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M Gatti

Publications and source records attributed to M Gatti.

At least 73 records · Page 4Linked to original sources

Bipolar spindle attachments affect redistributions of ZW10, a Drosophila centromere/kinetochore component required for accurate chromosome segregation.

Previous efforts have shown that mutations in the Drosophila ZW10 gene cause massive chromosome missegregation during mitotic divisions in several tissues. Here we demonstrate that mutations in ZW10 also disrupt chromosome behavior in male meiosis I and meiosis II, indicating that ZW10 function is common to both equational and reductional divisions. Divisions are apparently normal before anaphase onset, but ZW10 mutants exhibit lagging chromosomes and irregular chromosome segregation at anaphase. Chromosome missegregation during meiosis I of these mutants is not caused by precocious separation of sister chromatids, but rather the nondisjunction of homologs. ZW10 is first visible during prometaphase, where it localizes to the kinetochores of the bivalent chromosomes (during meiosis I) or to the sister kinetochores of dyads (during meiosis II). During metaphase of both divisions, ZW10 appears to move from the kinetochores and to spread toward the poles along what appear to be kinetochore microtubules. Redistributions of ZW10 at metaphase require bipolar attachments of individual chromosomes or paired bivalents to the spindle. At the onset of anaphase I or anaphase II, ZW10 rapidly relocalizes to the kinetochore regions of the separating chromosomes. In other mutant backgrounds in which chromosomes lag during anaphase, the presence or absence of ZW10 at a particular kinetochore predicts whether or not the chromosome moves appropriately to the spindle poles. We propose that ZW10 acts as part of, or immediately downstream of, a tension-sensing mechanism that regulates chromosome separation or movement at anaphase onset.

Anaphase↗

Transposable elements are stable structural components of Drosophila melanogaster heterochromatin.

We determined the distribution of 11 different transposable elements on Drosophila melanogaster mitotic chromosomes by using high-resolution fluorescent in situ hybridization (FISH) coupled with charge-coupled device camera analysis. Nine of these transposable elements (copia, gypsy, mdg-1, blood, Doc, I, F, G, and Bari-1) are preferentially clustered into one or more discrete heterochromatic regions in chromosomes of the Oregon-R laboratory stock. Moreover, FISH analysis of geographically distant strains revealed that the locations of these heterochromatic transposable element clusters are highly conserved. The P and hobo elements, which are likely to have invaded the D. melanogaster genome at the beginning of this century, are absent from Oregon-R heterochromatin but clearly exhibit heterochromatic clusters in certain natural populations. Together these data indicate that transposable elements are major structural components of Drosophila heterochromatin, and they change the current views on the role of transposable elements in host genome evolution.

Animals↗

The Drosophila kinesin-like protein KLP3A is a midbody component required for central spindle assembly and initiation of cytokinesis.

We describe here a new member of the kinesin superfamily in Drosophila, KLP3A (Kinesin-Like-Protein-at-3A). The KLP3A protein localizes to the equator of the central spindle during late anaphase and telophase of male meiosis. Mutations in the KLP3A gene disrupt the interdigitation of microtubules in spermatocyte central spindles. Despite this defect, anaphase B spindle elongation is not obviously aberrant. However, cytokinesis frequently fails after both meiotic divisions in mutant testes. Together, these findings strongly suggest that the KLP3A presumptive motor protein is a critical component in the establishment or stabilization of the central spindle. Furthermore, these results imply that the central spindle is the source of signals that initiate the cleavage furrow in higher cells.

Amino Acid Sequence↗

Mutations in twinstar, a Drosophila gene encoding a cofilin/ADF homologue, result in defects in centrosome migration and cytokinesis.

We describe the phenotypic and molecular characterization of twinstar (tsr), an essential gene in Drosophila melanogaster. Two P-element induced alleles of tsr (tsr1 and tsr2) result in late larval or pupal lethality. Cytological examination of actively dividing tissues in these mutants reveals defects in cytokinesis in both mitotic (larval neuroblast) and meiotic (larval testis) cells. In addition, mutant spermatocytes show defects in aster migration and separation during prophase/prometaphase of both meiotic divisions. We have cloned the gene affected by these mutations and shown that it codes for a 17-kD protein in the cofilin/ADF family of small actin severing proteins. A cDNA for this gene has previously been described by Edwards et al. (1994). Northern analysis shows that the tsr gene is expressed throughout development, and that the tsr1 and tsr2 alleles are hypomorphs that accumulate decreased levels of tsr mRNA. These findings prompted us to examine actin behavior during male meiosis to visualize the effects of decreased twinstar protein activity on actin dynamics in vivo. Strikingly, both mutants exhibit abnormal accumulations of F-actin. Large actin aggregates are seen in association with centrosomes in mature primary spermatocytes. Later, during ana/telophase of both meiotic divisions, aberrantly large and misshaped structures appear at the site of contractile ring formation and fail to disassemble at the end of telophase, in contrast with wild-type. We discuss these results in terms of possible roles of the actin-based cytoskeleton in centrosome movement and in cytokinesis.

Actin Depolymerizing Factors↗

Association of the alpha-adducin locus with essential hypertension.

Previous studies on genetic rat hypertension have shown that polymorphism within the alpha-adducin gene may regulate blood pressure. Adducin is a cytoskeletal protein that may be involved in cellular signal transduction and interacts with other membrane-skeleton proteins that affect ion transport across the cell membrane. There is a high homology between rat and human adducin and pathophysiological similarities between the Milan hypertensive rat strain and a subgroup of patients with essential hypertension. Thus, we designed a case-control study to test the possible association between the alpha-adducin locus and hypertension. One hundred ninety primary hypertensive patients were compared with 126 control subjects. All subjects were white and unrelated. Four multiallelic markers surrounding the alpha-adducin locus located in 4p16.3 were selected: D4S125 and D4S95 mapping at 680 and 20 kb centromeric, and D4S43 and D4S228/E24 mapping at 660 and 2500 kb telomeric. Alleles for each marker were pooled into groups. Comparisons between control subjects and hypertensive patients were carried out by testing the allele-disease association relative to the marker genotype. The maximal association occurred for D4S95 (chi 2(1) 13.33), which maps closest to alpha-adducin. These data suggest that a polymorphism within the alpha-adducin gene may affect blood pressure in humans.

Aged↗

[Methicillin-resistant staphylococci in pediatric resuscitation].

OBJECTIVE: To evaluate the incidence of colonization and infection by methicillin-resistant in PICU. DESIGN: Prospective cohort study during 2 years for the surveillance of nosocomial infections. SETTING: Four beds Pediatric Intensive Care Unit. PATIENTS: We studied two-hundred patients with duration of hospitalization longer than 24 hours out of the 255 patients who were hospitalized during the same period. METHODS: The patients were divided in two groups according to the presence or the absence of MRS. The difference of the two populations were compared using the t-test and the CATANOVA: Wilcoxon's test was used to analyze the relation between the two values. The results were significant when p = 0.05 and Ct = 3.81. RESULTS: Fourty patients (20%) were colonized or infected by MRS with two seasonal peaks which were not correlated with the amount of index work. Nine patients were already colonized at entrance in PICU (4.5%) and the rate of infected patients versus infections was 1.5% (3 patients with 3 clinical manifestations). The presence of MRS in the different sections of the hospital could be shown. The rate of PICU-acquired colonization was 12.5% (25), the rate of PICU-acquired infected patients was only 2% (4), the infections rate was 3.5% (7 events). The average time which occurred the colonization by MRS to happen was 10,1 days from the day of hospitalization on, which is longer than that of the other germs (p = 0.001). Clinically the infection by MRS was localized as follows: 3 septicemiae, 2 pneumoniae and 2 muco-cutaneous infections. Most the patients with carriage of the MRS were prematures or newborns who had a long stay in PICU, who underwent invasive diagnostic and therapeutic treatment and who had a previously long stay in other department of the hospital. The stay in the PICU lasted longer in those patients who had a MRS carriage. They furthermore had a lower mortality rate (12.5%) than the other patients (Cc = 0.976); the 4 infected patients survived. CONCLUSIONS: The clinical impact of MRS in terms of morbidity and mortality in this PICU is modest. The prevention and limitation of the spread of MRS could be obtained by simple but essential measures of control.

Child↗

Looking at Drosophila mitotic chromosomes.

The repertoire of cytological procedures described in the present paper permits full analysis of brain neuroblast chromosomes. Moreover, if brains are cultured for 13 hr in the presence of 5-bromo-2'-deoxy-uridine, our fixation and Hoechst staining protocols allow visualization of sister chromatid differentiation and the scoring of sister chromatid exchanges (Gatti et al., 1979). Finally, we note that our cytological procedures can be successfully employed for preparation and staining of gonial cells of both sexes and male meiotic chromosomes (Ripoll et al., 1985; our unpublished results). Good chromosome preparations of female meiosis are obtained with the procedure described by Davring and Sunner (1977, 1979), Nokkala and Puro (1976), and Puro and Nokkala (1977). In this chapter, we have focused on the organization and behavior of Drosophila mitotic chromosomes, describing a repertoire of cytological techniques for neuroblast chromosome preparations. We have not considered the numerous excellent cytological procedures for embryonic chromosome preparations (for an example, see Foe and Alberts, 1985; Foe, 1989), because these chromosomes are usually less clearly defined than those of larval neuroblasts. In addition, we have not included the whole-mount and squashing techniques that allow chromosome visualization and spindle immunostaining of neuroblast cells (Axton et al., 1990; Gonzalez et al., 1990), male meiotic cells (Casal et al.. 1990; Cenci et al., 1994), and female meiotic cells (Theurkauf and Hawley. 1992), because the fixation methods used in these procedures alter chromosome morphology. Fixation methods for antibody staining result in poorly defined chromosomes, whereas the methanol/acetic acid fixation techniques, such as those described here, preserve very well chromosome morphology but remove a substantial fraction of chromosomal proteins. Thus, one of the major technical breakthroughs in Drosophila mitotic cytology will be the development of fixation procedures that maximize chromosomal quality with minimal removal of proteins. This will be particularly useful for precise immunolocalization of heterochromatic proteins, including those associated with the centromere.

Animals↗

Chromatin and microtubule organization during premeiotic, meiotic and early postmeiotic stages of Drosophila melanogaster spermatogenesis.

Larval and pupal testes of Drosophila melanogaster were fixed with a methanol/acetone fixation procedure that results in good preservation of cell morphology; fixed cells viewed by phase-contrast optics exhibit most of the structural details that can be seen in live material. Fixed testis preparations were treated with anti-tubulin antibodies and Hoechst 33258 to selectively stain microtubules and DNA. The combined analysis of cell morphology, chromatin and microtubule organization allowed a fine cytological dissection of gonial cell multiplication, spermatocyte development, meiosis and the early stages of spermatid differentiation. We placed special emphasis on the spermatocyte growth phase and the meiotic divisions, providing a description of these processes that is much more detailed than those previously reported. In addition, by means of bromo-deoxyuridine incorporation experiments, we were able to demonstrate that premeiotic DNA synthesis occurs very early during spermatocyte growth.

Animals↗

[Control of plasma aluminium in hemodialyzed patients. Optimization of the method].

As concerning biological matrix, the analytic technique in AA-ETA if on one hand shows remarkable sensitivity, on the other it offers reasons that make it not much reproducible. Our aim has been to optimize and standardize the methodic for the dosage of the Al-s paying a special attention on the contamination risks and on the interference problems in reading phase. If we choose accurately consumption materials and the reagents, aluminium contamination problems may be remarkably reduced avoiding all those decontamination operations often complicated; besides it is possible optimize a thermical program which allows the dosage of the Al-s without using chemical modificator. In this work has been practiced a quality control on 103 couples of samples relative to 62 dialyzed patients and blinded compared to the operator, obtaining a CV of 5.4% on the total average of 45.2 micrograms/l. We are convinced that at the present state the high quality of reagents and the utilisation of disposable materials individually wrapped, and even less the remarkable progress of electronics instrumentation of the last generation allow the use of this technique in a widespread way also in laboratories not particularly specialized.

Adult↗

The kl-3 loop of the Y chromosome of Drosophila melanogaster binds a tektin-like protein.

Primary spermatocyte nuclei of Drosophila melanogaster exhibit three giant lampbrush-like loops formed by the kl-5, kl-3 and ks-1 Y-chromosome fertility factors. These structures contain and abundantly transcribe highly repetitive, simple sequence DNAs and accumulate large amounts of non-Y-encoded proteins. By immunizing mice with the 53-kD fraction (enriched in beta 2-tubulin) excised from a sodium dodecyl sulfate-polyacrylamide gel loaded with Drosophila testis proteins we raised a polyclonal antibody, designated as T53-1, which decorates the kl-3 loop and the sperm flagellum. Two dimensional immunoblot analysis showed that the T53-1 antibody reacts with a single protein of about 53 kD, different from the tubulins and present both in X/Y and X/O males. Moreover, the antigen recognized by the T53-1 antibody proved to be testis-specific because it was detected in testes and seminal vesicles but not in other male tissues or in females. The characteristics of the protein recognized by the T53-1 antibody suggested that it might be a member of a class of axonemal proteins, the tektins, known to form Sarkosyl-urea insoluble filaments in the wall of flagellar microtubules. Purification of the Sarkosyl-urea insoluble fraction of D. melanogaster sperm revealed that it contains four polypeptides having molecular masses ranging from 51 to 57 kD. One of these polypeptides reacts strongly with the T53-1 antibody but none of them reacts with antitubulin antibodies. These results indicate that the kl-3 loop binds a non-Y encoded, testis-specific, tektin-like protein which is a constituent of the sperm flagellum. This finding supports the hypothesis that the Y loops fulfill a protein-binding function required for the proper assembly of the axoneme components.

Animals↗

Primary prevention: HBV vaccination in hemodialysis unit.

The authors evaluated the response rate to HBV vaccination in 27 dialyzed patients. In the 1st stage, the response was 70.37%; nonresponder patients (n = 8) were treated with thymostimulin and revaccinated. The total percentage increased to 85.18%. In order to restore a normal response, the authors suggest to treat nonresponder patients with thymostimulin before revaccination.

Adult↗

Lymphopenia and decrease in the total number of circulating CD3+ and CD4+ T cells during 'long-term' PUVA treatment for psoriasis.

The relationship between high-dose PUVA treatment in psoriatic patients and peripheral T lymphocyte subsets (total number and percentage) has been studied. Of the two groups of patients considered, the first included 19 patients, all affected by chronic, progressively worsening psoriasis; they had never been previously treated by photochemotherapy. The second group included 13 psoriatic patients, who had received an average cumulative dose of 2,007.69 +/- 1,191.05 J/cm2. The 'long-term' PUVA-treated group was assessed while undergoing maintenance therapy. No significant differences were found between untreated patients and healthy controls for any of the parameters considered. A significant reduction (p less than 0.05) in the total number of lymphocytes in long-term PUVA-treated patients both versus untreated patients and controls was found. Furthermore, long-term PUVA-treated patients showed a significant reduction (p less than 0.05) in the percentage of lymphocytes as compared with controls. The reduction in the total number of CD3+ and CD4+ T cells was, moreover, significant (p less than 0.05) as compared with untreated patients. The impairment of circulating CD3+ and CD4+ T cells (total number) was only on the borderline of statistical significance vis-à-vis controls. These findings suggest the usefulness of a careful assessment of circulating T lymphocyte subsets in patients who undergo long-term PUVA therapy.

Adult↗