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Flavopiridol, a cyclin-dependent kinase inhibitor, prevents spindle inhibitor-induced endoreduplication in human cancer cells.

Defects in cell cycle checkpoints can lead to chromosome abnormality, aneuploidy, and genomic instability, all of which can contribute to tumorigenesis. Recent studies and data presented in this study indicate that cells with compromised G1 checkpoint endoreduplicate and become polyploid in response to microtubule inhibitors. Previous studies have shown that polyploid cells are unstable and lose chromosomes randomly to give aneuploidy. In this study, we show that endoreduplication and polyploidation can be prevented by inhibiting the cyclin-dependent kinases (Cdks) by flavopiridol, a synthetic flavone presently undergoing phase II clinical trials. In our initial studies, we treated MCF-7 cells with paclitaxel, which results in the arrest of cells in G1 with 4n DNA content (pseudo G1). This was coincident with increased p53 and p21 protein expression and decreased cyclin E/Cdk2 kinase activity. In contrast, G1 checkpoint-compromised MDA-MB-468 (p53-/- and pRb-/-) and p21-/- HCT116 do not arrest in the pseudo G1 state after exposure to microtubule inhibitors and enter in the S phase with 4n DNA content. More than 60% of MDA-MB-468 cells accumulate with >4n DNA content after 72 h of nocodazole treatment. The MPM-2 labeling showed that 8n cells also undergo mitosis. These cells display deregulated and persistent activation of cyclin E/Cdk2 and cyclin B1/cdc2 kinase activity. Administration of flavopiridol after mitotic block results in the arrest of cells in the pseudo G1 state and the dramatic decrease in cells containing >4n DNA content in MDA-MB-468 cells. The cyclin E/Cdk2 and cyclin B1/cdc2 kinase activities remained low after exit from mitosis. Furthermore, pRb was hypophosphorylated after the addition of flavopiridol in p21-deficient HCT116 cells, indicating the arrest of cells at the pseudo G1 state. Based on these studies, we propose that flavopiridol preserves the genomic stability by preventing endoreduplication and polyploidy and thus has the potential to be used as a chemopreventive agent to prevent the occurrence of neoplasia.

Antineoplastic Agents↗

[The prospective analysis of laryngeal cancer growth dynamics in compliance with evaluation of DNA content and ploidy in cytologic material].

The aim of this study was evaluation of DNA ploidy in the cytological samples from patients with laryngeal cancer and comparison a type of DNA ploidy with histological grading (G) and staging of neoplasmatic process. The examinations were performed on 47 patients operated due to laryngeal cancer (3 women, 44 men, mean age 58). Cytological material was collected from squamous carcinoma tissue by imprinting method. Slides were staining by Feulgen method in order to quantitative analysis of DNA by static cytophotometry. In studied material, aneuploid, polyploid and hypoploid tumors were found in 22 patients and diploid tumors were found in 25 cases. Analysis of DNA ploidy type distribution in correlation to G feature showed:--diploid type were dominated in G1 and G2 tumors,--aneuploid and polyploid type were dominated in G3 tumors. Hypoploid and polyploid tumors were appeared in patients with metastases to cervical lymph nodes more frequently than in patients without metastases. Analysis of DNA ploidy complete traditional histopathological diagnosis of laryngeal cancer and may be useful in predicting metastases to cervical lymph nodes.

Cytological Techniques↗

Stromal-derived factor 1-induced megakaryocyte migration and platelet production is dependent on matrix metalloproteinases.

Despite the discovery of thrombopoietin (TPO) and its contribution to megakaryocytopoiesis, the exact mechanisms and sites of platelet production are unknown. It has been shown that mature megakaryocytes (MKs) functionally express the stromal-derived factor 1 (SDF-1) receptor, CXCR4. SDF-1-induced migration of mature MKs through endothelial cell layers results in increased platelet production. Because the migration of polyploid MKs from the bone marrow microenvironment requires remodeling of the perivascular extracellular matrix, it was hypothesized that mature polyploid MKs may express matrix metalloproteinases (MMPs), facilitating their exit into the bone marrow extravascular space. In this report, it is demonstrated that SDF-1 induces the expression and release of gelatinase B (MMP-9) by purified mature polyploid human MKs and an adeno-CXCR4-infected megakaryocytic cell line. Neutralizing antibody to MMP-9, but not MMP-2, blocked SDF-1-induced migration of MKs through reconstituted basement membrane, suggesting that expression of MMP-9 is critical for MK migration. Incubation of mature MKs with a synthetic MMP inhibitor, 5-phenyl-1,10-phenanthrolene, resulted in the inhibition of platelet formation, suggesting that the expression of MMPs is not only critical for megakaryocyte migration but also for subsequent platelet release. Confirming these results, adeno-SDF-1 injection into normal mice resulted in increased platelet counts, a process that could be blocked by a synthetic MMP inhibitor. These results suggest mobilization of MKs involves sequential expression and activation of chemokine receptors such as CXCR4, MMP-9, followed by transendothelial migration. MMP inhibitors may have potential use in the treatment of thrombotic and myeloproliferative disorders. (Blood. 2000;96:4152-4159)

Adult↗

Ribosomal RNA gene expression and chromosome aberrations in bovine oocytes and preimplantation embryos.

This review focuses on the key features of development of the bovine oocyte and embryo, with comparisons of the developmental characteristics of embryos produced in vivo and in vitro. The oocyte is transcriptionally quiescent in the primordial and primary follicle. In the secondary follicle transcription is initiated in the oocyte and a ribosome-synthesizing nucleolus is established in this cell. Transcription and nucleolar activity are enhanced in the tertiary follicle during oocyte growth. When the oocyte reaches approximately 110 microm in diameter, corresponding to a follicle of about 3 mm in diameter, transcription ceases and the nucleolus is inactivated, forming a dense spherical remnant. During the final phase of follicular dominance this remnant becomes vacuolated and, in conjunction with resumption of meiosis, it disperses. The rRNA genes are apparently re-activated during the four-cell stage, that is, the third cell cycle after fertilization, but a nucleolus is not formed. During the subsequent cell cycle, that is, during the eight-cell stage, ribosome-synthesizing nucleoli are again established. Bovine embryos produced in vitro apparently display the same pattern of nucleolus development as that in embryos developed in vivo. Examination of the ploidy of embryonic cells using fluorescence in situ hybridization has revealed that the production of bovine embryos in vitro is associated with increased chromosome aberrations in the embryos. Blastocysts produced in vitro display a significantly higher rate of mixoploidy, that is, when the embryo consists of both normal diploid and abnormal polyploid cells, than that in embryos developed in vivo. The rate of mixoploidy among embryos produced in vitro increases with increasing developmental stage. Moreover, after fertilization in vitro, initially there is a high rate of 'true' polyploidy, that is, when all cells of the embryos are polyploid. However, the polyploid embryos are eliminated before they cleave beyond the eight-cell stage, the stage at which major activation of the embryonic genome occurs in cattle.

Animals↗

Quantitative assessment of oxyphilic cell lesions of the thyroid gland on fine needle aspiration samples.

OBJECTIVE: To assess the possible contribution by a multiparametric quantitative approach to the cytologic diagnosis of oxyphilic cell (OC) thyroid lesions. STUDY DESIGN: Ten cases of chronic lymphocytic (Hashimoto) thyroiditis and 10 nodular goiters containing oxyphilic cells plus 20 cases of tumors subsequently classified as oxyphilic cell adenomas (10 cases) or oxyphilic cell well-differentiated carcinomas (10 cases) were evaluated. The study was performed on May-Grünwald-Giemsa-stained smears for planimetric measurements. The same smears were destained and Feulgen restained for densitometric measurements. The latter were performed using static cytometry equipment measuring 100 and 20-30 lymphocytes per case for the determination of integrated optical density (IOD). The following parameters were considered: nuclear area, perimeter, maximum diameter, form ELL, form PE, IOD, 5c exceeding rate (5cER) and visual classification of histograms as euploid, polyploid and aneuploid. RESULTS: Mean nuclear area of carcinomas was smaller than that of adenomas, goiter and thyroiditis. Nuclear area was larger in adenomas than in other benign lesions and carcinomas. All the other planimetric parameters were similar in the lesions examined. Four carcinomas and three adenomas were aneuploid, and all the rest were euploid. All the cases of thyroiditis and goiter were euploid or polyploid; four thyroiditis cases showed polyploid histograms and 5cER values > 1. CONCLUSION: Morphometric and densitometric procedures have a limited role in the discrimination of OC lesions, but small nuclear area values may be useful in distinguishing OC carcinoma from other lesions. The role of densitometry seems even more limited because aneuploid histograms may be found among adenomas and carcinomas. Further studies are needed to explain polyploidy and 5cER > 1 in Hashimoto thyroiditis.

Biopsy, Needle↗

Nuclear deoxyribonucleic acid content in congenital cardiac malformations.

Cytophotometric measurements of the DNA content of human heart muscle nuclei were performed on normal and congenitally malformed hearts of children. Congenital malformations of the heart lead to an early increase of the ploidy pattern as a sign of myocardial overload. This increase is significant. It starts, at the earliest, after the 3rd week of life. The degree of polyploidization of the muscle nuclei in malformed hearts is dependent on the type of overload. Pressure load produces a stronger shift to higher ploidy values than does volume load. The polyploidization is not dependent on either the heart weight at autopsy or the age of the child. It may be concluded that increasing functional requirement is the main cause of physiological and pathological polyploidization in hearts of children.

Age Factors↗

[In vitro induction of numerical changes in the karyotype of normal and transformed cells of Dzhungarian and Chinese hamsters].

The comparative study of the frequency of colcemid-induced aneuploidy and polyploidy in cultured normal and transformed cells of Djungarian hamster is described. The occurrence of variants with changed chromosome number is much higher in populations of SV40-transformed cell line (4/21) than in normal embryonic cultures. In transformed lines of Djungarian and Chinese hamsters (4/21 and V-79) the frequency of cells with changed chromosome number was found to be depend on the culture density: the percentage of polyploids was 4-5-fold higher when the number of seeded cells was 2-fold lower. The highest number (18-29%) of hypermodal cells was produced at drug concentrations of 0.02--0.025 mkg/ml. The percentage of polyploids under these conditions reached 10--20. At further increaseof colcemid concentrations the proportion of polyploid cells increased. In Djungarian hamster embryonic cell cultures there were single cells with changed chromosome numbers at a concentrarion of the drug of 0.015-0.1 mkg/ml.

Animals↗

[Phylogeny of Triticum L. and Aegilops L. genuses inferred from a comparative analysis of nucleotide sequences in promoter rDNA regions of individual species].

The process of accumulation of knowledge on wheat and related wild species during the 20th century is briefly reviewed with special reference to the evidence of the recent years on evolution of polyploid wheats and the role of diploid species. The latter serve as potential donors of the genomes, detection of which is particularly important because of the continuing speciation in the tribe Triticeae and artificial development of synthetic forms. The arguments in favor of the donor role for various diploid wheat species and aegilopses from the section Sitopsis are compared. It is stated that in the formation of the both lines of polyploid wheats turgidum-aestivum and timopheevi, diploid Aegilops speltoides acted as a maternal form. In addition to plasmatic genomes, this aegilops species introduced into them also the B and G nuclear subgenomes. A comparison of nucleotide sequences in the variable part of the promoter of evolutionary conserved rRNA genes in polyploid wheats with their counterparts in diploid wheats and aegilopses confirmed the accepted wheat phylogenies.

Base Sequence↗

2R or not 2R: testing hypotheses of genome duplication in early vertebrates.

The widely popular hypothesis that there were two rounds of genome duplication by polyploidization early in vertebrate history (the 2R hypothesis) has been difficult to test until recently. Among the lines of evidence adduced in support of this hypothesis are relative genome size, relative gene number, and the existence of genomic regions putatively duplicated during polyploidization. The availability of sequence for a substantial portion of the human genome makes possible the first rigorous tests of this hypothesis. Comparison of gene family size in the human genome and in invertebrate genomes shows no evidence of a 4:1 ratio between vertebrates and invertebrates. Furthermore, explicit phylogenetic tests for the topology expected from two rounds of polyploidization have revealed alternative topologies in a substantial majority of human gene families. Likewise, phylogenetic analyses have shown that putatively duplicated genomic regions often include genes duplicated at widely different times over the evolution of life. The 2R hypothesis thus can be decisively rejected. Rather, current evidence favors a model of genome evolution in which tandem duplication, whether of genomic segments or of individual genes, predominates.

Animals↗

Karyotypes and cytogenetic diversity of the genus Cobitis (Pisces, Cobitidae) in Poland: a review. Cytogenetic evidence for a hybrid origin of some Cobitis triploids.

This work summarized the results of comparative chromosomal study of Cobitis fish from 13 locations in Poland. At least two distinct species C. taenia and C. elongatoides were cytogenetically recognized. The populations of C. taenia were detected in only three lakes located in northern Poland. One hybrid diploid, four triploid and four tetraploid forms were recognized among the samples. These hybrid forms or biotypes of Cobitis could not be distinguished by external characteristics. Based on the species-specific chromosome markers such as NORs, CMA3-positive and C-bands, it is hypothesized that C. taenia, C. elongatoides, and one or two other species have taken part in the origin of polyploids. Two different hybrid diploid-polyploid Cobitis complexes were distinguished. One was composed of C. taenia, two triploid hybrid forms and two tetraploids. The other complex included C. taenia and C. elongatoides, which have taken part in the origin of coexisting hybrid forms: diploid hybrid C. taenia-elongatoides, four different triploid and two tetraploid biotypes. The results obtained indicate the hypothetical mode of origin of some polyploid Cobitis forms.

Animals↗

[Cytofluorometric analysis of cell proliferation kinetics of the human colorectal cancer].

In order to clarify cell proliferation kinetics of human colorectal cancer, 91 cases were investigated by cytofluorometry and clinicopathological findings. The results showed colorectal cancers could be divided into 3 groups according to the ploidy pattern. Group I was the diploid cell population, group II the polyploid cell populations and group II' the aneuploid cell populations. These ploidy patterns were found not to be related both to the histological types and the gross pathological classification. Most of the intramucosal cancers were found in group I, and the cancers of more advanced growth mainly in groups II and II'. The fraction of diploid cells in the groups I and II' did not show the remarkable change, but in the group II decreased with tumor progression. These results indicate the ploidy patterns appear to change with the submucosal invasion, and also that while the ploidy patterns in the groups I and II' are stable, those in the group II increase the extent of polyploidization with the tumor growth. Lymphatic metastases were found to be more frequent in the group II than in the groups I and II'. It is suggested that the mechanism of lymphatic metastasis would be related to the cell polyploidization.

Adenocarcinoma↗

[In vitro induction of numerical changes in the karyotype of normal and transformed Djungarian and Chinese hamster cells].

The comparative study of the frequency of colcemid-induced aneuploidy and polyploidy in cultured normal and transformed cells of Djungarian hamster is described. The occurrence of variants with changed chromosome number is much higher in populations of SV40-transformed cell line (4/21) than in normal embryonic cultures. In transformed lines of Djungarian and Chinese hamsters (4/21 and V-79) the frequency of cells with changed chromosome number was found to be dependent on the culture density: the percentage of polyploids was 4-5-fold higher when the number of seeded cells was 2-fold lower. The highest number (18-29%) of hypermodal cells was produced at drug concentrations of 0.02-0.025 mkg/ml. The percengate of polyploids under these conditions reached 10-20. At further increase of colcemid concentrations the proportion of polyploid cells increased. In Djungarian hamster embryonic cell cultures there were single cells with changed chromosome numbers at a concentration of the drug of 0.015-0.1 mkg/ml.

Aneuploidy↗

DNA and sex chromatin content in nuclei of conductive system and working myocytes of normal and hypertrophied human heart.

DNA content was measured by means of Feulgen cytophotometry in myocyte nuclei of sinoatrial und atrioventricular nodes, Purkinje cells, left and right atria and ventricles from normal and hypertrophied human hearts both on 12 microns sections and on squash preparations of myocardial tissue. In contrast to ordinary atrial and ventricular myocytes of normal and hypertrophied adult hearts, which contain mostly polyploid nuclei, the DNA content in 74 to 88.5% of myocyte nuclei from sinoatrial and atrioventricular nodes does not exceed 2 c. Unlike nodal myocytes in Purkinje cells of hypertrophied adult heart there are 97 to 99.5% of polyploid nuclei, 49 to 88% of them displaying octaploid and higher DNA values. Myocytes of highly hypertrophied atria contain nuclei of considerably higher ploidy level than those of normal atria. Percentage of binucleated cells show a 4-fold increase in hypertrophied atria compared with normal ones. The total area of nucleoli per nucleus is proportional to the degree of ploidy. Number of sex chromatin bodies counted simultaneously with DNA measurements on sections of atrioventricular node and on squash preparations of atria and ventricles is correlated with ploidy level. Judging by correlations between the number of sex chromatin bodies and DNA content in nuclei, on one hand, and between the total area of nucleoli per nucleus and the degree of ploidy, on the other, the mitotic endoreduplication (true polyploidization) is responsible for the increased DNA content in nuclei of conductive system, atrium and ventricle.

Adult↗

[Prognostic significance of nuclear DNA content in breast cancer].

The relationship between nuclear DNA content determined by cytofluorometry in the primary focus of breast cancer and the survival rate was analyzed to clarify the prognostic significance of nuclear DNA content in breast cancer. The relationships of the ploidy pattern and the frequency of polyploid cells (4c or above) with the survival rate were studied in patients who underwent extended radical mastectomy and were comparable in the clinical stage and other prognostic factors. The survival rate was significantly lower in those of the non-diploid type showing no prominent peak at 2c or those in whom the frequency of polyploid cells was more than 30% than in those of the diploid type with a prominent peak at 2c or those showing few polyploid cells, even when the disease stage (Stage II by TNM classification and stage III by Tnm classification), histological lymph node metastasis (n (+), n1 beta), and histological type (papillotubular carcinoma, scirrhous carcinoma) were identical. From these findings, nuclear DNA content is considered to be a parameter of the malignancy of breast cancer and to have clinical significance as an important prognostic factor.

Breast Neoplasms↗

[Isolation and characterization of gliadins from Aegilops squarrosa seeds].

The major gliadin components were isolated from the seeds of the diploid species Aegilops squarrosa, a putative source of polyploid wheat D-genome. The isolation procedure included gel-filtration and reversed-phase high-performance liquid chromatography (HPLC). The purified proteins were characterized by electrophoretic mobility in polyacrylamide gel using acid Al-lactate system and a system containing sodium dodecyl sulfate. The amino acid composition of isolated omega-gliadins was determined. Using covalent chromatography on thiopropyl-Sepharose 6B it was found that omega-gliadins of A. squarrosa contain no SH-groups and/or S-S-bonds. The N-terminal amino acid sequences of A. squarrosa gliadins were determined. omega-Gliadins were found to contain three types of N-terminal amino acid sequences, one of which, SRQ, in hexaploid wheat is encoded by 1B chromosome. It was shown that some omega-gliadins of A. squarrosa have blocked N-terminal amino acids. The major component of the gamma-fraction was found to contain an N-terminal sequence of gamma 2 type encoded in polyploid wheat by 1D chromosome. Gliadins with electrophoretic mobility in the beta-zone of the spectrum possess the N-terminal sequence of alpha-type. The results obtained are discussed in terms of the origin of polyploid wheat genomes.

Amino Acid Sequence↗

Characteristics of colorectal epithelia and adenomas as revealed by DNA cytofluorometry.

Human colorectal normal epithelia and tubular adenomas were studied by DNA-cytofluorometry using free cell nuclei isolated from formalin-fixed and paraffin-embedded specimens. All the normal epithelia (30 cases) showed low proliferative activity, no polyploid cells and no aneuploid cell clones at any age in either sex. The mean diploid G1/G0 fraction (DF) of the normal epithelia was 95.9%. The adenomas, on the other hand, showed increased proliferative activity usually in accordance with the grade of atypia. The mean DF values of the adenomas with mild atypia (31 lesions) and moderate atypia (21 lesions) were 89.4% and 85.6%, respectively. The adenomas, irrespective of their grade of atypia, occasionally showed low proliferative activity, while in the adenomas adjacent to a carcinoma, the proliferative activity was relatively high even though their atypia was mild. Neither polyploid cells nor aneuploid cell clones were found in the adenomas. Therefore, polyploid and aneuploid cell populations are characteristics of carcinoma of the colon and rectum, and this criterion should be useful in investigations of the genesis of carcinoma in the human colorectal mucosa.

Adenoma↗

[Cells of the metrial gland: their relation to trophoblast cells and reproductive characteristics].

Data on the origin, morphology and function of metrial gland cells are reviewed. Characteristic features of metrial gland cells are the availability of numerous eosinophilic granules lying near two round or oval nuclei and peripheral zone of the cytoplasm, generally devoid of organelles. This zone can generate pseudopodia-like projections. The notable peculiarity of metrial gland cells involves their ability to penetrate into blood vessels, to migrate towards the embryo, and to achieve the ectoplacental cone. The majority of metrial gland cells is accumulated in the decidua basalis zone where the tertiary trophoblast cells usually migrate. The metrial gland cells seem to constitute a cell population analogous to that of decidual cells. Data on the protective role of metrial gland cells are discussed. The metrial gland cells are proven to be polyploid. Polyploid nuclei are found both in mononucleate and binucleate cells. Acytokinetic mitosis is presumably a way leading to polyploidization of metrial gland cells.

Animals↗

[Analysis of the postnatal growth of the mouse liver by estimating the hepatocyte count, their weight and ploidy].

Changes in the total number of hepatocytes, their distribution by the ploidy classes, as well as changes in the protein content of the cells were studied in 0.5-6 month old mice. The data obtained made it possible to estimate quantitatively the contribution of different growth components: increase in cell number, hypertrophy and polyploidization of cells, to the total increase of the liver mass. From 2 weeks to 1 month, the liver mass is increased via polyploidization (by 70%) and hypertrophy (by 30%). From 1 to 2 months, the liver mass increases due to hyperplasia (by 65%) and polyploidization (35%). After 2 months, the liver growth is practically terminated. The calculated equivalent mass of the liver, i. e. derivative of all three growth components, coincides fairly well with the factual changes in the liver mass.

Aging↗