is more resistant to antimycin, funiculosin, mucidin and diuron than S. cerevisiae, as are the AR mutants; b) K. lactis shows correlated sensitivity to funiculosin differing in this aspect from S. cerevisiae; c) the antimycin-resistant mutants of K. lactis belonging to group II (ARII) were also resistant to diuron, tolerating concentrations of more than 200 micrograms/ml; d) all extrachromosomal antimycin-resistant-mutants of S. cerevisiae and some of the AR mutants of K. lactis were more sensitive to mucidin than the wild type.

Alkenes↗

Mitochondria, hemosomes and hemoglobin biosynthesis.

Erythroid cells of the liver and peripheral blood of rabbit embryos, as welt of bone-marrow and peripheral blood of adult rabbits with phenylhydrazine-induced hemolytic anemia, were analysed ultrastructurally to investigate the formation of hemosomes, organelles suggested to be sites of heme integration into the four globin polypeptides. After the incorporation of iron-containing material, free ferruginous inclusions appear. Mitochondria apparently give rise to lamellated bodies whose double lamellae expand for the captation of the ferruginous inclusions, a source of iron for heme synthesis, and globin polypeptidic chains already synthesized in the diffusely distributed polysomes. The expanding lamellae return, so that prehemosomal vesicles containing ferruginous material and globin are formed. Through invaginations of the inner membrane and a possible rotational movement of these vesicles the beginning of prohemosome formation takes place concomitant with the occurrence of heme synthesis. A structural rearrangement of prohemosomes occurs, and typical hemosomes containing hemoglobin molecules develop, whose content spreads throughout the cytoplasm by disruption of the organelle membranes.

Anemia, Hemolytic↗

A relative morphological evaluation of hemoglobin biosynthesis in peripheral blood reticulocytes of normal and anemic rabbits.

1. Peripheral blood reiculocytes of normal and bled rabbits and of rabbits with phenylhydrazine-induced anemia, were morphologically analysed, through silver sections, for a relative evaluation of hemoglobin (Hb) biosynthesis activity. 2. Reticulocytes of maturation degrees within the range of 35-60 polysomes/microns2, were compared as to their mean numbers of hemosomes (sites of heme integration into the globin chains), and mitochondria (indirect precursors for hemosome formation). 3. The results on the mean numbers of hemosomes per reticulocyte section, correlated to several physiological data under those three conditions, suggested a close relationship between Hb biosynthesis activity and hemosome frequency. 4. In bled rabbits, reticulocytes showing a low mean number of hemosomes (means hB/section = 0.32), as compared to reticulocytes of normal rabbits (means hN/section = 0.70) and to reticulocytes of rabbits with hemolytic anemia (means hH/section = 2.10), gave rise to a new erythrocyte population characterized by a low Hb content. 5. Hb concentration differences were verified by confronting hematological data before bleeding with those obtained after the regression of anemia.

Anemia↗

The mitochondrial function in hemosome formation and hemoglobin biosynthesis.

1. Rabbit-kidney epithelial cell cultures were induced to synthesize hemoglobin, by previously mixing cell suspensions with solutions containing reticulocyte free globin, hemoglobin and anemic rabbit blood plasma. As control, a solution without globin was used. 2. After a 24 hr culture growth period, hemoglobin was absent, as stated through electrophoresis, suggesting hemoglobin denaturation: mitochondria interacted with the incorporated material and particles resembling ferritin molecules were found within 48 hr. 3. Mitochondria modified remarkably giving rise to lamellated bodies which recomposed to form prohemosomes, presumably containing globin and newly synthesized heme: hemoglobin was still absent up to 72 hr. 4. After 96 hr hemosomes developed and hemoglobin, apparently constituted by reticulocyte globin, was detected.

Animals↗