Recombination in heterozygote inversion carriers.
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Biomedical subjects
Publications and source records attributed to E Anton.
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Rickettsia slovaca, the causative agent of TIBOLA, is transmitted by Dermacentor ticks. Dermacentor marginatus is the most widely species distributed in northeastern Spain, and the wild boar constitutes the main host. D. marginatus ticks were collected from hunter-killed wild boar and were tested by PCR/RFLP. Rickettsial DNA-positive ticks were sequenced using the ompA PCR primers. The prevalence of R. slovaca in D. marginatus ticks was 17.7%. Other spotted fever group rickettsiae were detected in ticks, but these were not definitely identified.
The risk of producing unbalanced gametes in heterozygous inversion carriers mostly depends on the occurrence of recombination events within the inverted segment. Recombination determines the possibility of producing chromosomes with duplications/deficiencies (pericentric inversions) or with duplications/deficiencies which furthermore appear as dicentric and acentric fragments (paracentric inversions). In this work, a general description of the close relationship between the occurrence of crossovers in pericentric and paracentric inversions and the final segregation outcome is presented. After this introduction, a compilation of inversion segregation data and interchromosomal effect results from previously published sperm studies have been reviewed. Segregation results indicate a great heterogeneity in the percentage of unbalanced gametes, from 0 to 37.38%. The size of the inverted segments and their proportion in the chromosome are two parameters closely related with the incidence of recombination (P < 0.0001; using a quadratic model and Pearson's correlation test). These results suggest that the production of a significant level of unbalanced gametes would require a minimum inversion size of 100 Mbp and the inversion of at least 50% of the chromosome. Interchromosomal effects are seldom observed in chromosomal inversions. Finally, implications of the meiotic behavior of the inversions in the progeny of the carriers and the incorporation of sperm FISH segregation analysis for reproductive genetic counseling are discussed.
BACKGROUND: Robertsonian translocation t(13;14) is one of the most common structural reorganization in humans, but meiotic segregation studies in these carriers are still limited. The segregation pattern of the chromosomes involved, the possible influence of the translocated chromosomes on the synapsis and disjunction of other chromosome pairs [interchromosomal effects (ICE)] and the rates of unbalanced spermatozoa produced still deserve attention, not only to obtain a better characterization of the meiotic behaviour of this reorganization, but also to offer carrier couples accurate genetic counselling. METHODS: Multicolour fluorescence in-situ hybridization was used to analyse the segregation of chromosomes 13 and 14 and the possible occurrence of ICE (on chromosomes 18, 21, 22, X and Y) in seven male carriers of a t(13;14)(q10;q10). RESULTS AND CONCLUSIONS: The individuals analysed showed a homogeneous segregation pattern, with a clear predominance of alternate segregations resulting in the production of normal/balanced spermatozoa (83-88.23%). A significant increase in the disomy rates for the sex chromosomes, which could be considered as a positive ICE, was observed in two of the carriers analysed.
The use of fluorescence in situ hybridization (FISH) on decondensed sperm heads has allowed to analyse the chromosome constitution of spermatozoa in different populations. In controls, the mean incidence of disomy (including all chromosomes) is about 6.7 per cent; diploidy increases with age, and some individuals may show a special tendency to nondisjunction. Carriers of numerical sex chromosome anomalies show a low incidence of sex chromosome disomies (2.54-7.69 per cent), and the need to screen ICSI candidates for these conditions has to be reconsidered. Carriers of inversions produce from 0 to 54.3 per cent abnormal sperm. Carriers of Robertsonian translocations produce from 3.4 to 36.0 per cent abnormal sperm, and carriers of reciprocal translocations produce from 47.5 to 81.0 per cent abnormal spermatozoa. However, carriers of translocations usually produce more abnormal embryos than expected from these figures. This may be partly related to interchromosomal effects induced by some structural reorganizations. Males with oligoasthenozoospermia, low motility and/or high FSH concentrations show frequent synaptic anomalies, resulting in the production of aneuploid and diploid sperm. Testicular sperm show extremely high rates of chromosomal abnormalities. The risk of recurrent abortion is increased by the presence of chromosome abnormalities in sperm.
The apoptotic process evoked by efferent duct ligation in the testes of adult rats was followed for 10 days by differential staining for haematoxylin-eosin, periodic acid-Schiff and a modified trichrome technique in optical microscopy and by ultrastructural localization of acid phosphatase. Round spermatids showed the first effects of efferent duct ligation. At day 3 after ligation, annular clumps of chromatin with typical apoptotic characteristics appeared against the nuclear membrane of these cells. Afterwards, membranous structures and a wide separation between the two layers of the nuclear membrane were observed but nuclear fragmentation did not occur and apoptotic granules were not seen. Cytoplasmic components were also altered, and severely damaged organoids and empty vacuoles lacking acid phosphatase reaction were frequently seen. On day 2 after efferent duct ligation, multinucleated giant cells appeared, which displayed similar characteristics as spermatids and showed no acid phosphatase reaction. Although abnormal spermatids and multinucleated giant cells were surrounded by the cytoplasm of Sertoli cells, neither lysosomal acid phosphatase nor phagocytic activity was detected. It is concluded that efferent duct ligation specifically affects round immature spermatids eliciting a partial nuclear apoptotic response that is not accompanied by autophagic or heterophagic activity and without lysosomal participation in Sertoli cells.
Fluorescent in situ hybridization (FISH) in decondensed sperm nuclei has been used to determine the percentage of normal/balanced or unbalanced spermatozoa produced by an inv(6)(p23q25) carrier, and the possible interchromosomal effect (ICE) of the reorganized chromosomes on other chromosome pairs. A dual color FISH with specific subtelomeric probes for the 6p and 6q regions was performed to determine the segregation pattern of the inverted chromosome. ICE on chromosomes 18, X and Y was assessed using a triple color FISH assay. In the segregation analysis 10,049 spermatozoa were analyzed, and only 45.7% of them were normal/balanced. The high number of unbalanced gametes in our carrier could be the consequence of the large size of the inverted segment. This situation could facilitate the formation of an inversion loop, where formation of an odd number of chiasmata (usually one) result in the production of 50% normal and 50% unbalanced sperm. Furthermore, an increase in the disomy rate for chromosome 6 was also observed. In the screening for ICE, 10,007 spermatozoa were analyzed. The disomy rate for the sex chromosomes and chromosome 18 were not significantly different from those found in our controls, suggesting no evidence of interchromosomal effects in this patient. The use of FISH in decondensed sperm nuclei has proved once more to be an accurate approach to determine the chromosome anomalies in sperm and could help to better establish a reproductive prognosis.
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Bronchiolitis obliterans organizing pneumonia is a disease characterized by the presence of granulation tissue within small airways and areas of organizing pneumonia. Over the last three years two patients were studied. Its clinical spectrum, radiological presentations and spirometric findings are discussed. Response to treatment with steroids was favorable.
The direct effect of cyclophosphamide (CY) on bone marrow and liver stromal cells of DBA/2 and C57BL/6 mice after a single intraperitoneal dose of 300 mg/kg, was assessed. Ultrastructural observations were carried out 2,4,6,12,18, and 24 h and 2,3,5,7,10,15,22 and 30 days after CY in femoral bone marrow and liver fixed by immersion or vascular perfusion. A massive depletion of hemopoietic cells was observed in bone marrow as early as 12 h after CY treatment, and normality was recovered only after 10 days. Among stromal cells, sinus endothelial cells, reticular cells, and macrophages were particularly sensitive to CY and showed severe damage as soon as 2 h after treatment. There was also an important dilatation of sinusoids, and the presence of mature red cells in the hemopoietic parenchyma, and macrophages and immature cells in the lumen and in circulating blood demonstrated the loss of integrity of the endothelium. In the liver, injured cells showing vesiculation and disruption of endothelial and Kupffer cells of sinusoids were evident 6 h after CY. The alterations caused by CY were transient. Although recovery of the hemopoietic cells in bone marrow and liver was achieved by day 10, the stromal cells showed damage even 15 days after CY, and a return to normality was only reached on day 30. Thus, the effect of CY on stromal cells, that was longer lasting than the effect on the hemopoietic compartment, demonstrated a higher recovery capacity of hemopoiesis with respect to stromal cells. These results demonstrate that recovery of hemopoiesis occurred even while the severe damage inflicted by CY to the stromal cells remained unrepaired.
The effect of a single dose of 300 mg/kg of cyclophosphamide (CY) on the ultrastructure of the basal area of lower incisor teeth was investigated in two strains of mice (DBA/2 and C57BL/6) which are very differently affected by the delayed toxicity of CY. As in the rat, CY produced necrosis in the primitive mesenchymal cells and preodontoblasts of the pulp. Moreover, important changes were noticed in the associated layers of the enamel organ (presumptive stratum intermedium cells and stellate reticulum); thus, most of the cells displayed degenerative changes including extensive vacuolization, cytoplasm sequestration and variable nuclear alterations ranging from relative integrity to complete disorganization. In contrast, non-dividing columnar odontoblasts and ameloblasts were not affected by the drug. The alterations appeared as early as 21 hours after CY and progressed in the following 2 and 3 days. Normality of the formative tooth end was regained 7 days after CY. These results indicate that in addition to the effect on the pulp, CY produces severe cytopathological changes in the cells of the stratum intermedium and stellate reticulum of the enamel organ. The different sensitivity of DBA/2 and C57BL/6 mice to the delayed toxicity of CY does not seem to be related to its effect on odontogenesis since both strains showed the same response to CY in this respect.
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We previously identified a 101-kDa apparent molecular mass polypeptide (101K) as the major immunoreactive virion protein of human herpesvirus 6 variant B strain Z29 [HHV-6B(Z29)] and found that the human immune response to this protein is HHV-6-specific (Yamamoto, M., Black, J. B., Stewart, J. A., Lopez, C., and Pellett, P. E., 1990, J. Clin. Microbiol. 28, 1957-1962). We report here the identification and characterization of the gene encoding 101K. We found 81% amino acid identity between an HHV-6B(Z29) open reading frame (ORF) and its homolog in HHV-6A strain U1102 [HHV-6A(U1102)]. The product of this gene was identified as 101K on the basis of both the reactivity of a 101K-specific monoclonal antibody (MAb C3108-103) with a bacterially expressed portion of the gene and the reactivity of polyclonal rabbit antibodies raised against the bacterially expressed protein with 101K expressed by HHV-6B(Z29)-infected cells. MAb C3108-103 reacted with eight of eight variant B isolates and none of six variant A isolates, indicating that it is a variant-specific MAb. The MAb reactivity was mapped to an eight-amino-acid segment of 101K. HHV-6A(U1102) differs from HHV-6B(Z29) by two amino acids in this region; substitution mapping with synthetic oligopeptides mapped the variant B specificity to Asp723, this explaining the failure of the MAb to react with variant A proteins. A set of transcripts appropriately sized for expression of 101K was identified and precisely mapped. The transcripts originated down-stream from either of two TATA boxes located 139 bp apart in the region 5' to the 101K ORF, with one 5'-species being much more abundant. Two independent polyadenylation sites were identified; the canonical polyadenylation signal located 3' to the 101K ORF was used much more frequently than was the atypical polyadenylation signal located within the 101K ORF. These results suggest a complex regulatory mechanism for this gene.
A procedure is described for preparation of homogeneous inositol monophosphate phosphatase (EC 3.1.3.25) from beef brain in less than 2 days with an overall recovery of 15-25%. This enzyme, an essential part of the inositol phospholipid cycle in brain, is a proposed site of action of lithium ions in manic-depressive disorders. The major purification steps are: a) removal of most interfering protein by heat denaturation at 75 degrees C for 1 h, b) separation by anion exchange at a pH (6.0) near the enzyme's pI (4.9), and c) adsorption of most remaining impurities on a Procion Red affinity column.
Delayed toxicity of a single dose of 300 mg/kg cyclophosphamide (CP) was investigated in female DBA/2 mice. Lethality was low up to 30 days but increased markedly afterwards reaching a peak of 50% between 50-70 days with a total mortality of more than 80% by day 120 after CP. One week before death, the mice suffered a sharp loss of weight and showed typical signs of wasting disease. There was a decrease in the white cell count and lymphocyte neutrophil ratio was reversed as a result of lymphocyte depletion whereas neutrophil count remained similar to the controls. Profound lymphocyte depletion was also observed in light and electron microscopy preparations of thymus from mice with CP-induced wasting disease. Histochemical methods demonstrated increased activity of four lysosomal enzymes, acid phosphatase, beta-glucuronidase, E600 resistant esterase and n-acetyl-beta-glucosaminidase, in the thymus of treated mice. Acid phosphatase was notably active in thymus epithelial cells; the reaction product was localized in multiple primary Golgi lysosomes, Golgi cisternae, cisternae of the endoplasmic reticulum, and secondary lysosomes. The appearance of numerous cystic formations, as well as the activation of the lysosomal system and the presence of large areas of degradation support the assumption that CP-delayed toxicity is accompanied by thymus involution. Delayed mortality was partially prevented when syngenic bone marrow cells were injected as early as 24 h after CP injection. On the other hand thymus transplants were incapable of reducing delayed lethality. It is suggested that CP provokes a delayed wasting syndrome with thymic involution that is not caused by a direct effect on specific thymus structures but rather secondary to a primary injury to pre T cells in bone marrow.
Application of differential scanning calorimetry to nuclei from rapidly growing mouse neuroblastoma cells showed a melting profile with four major thermal transitions: I (60 degrees C), II (76 degrees C), III (88 degrees C), and IV (105 degrees C). When neuroblastoma cells were induced to differentiate by serum withdrawal or treatment with sodium butyrate, transition IV disappeared, while transition III increased in magnitude. Comparison was made to nuclei from several types of nondividing cells as well as a number of samples from mature tissues. In rapidly dividing cells the predominant endotherm was IV (105 degrees C), while in nondividing cells, transition III (88 degrees C) predominated the calorimetric profile. Cellular differentiation thus appeared to be accompanied by a major change in chromatin structure, as evidenced by a shift in melting temperature from 105 to 90 degrees C, and this may serve to distinguish the Go phase of the cell cycle from G1.