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Polyploidization induced by acridine orange in mouse osteosarcoma cells.

This study was undertaken to clarify the in vitro effect of acridine orange (AO) on the cell kinetics of mouse osteosarcoma cells, as well as the mechanism of cell growth inhibition induced by AO. A mouse osteosarcoma cell line (MOS), established from a radiation-induced mouse osteosarcoma, was cultured under exposure to 0.05, 0.5, 5, and 50 micrograms/ml of AO, either continuously or for 10 minutes. The cell kinetic analysis was performed using the following parameters: tumor cell growth by trypan blue exclusion test, mitotic activity, DNA synthetic activity by BrdU labeling and DNA ploidy by cytofluorometry. The results showed that continuous exposure to 5 and 50 micrograms/ml of AO or 10 minute exposure to 50 micrograms/ml of AO quickly killed the tumor cells within 12 hours, whereas continuous exposure to 0.5 microgram/ml of AO or 10 minute exposure to 5 micrograms/ml of AO gradually inhibited tumor cell growth. Under the latter conditions, mitotic activity was rapidly and completely inhibited within 48 hours but DNA synthetic activity was not completely inhibited even after 96 hours. DNA ploidy analysis demonstrated that most of the tumor cells arrested at the S-G2 phase after 12 hours, followed by G2 phase arrest after 24 hours and progressive DNA synthesis to a higher DNA ploidy class after 48 to 96 hours. We therefore concluded that a high concentration of AO has a strong cytocidal effect due to cytotoxicity whilst a moderate concentration of AO induces progressive and synchronous polyploidization by mitotic inhibition without DNA damage in MOS cells. We presume that this in vitro effect on MOS cells may be caused by protein synthetic inhibition after transfer RNA inactivation caused by AO binding.

Acridine Orange↗

Patterns of recurrent evolution and geographic parthenogenesis within apomictic polyploid Easter daises (Townsendia hookeri).

Geographic patterns of parthenogenesis and the number of transitions from sexual diploidy to asexual (apomictic) autopolyploidy were examined for 40 populations of the Easter daisy, Townsendia hookeri. Analyses of pollen diameter and stainability characterized 15 sexual diploid and 25 apomictic polyploid populations from throughout the plant's western North American range. Sexual diploids were restricted to two Wisconsin refugia: Colorado/Wyoming, south of the ice sheets, and northern Yukon/Beringia. Chloroplast DNA sequencing uncovered 17 polymorphisms within the ndhF gene and trnK intron, yielding 10 haplotypes. Phylogenetic analyses indicated that five exclusively polyploid haplotypes were derived from four haplotypes that are shared among ploidies, conservatively inferring a minimum of four origins of apomictic polyploidy. Three of these apomictic polyploid origins were derived from southern sexual diploids, while the fourth origin was derived from northern sexual diploids. Analyses of regional diversity were suggestive of a formerly broad distribution for sexual diploids that has become subsequently fragmented, possibly due to the last round of glaciation. As sexual diploids were exclusively found north and south of the glacial maximum, while formerly glaciated areas were exclusively inhabited by asexual polyploids derived from both northern and southern sexual lineages, it is more likely that patterns of glaciation, as opposed to a particular latitudinal trend, played a causal role in the establishment of the observed pattern of geographic parthenogenesis in Easter daisies.

Asteraceae↗

Allopolyploidy-induced rapid genome evolution in the wheat (Aegilops-Triticum) group.

To better understand genetic events that accompany allopolyploid formation, we studied the rate and time of elimination of eight DNA sequences in F1 hybrids and newly formed allopolyploids of Aegilops and TRITICUM: In total, 35 interspecific and intergeneric F1 hybrids and 22 derived allopolyploids were analyzed and compared with their direct parental plants. The studied sequences exist in all the diploid species of the Triticeae but occur in only one genome, either in one homologous pair (chromosome-specific sequences [CSSs]) or in several pairs of the same genome (genome-specific sequences [GSSs]), in the polyploid wheats. It was found that rapid elimination of CSSs and GSSs is a general phenomenon in newly synthesized allopolyploids. Elimination of GSSs was already initiated in F1 plants and was completed in the second or third allopolyploid generation, whereas elimination of CSSs started in the first allopolyploid generation and was completed in the second or third generation. Sequence elimination started earlier in allopolyploids whose genome constitution was analogous to natural polyploids compared with allopolyploids that do not occur in nature. Elimination is a nonrandom and reproducible event whose direction was determined by the genomic combination of the hybrid or the allopolyploid. It was not affected by the genotype of the parental plants, by their cytoplasm, or by the ploidy level, and it did not result from intergenomic recombination. Allopolyploidy-induced sequence elimination occurred in a sizable fraction of the genome and in sequences that were apparently noncoding. This finding suggests a role in augmenting the differentiation of homoeologous chromosomes at the polyploid level, thereby providing the physical basis for the diploid-like meiotic behavior of newly formed allopolyploids. In our view, this rapid genome adjustment may have contributed to the successful establishment of newly formed allopolyploids as new species.

Blotting, Southern↗

[Changes in the human fetal membranes in late pregnancy toxicoses].

Changes of a destructive and adaptational character have been revealed in the extraplacental coats in late toxicoses of pregnant women by histological, histochemical and spectrophotometrical methods. The intesity of the apotomical way of the glucose oxidation decreased in the aminiotic epithelium. While the activity of enzymes converting the lipid decomposition products into glycolysis increased. The glucose utilization in the chorial epithelium occurs mainly due to anaerobic glycolysis. Histochemical methods have established a high content of acid glucoaminoglycanes in the smooth chorion under these pathological conditions and the appearance of fibrinoid deposits on the border with the decidual tissue. The number of polyploid cells containing a considerable amount of RNA has been found to increase in the amniotic and chorial epithelium by spectrophotometric methods. The possible role of the extraplacental coats of the fetus in pathogenesis of late toxicoses is discussed.

Amnion↗

The role of p38 MAP kinase and c-Jun N-terminal protein kinase signaling in the differentiation and apoptosis of immortalized neural stem cells.

The two distinct members of the mitogen-activated protein (MAP) kinase family c-Jun N-terminal protein kinase (JNK) and p38 MAP kinase, play an important role in central nervous system (CNS) development and differentiation. However, their role and functions are not completely understood in CNS. To facilitate in vitro study, we have established an immortal stem cell line using SV40 from fetal rat embryonic day 17. In these cells, MAP kinase inhibitors (SP600125, SB202190, and PD98059) were treated for 1, 24, 48, and 72 h to examine the roles of protein kinases. Early inhibition of JNK did not alter phenotypic or morphological changes of immortalized cells, however overexpression of Bax and decrease of phosphorylated AKT was observed. The prolonged inhibition of JNK induced polyploidization of immortalized cells, and resulted in differentiation and inhibition of cell proliferation. Moreover, JNK and p38 MAP kinase but not ERK1/2 was activated, and p21, p53, and Bax were overexpressed by prolonged inhibition of JNK. These results indicate that JNK and p38 MAP kinase could play dual roles on cell survival and apoptosis. Furthermore, this established cell line could facilitate study of the role of JNK and p38 MAP kinase on CNS development or differentiation/apoptosis.

Animals↗

Establishment and characterization of a new cell line derived from a human primary breast carcinoma.

A new cell line, designated HDQ-P1, was successfully established from a primary ductal infiltrating mammary carcinoma by using a 3T3 feeder layer lethally irradiated to 60 Gy. The HDQ-P1 cells have been grown in culture for over 115 passages and have a doubling time of 60 hours. Characterization of the cell line was performed. This included morphology by light and transmission electron microscopy, karyotype, growth rate, telomerase expression, tumor antigen expression, xenograft implantation into nude mice, colony formation in soft agar, TP53 sequencing, and gene copy number of C-MYC, C-ERBB-2, and C-H-RAS oncogenes. The epithelial nature of this cell line was confirmed by ultrastructural analysis, expression of cytokeratins, and epithelial membrane antigen. The HDQ-P1 cells possess an extensively rearranged and polyploid karyotype, with an average of 20 recurrent marker chromosomes. Scatchard analysis demonstrated that both primary tumor and HDQ-P1 cells were estrogen- and progesterone-receptor negative. The HDQ-P1 cells had the same expression of human telomerase reverse transcriptase as other established breast cancer cell lines such as MDA-MB-231, SK-BR-3, and MCF-7. Direct DNA sequencing showed a point mutation which yielded to a stop codon at the amino acid 213 in exon 6 of the TP53 gene. A five-fold amplification of C-MYC was observed in HDQ-P1 cells. No amplification of C-ERBB-2 and C-H-RAS genes were observed. This cell line presents unique characteristics and may prove to be a good experimental model for investigating breast cancer biology.

Animals↗

Comparative linkage maps of the rice and maize genomes.

Genetic linkage maps have been constructed for the rice and maize genomes on the basis of orthologous loci detected with a common set of cDNA clones. Conserved linkage groups could be identified, which together account for more than two-thirds of both genomes. In some instances, entire chromosomes or chromosome arms are nearly identical with respect to gene order and gene content. The results also reveal that most of the genes (> 72%) duplicated during ancient polyploidization are still present in the maize genome in duplicate copy. The comparative maps of rice and maize provide a basis for interpreting molecular, genetic, and breeding information between these two important species and establish a framework for ultimately connecting the genetics of all grass species.

Biological Evolution↗

Noscapine does not show aneugenic activity in mouse oocytes.

To clarify if noscapine has the ability to induce polyploidy in rodent germ cells in vivo, a cytogenetic study of mouse metaphase II oocytes was conducted after oral treatment with noscapine at the doses of 20, 120 and 400 mg/kg. Plasma concentrations of noscapine were measured by reversed-phase liquid chromatography and UV detection in three satellite groups of mice up to 8 h after administration of these doses. Thus, the relationship of the maximum plasma concentration and the area under the curve (AUC) with that of meiotic progression could be established. Although noscapine was tested at the maximum tolerated dose, no delay of meiotic progression or induction of chromosome malsegregation could be shown as no increase in the frequency of metaphase I-arrested, polyploid or hyperploid oocytes were found. At the highest dose only, noscapine affected the physiology of superovulation as shown by a significant decrease in the mean number of oocytes harvested per female. In view of the large span covered by the doses tested, corresponding to concentrations far above those detected in humans, and the similarity between the pharmacokinetics of noscapine in mouse and humans, it is unlikely that noscapine represents a genetic risk for humans at therapeutic dosages.

Aneuploidy↗

[Morphological changes in smooth myocytes of cerebral arteries in experimental hypertension and after its elimination].

Using cytological, histochemical and morphometric methods, the changes of leiomyocytes of cerebral arteries was studied in 55 pups with experimental hypertension induced by coarctation of the aorta and in 15 animals following reversal of coarctation as compared to the normal characteristics of these cells established in 15 control dogs. It was established that hypertension induced hypertrophy and polyploidy of leimoyocytes of the circular muscular layer in the tunica media of the cerebral arteries, that was manifested as the increase in their nuclear DNA content and in the numbers of binuclear cells. After the elimination of hypertension, which was previously established in the cerebral vasculature, the tendency for the reversal of the changes in nuclear and cytoplasmic linear parameters of the cells examined was observed. However, the nuclear DNA content and the number of polyploid leiomyocytes in the cerebral arteries remained practically unchanged. The latter indicates that the polyploidy of leiomyocytes in the cerebral arteries is irreversible.

Animals↗

Are CNS neurons polyploid? A critical analysis based upon cytophotometric study of the DNA content of cerebellar and olfactory bulbar neurons of the bat.

A cytophotometric study of the nuclear DNA content of bat cerebellar and olfactory bulbar neurons was performed with particular attention to corrections for distributional error and non-specific light loss and to selection of appropriate control nuclei for the establishment of reliable haploid and diploid DNA values. Feulgen stained sections were measured with an integrating, scanning microdensitometer for correction of distributional error. The values thus obtained were further corrected in 3 different ways to subtract the contribution of background absorbance at 546 nm. Bat haploid (1c) DNA values were derived from spermatozoa, and diploid (2c) values from pancreatic acinar cells, hepatocytes and non-hepatocyte liver cells. Microglia of olfactory bulb also had 2c values. After correction, all neurons measured, except Purkinje cells, had DNA values more closely approximating the tetraploid (4c) than the diploid (2c) level. Purkinje neurons had mean DNA values closer to 2c than to 4c, but inherent technical difficulties in measuring these very large, light staining nuclei has created less confidence in the values obtained than for those of the other neurons. This uncertainty, plus the apparent existence of two populations of Purkinje neurons, one 2c and the other hyperdiploid, suggested by the DNA distribution curves, make it difficult to eliminate the possibility of polyploidization of Purkinje neurons. A critical analysis of various cytophotometric, radioautographic and biochemical approaches to the problem of CNS neuron polyploidization has revealed potentially serious flaws in many of them, rendering virtually impossible interpretation of the numerous contradictory results in the literature. Standardization of the cytophotometric technique and improvement of the radioautographic approach seem to be prerequisite to the resolution of the existing dilemma.

Animals↗

The level of aryl hydrocarbon (Ah) receptor and of 4S polycyclic aromatic hydrocarbon (PAH) binding protein in diploid and polyploid hepatocytes of 2-acetylaminofluorene-treated rats.

Sequential treatment of partially hepatectomized male Wistar rats with diethylnitrosamine (DEN) and 2-acetylaminofluorene (AAF) induces the emergence of diploid hepatocyte populations. These carcinogen-induced hepatocytes are thought to include the precursor cells of liver carcinomas that arise later in this treatment protocol. The growth of the diploid hepatocytes is promoted by AAF and it has been suggested that the action of the arylamine may be receptor-mediated. AAF has been shown to bind specifically to the aryl hydrocarbon (Ah) receptor and the so-called 4S polycyclic aromatic hydrocarbon (PAH) binding protein. The present study addresses the question of whether the concentrations of the two binding proteins differ in diploid and polyploid hepatocytes from DEN/AAF-treated rats. Hepatocytes from carcinogen-treated rats were isolated and diploid, and tetraploid hepatocytes separated by means of centrifugal elutriation. Whereas Ah receptor concentrations in diploid hepatocytes were insignificantly lower (21.8 +/- 5.9 versus 29.2 +/- 6.6 fmol/mg cytosolic protein; n = 4; P = 0.1), levels of the 4S PAH binding protein in diploid hepatocytes were twice as high as in tetraploid hepatocytes (252.3 +/- 93.6 versus 124.0 +/- 18.5 fmol/mg cytosolic protein; n = 4; P = 0.04). We conclude from our results that the differences in growth control in polyploid and carcinogen-induced diploid hepatocytes are not associated with changes in the levels of the Ah receptor. The role of the 4S PAH binding protein in the process of hepatocarcinogenesis remains to be established.

2-Acetylaminofluorene↗

Heterogeneity in bladder cancer as detected by conventional chromosome analysis and interphase cytogenetics.

Thirty transitional cell carcinomas (TCCs) of the bladder were examined by classical chromosome counting to establish range, modal number, and percentage of metaphases with 2n, 3n, 4n, and > or = 5n chromosomes. In addition, fluorescence in situ hybridization (FISH) was applied to interphase nuclei to detect the percentage of tumor cells showing polyploidization and chromosome imbalance. In FISH, centromere-specific DNA probes for chromosomes 1, 7, 9, and 11 were used. The tumors were analyzed flow cytometrically to determine the DNA index (DI). Fourteen of 21 cases (67%) having a DI = 1 showed, after classical chromosome counting, in addition to a diploid model number, some cells with a 3n and 4n chromosome count. With FISH, eight cases (38%) showed a low percentage of cells with multiple signals for each of the probes, thus indicating polyploidization. In 13 (62%) cases, an imbalance between different chromosomes was detected. In nine tumors having a DI of 1.6 to 1.9, classical chromosome counting showed low percentages of > or = 5n cells in four cases, in addition to a triploid modal number. With FISH in six cases, a low percentage of cells showed five or more signals for each of the chromosomes, indicating polyploidization. In all cases, a chromosome imbalance was detected. With classical chromosome counting not all tumors can be analyzed. With FISH, small percentages of polyploid cells are not recognized. Both methods complement each other in that chromosome counting allows readier detection of heterogeneity in DNA-diploid tumors after polyploidization, whereas FISH allows efficient recognition of the chromosomes involved in the process of imbalance.

Adult↗

A transplantable cell line derived from spontaneous hepatocellular carcinoma of the hereditary hepatitis LEC rat.

A serially transplantable rat hepatocellular carcinoma (HCC) line was established. The primary spontaneous HCC which developed in a 506-day-old male hereditary hepatitis LEC rat was inoculated into young LEC rats. Only this HCC of 18 primary HCCs was successful in serial transplantation. The established cell line was histologically identical to the primary HCC showing a well-differentiated type with a trabecular structure of tumorous hepatocytes. The characteristic of albumin production was maintained. Chromosome analysis revealed rather widely dispersed polyploid chromosome numbers with a modal value at 96. Every metaphase contained two to five unusually large marker chromosomes.

Animals↗

Long-term establishment of a human plasmacyte cell line derived from a patient with IgD multiple myeloma. I. Requirement of a plasmacyte-stimulating factor for the proliferation of myeloma cells in tissue culture.

Cell line LA-49, derived from pleural fluid cells of a patient with IgD multiple myeloma, was established in culture and maintained for more than 1 yr. The D-myeloma protein produced in culture was similar to the serum D-myeloma protein in electrophoretic mobility and in delta- and lambda-chain antigens. The plasma cell tumor culture, LA-49, differed from numerous immunoglobulin-producing B-lymphoblastoid cell lines established in this laboratory in: (a) Morphology (revealing various stages of maturation); (b) type of immunoglobulin produced (IgD vs. IgM, IgG, and/or, rarely, IgA); (c) growth characteristics (requirement of plasmacyte-stimulating factor); and (d) chromosomal features (polyploid vs. pseudodiploid). A growth factor was needed for cell division and maintenance of culture viability. This factor was supplied readily by irradiated feeder layers of normal human fibroblasts or conditional media from fibroblast cultures. Preliminary characterization of this factor revealed it to be a protein with a mol wt of approximately 150,000 daltons.

Animals↗

n-Butyrate, a cell cycle blocker, inhibits early amplification of duck hepatitis B virus covalently closed circular DNA after in vitro infection of duck hepatocytes.

During chronic hepadnavirus infection, virus persistence depends on the regulation of the pool of covalently closed circular DNA (cccDNA), which is the template for transcription of viral RNA species. The development of in vitro infection of duck hepatocyte primary cultures by duck hepatitis B virus (DHBV) provides a unique opportunity to study the regulation of cccDNA synthesis. After DHBV in vitro infection, cccDNA is detected 1 day later and is amplified to a high copy number after 1 week in culture. We studied whether this amplification occurs during cell cycle progression of duckling hepatocytes. By using [3H]thymidine incorporation, we found that hepatocytes obtained from 3-week-old ducklings spontaneously entered the S phase of the cell cycle when cultured in serum-free medium without added growth factors. Bromodeoxyuridine labeling confirmed that cellular DNA synthesis took place in more than 50% of parenchymal cells. Cytofluorometry analysis revealed the presence of asynchronous populations and polyploidization processes. The addition of a cell cycle blocker, n-butyrate, completely inhibited [3H]thymidine incorporation and blocked duckling hepatocytes in the G1 phase of the cell cycle. Simultaneously, butyrate inhibited cccDNA amplification and allowed the establishment of DHBV infection, as demonstrated by the detection of a basal level of cccDNA in treated hepatocytes. Both effects were reversible since active cell DNA synthesis was restored and cccDNA accumulated after drug withdrawal.

Animals↗

[Importance of the DNA content for the prognosis of invasive carcinoma of the bladder. Determination by photocytometry].

In a retrospective study, a DNA histogram was established from specimens obtained by cystectomy in 65 carcinomas of the bladder (stages pT1 to pT4, pN0, pN1 and pN2). Flow cytometry and automated photocytometry were systematically compared. Automated photocytometry makes it possible to differentiate between diploid, polyploid and aneuploid tumors. Among aneuploid tumors, the DNA content of tumor stem cells make it possible to identify another subgroup. The analysis of various tumor sections showed that the DNA histogram obtained by photocytometry was a stable and reproducible characteristic of the tumor. The subgroups of carcinoma of the bladder, determined by topology, have markedly different long-term prognoses. In contrast to automated photocytometry, flow cytometry did not allow for reproducible determination of the biologic characteristics of carcinoma of the bladder.

Cytophotometry↗

Establishment and characterization of a murine megakaryoblastic cell line growing in protein-free culture (L8057Y5).

A murine megakaryoblastic cell line growing in protein-free culture (L8057Y5) was established from an experimentally induced murine leukemia (MK8057). Most of the Y5 cells were small and blast-like, with 2-4N in DNA content. Also, large cells possessing a lobulated nucleus characteristic of megakaryocytes, which showed polyploidization to more than 4N up to 16N, were occasionally seen. Nearly 5% of the total number of Y5 cells were positive for acetylcholinesterase reaction. The survival time of C3H/He mice after injection with Y5 cells was longer than that of mice injected with the original MK8057 cells. The colony-forming ability of Y5 cells in the spleen of the lethally irradiated mouse was much lower, whereas the number of in vitro colonies derived from Y5 was greater than that of MK8057. The plating efficiency of colony formation in serum-free methylcellulose culture was higher at a low O2 tension. Conditioned medium of Y5 cells enhanced colony formation as well as 3H-TdR uptake by Y5 cells, which implies that Y5 cells may produce autocrine growth factor(s). mRNAs for IL-6, LIF, and INF-gamma were expressed in Y5 cells; these cytokines may have roles in the growth mechanisms of the cell line.

Animals↗

Polyploidy in the human myometrium.

In an investigation to determine whether the enlargement of cells and nuclei in the myometrium of the human uterus during pregnancy is related to the development of polyploidy or not, the following facts were established, mainly on the basis of cytophotometric analysis of nuclei isolated with a newly developed mechanical technique from a series of uteri in different states with regard to the reproductive process (juvenile, nulligravida, gravida, sectio parva, sectio caesarea). 1. Polyploid nuclei arise only during pregnancy. They can still be found for many years after the puerperium; their occurrence, however, remains a discrete phenomenon. 2. During pregnancy, a swelling of virtually all diploid nuclei is observed, which is present as early as 16 weeks after conception, but a significant increase of the nuclear projection area is found only in the Caesarean section group. This swelling, which (might occur under hormonal influence is possibly of a functional nature and is separate from the development of polyploidy as such. 3. By means of the tracing of double sex chromatin bodies in the nuclei, the occurrence of tetraploid nuclei in the myometrium could be demonstrated both in nuclear suspensions and in sections of intact uterine wall.

Cell Nucleus↗