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G Piaggio

Publications and source records attributed to G Piaggio.

At least 37 records · Page 2Linked to original sources

Modified in vitro conditions for cord blood-derived long-term culture-initiating cells.

OBJECTIVE: The aim of this study was to compare the in vitro growth of cord blood-derived progenitors with that of bone marrow and peripheral blood. MATERIALS AND METHODS: We analyzed 192 umbilical cord blood (UCB), 35 normal bone marrow (NBM), and 35 granulocyte colony-stimulating factor (G-CSF)-primed normal peripheral blood (NPB) samples. Standard clonogenic assays (colony-forming unit granulocyte-macrophage [CFU-GM], burst-forming unit erythroid [BFU-E], CFU-granulocyte erythroid megakaryocyte macrophage [GEMM]) and standard long-term culture-initiating cell (LTC-IC) assay were performed. LTC-IC frequency also was tested under modified culture conditions. The variables tested were incubation temperature (37 degrees C and 33 degrees C) and supportive stromal cell lines (NIH3T3 and M210-B4). RESULTS: The CFU-GM and CFU-GEMM frequencies of UCB samples were similar to NPB and higher compared to NBM samples (p < 10(-4) and p < 0.007 respectively). On the other hand, the BFU-E frequency was lower in cord blood samples (5.2 +/- 5.6/10(4) MNC) compared to bone marrow (7 +/- 3.8/10(4) MNC; p < 0.005) and peripheral blood (15.2 +/- 11.1/10(4) MNC; p < 10(-4)). All colony types (CFU-GM, BFU-E, CFU-GEMM) generated from cord blood progenitors were larger with respect to the other tissues. The LTC-IC frequency was markedly decreased (8.8 +/- 3.8/10(6) MNC) in cord blood with respect to bone marrow (40.7 +/- 7.4/10(6) MNC; p < 10(-4)) and peripheral blood (28.8 +/- 3.8/10(6) MNC; p < 0.04). However, when culture conditions (temperature, stromal layers) were modified, UCB-LTC-IC frequency significantly increased, while the growth of early progenitors derived from adult tissues (BM and PB) did not show any variation. Whatever culture conditions were used, the proliferative potential of UCB LTC-IC was significantly higher with respect to bone marrow and G-CSF-primed PB (10.6 +/- 7.7 colonies vs. 5.9 +/- 5 vs 3.2 +/- 2.2 colonies; p < 0.02 and p < 0.001 respectively). CONCLUSIONS: Optimal conditions for estimation of the LTC-IC frequency in cord blood samples seem to be different from those usually applied to PB and BM progenitors. Although UCB hemopoietic progenitors have a higher proliferative potential than those from bone marrow and G-CSF-primed peripheral blood, their quantitation depends on the culture conditions, which makes it difficult to establish their exact number. This problem and the fact that a significant proportion of UCB samples grew poorly in culture make it necessary to develop suitable and standardized functional assays to test UCB progenitor content before the transplantation procedure.

3T3 Cells↗

Interferon-alpha protects Philadelphia-negative progenitors from exhaustion in chronic myeloid leukemia patients with cytogenetic response.

INTRODUCTION: Normal immature hematopoietic progenitors are relatively well preserved in most patients newly diagnosed with chronic myeloid leukemia, but tend to decline rapidly with time. Such exhaustion could reflect a suppressive effect of the Philadelphia positive clone expansion and/or be induced by Interferon-alpha treatment. MATERIALS AND METHODS: A total of 51 CML patients were classified into three groups. Newly diagnosed untreated patients were group A (n=30). Of the 21 treated individuals with Interferon-alpha, for at least 12 months, 15 showed no cytogenetic response (group B) while six showed persisting major/complete response (group C). Patients belonging to groups A and B were mobilized with chemotherapy plus G-CSF while patients of group C received a short course of G-CSF only. RESULTS: Patients responding to IFN-alpha (group C) showed comparable numbers of bone marrow Ph- long-term culture initiating cells to those of newly diagnosed individuals (group A): 8.5 (<1-65)/10(6) MNC vs 10.5 (<1-30), while non-responders had markedly lower numbers: <1 (<1-5). The amount of Ph- LTC-IC collected was significantly lower in patients of group B 1.8 (0-325)x10(2)/kg than in patients of either group A 31.3 (0-952)x10(2)/kg (P<0.002) or group C 109 (8-259)x10(2)/kg (P<0.01). Interestingly, five patients of group B who had 100% Ph+ metaphases, but Ph- progenitors in their bone marrow, mobilized normal amounts of Ph(-) progenitors. CONCLUSION: These findings suggest that the decline of normal hematopoietic progenitors, currently observed in the majority of CML patients, is not induced by IFN-alpha treatment, but it is likely due to the expanding leukemic clone. They also indicate that normal hematopoietic reservoir is consistently preserved in patients given IFN-alpha early after diagnosis and achieving a stable cytogenetic response.

Adult↗

The transcriptional repressor ZEB regulates p73 expression at the crossroad between proliferation and differentiation.

The newly discovered p73 gene encodes a nuclear protein that has high homology with p53. Furthermore, ectopic expression of p73 in p53(+/+) and p53(-/-) cancer cells recapitulates some of the biological activities of p53 such as growth arrest, apoptosis, and differentiation. p73(-/-)-deficient mice exhibit severe defects in proper development of the central nervous system and pheromone sensory pathway. They also suffer from inflammation and infections. Here we studied the transcriptional regulation of p73 at the crossroad between proliferation and differentiation. p73 mRNA is undetectable in proliferating C2C12 cells and is expressed at very low levels in undifferentiated P19 and HL60 cells. Conversely, it is upregulated during muscle and neuronal differentiation as well as in response to tetradecanoyl phorbol acetate-induced monocytic differentiation of HL60 cells. We identified a 1-kb regulatory fragment located within the first intron of p73, which is positioned immediately upstream to the ATG codon of the second exon. This fragment exerts silencer activity on p73 as well as on heterologous promoters. The p73 intronic fragment contains six consensus binding sites for transcriptional repressor ZEB, which binds these sites in vitro and in vivo. Ectopic expression of dominant-negative ZEB (ZEB-DB) restores p73 expression in proliferating C2C12 and P19 cells. Thus, transcriptional repression of p73 expression by ZEB binding may contribute to the modulation of p73 expression during differentiation.

Animals↗

Statistical methods for the meta-analysis of cluster randomization trials.

Cluster randomization trials have become a very attractive research strategy, particularly for the evaluation of health service interventions. The need to conduct meta-analyses of such trials is also becoming more common. However, as with cluster randomization trials in general, such analyses raise special methodologic challenges. In this paper, we discuss and illustrate several statistical approaches that might be applied to a meta-analysis of cluster randomization trials, each of which has a binary endpoint. Statistical methods for constructing inferences for a summary intervention odds ratio include those based on Mantel-Haenszel procedures, the ratio estimator approach, Woolf procedures and generalized estimating equations using robust variance estimation. The advantages and disadvantages of each method are discussed in the context of an example.

Cluster Analysis↗

Branchio-Oto-renal syndrome: a report on nine family groups.

This study reviews nine new families with branchio-oto-renal (BOR) syndrome (Online Mendelian Inheritance in Man [OMIM] 113650). Diagnosis was made by studying 10 index cases, and then 22 other previously undetected patients were diagnosed within the nine families. The syndrome consists of conductive, sensorineural, or mixed hearing loss; preauricular pits; structural defects of the outer, middle, or inner ear; renal anomalies; lateral cervical fistulas, cysts, or sinuses; and/or nasolacrimal duct stenosis or fistulas. In our study, all patients first diagnosed in each familial group were recognized on the basis of severe renal anomalies associated with at least one of these symptoms. Our study showed that BOR syndrome is a misdiagnosed disorder, usually recognized in the presence of severe renal failure but often not diagnosed, especially in the adult in the presence of other isolated clinical signs, such as mild branchial or urological anomalies. We stress the meticulous search we performed for renal anomalies and/or hearing loss in all subjects showing minimal signs of branchial defects. BOR syndrome should be suspected in all cases of isolated urological anomalies, even if no other signs of the syndrome are present. After BOR syndrome has been diagnosed in a patient, all family members should be examined for the presence of the syndrome, even if there are only minimal stigmata of the disease.

Branchio-Oto-Renal Syndrome↗

p53 regulates myogenesis by triggering the differentiation activity of pRb.

The p53 oncosuppressor protein regulates cell cycle checkpoints and apoptosis, but increasing evidence also indicates its involvement in differentiation and development. We had previously demonstrated that in the presence of differentiation-promoting stimuli, p53-defective myoblasts exit from the cell cycle but do not differentiate into myocytes and myotubes. To identify the pathways through which p53 contributes to skeletal muscle differentiation, we have analyzed the expression of a series of genes regulated during myogenesis in parental and dominant-negative p53 (dnp53)-expressing C2C12 myoblasts. We found that in dnp53-expressing C2C12 cells, as well as in p53(-/-) primary myoblasts, pRb is hypophosphorylated and proliferation stops. However, these cells do not upregulate pRb and have reduced MyoD activity. The transduction of exogenous TP53 or Rb genes in p53-defective myoblasts rescues MyoD activity and differentiation potential. Additionally, in vivo studies on the Rb promoter demonstrate that p53 regulates the Rb gene expression at transcriptional level through a p53-binding site. Therefore, here we show that p53 regulates myoblast differentiation by means of pRb without affecting its cell cycle-related functions.

Animals↗

NF-Y mediates the transcriptional inhibition of the cyclin B1, cyclin B2, and cdc25C promoters upon induced G2 arrest.

During normal cell cycles, the function of mitotic cyclin-cdk1 complexes, as well as of cdc25C phosphatase, is required for G2 phase progression. Accordingly, the G2 arrest induced by DNA damage is associated with a down-regulation of mitotic cyclins, cdk1, and cdc25C phosphatase expression. We found that the promoter activity of these genes is repressed in the G2 arrest induced by DNA damage. We asked whether the CCAAT-binding NF-Y modulates mitotic cyclins, cdk1, and cdc25C gene transcription during this type of G2 arrest. In our experimental conditions, the integrity of the CCAAT boxes of cyclin B1, cyclin B2, and cdc25C promoters, as well as the presence of a functional NF-Y complex, is strictly required for the transcriptional inhibition of these promoters. Furthermore, a dominant-negative p53 protein, impairing doxorubicin-induced G2 arrest, prevents transcriptional down-regulation of the mitotic cyclins, cdk1, and cdc25C genes. We conclude that, as already demonstrated for cdk1, NF-Y mediates the transcriptional inhibition of the mitotic cyclins and the cdc25C genes during p53-dependent G2 arrest induced by DNA damage. These data suggest a transcriptional regulatory role of NF-Y in the G2 checkpoint after DNA damage.

CCAAT-Binding Factor↗

Patterns of routine antenatal care for low-risk pregnancy.

BACKGROUND: It has been suggested that reduced antenatal care packages or prenatal care managed by providers other than obstetricians for low risk women can be as effective as standard models of antenatal care. OBJECTIVES: The objective of this review was to assess the effects of antenatal care programmes for low-risk women. SEARCH STRATEGY: We searched the Cochrane Pregnancy and Childbirth Group trials register, reference lists of articles and we also contacted researchers in the field. Date of last search: April 1999. SELECTION CRITERIA: Randomised trials comparing programmes of antenatal care with varied frequency and timing of the visits and different types of care providers. DATA COLLECTION AND ANALYSIS: Trial quality was assessed and data were extracted by two reviewers independently. Study authors were contacted for additional information and they were provided with the final version of the review. MAIN RESULTS: Nine trials involving over 25000 women were included. Six trials evaluated the number of visits and three trials evaluated the type of care provider. Most trials were of acceptable quality. Moderate reduction in the number of visits was not associated with an increase in any of the negative perinatal outcomes reviewed. However, trials from developed countries suggest that women can be less satisfied with the reduced number of visits and feel that their expectations with care are not fulfilled. Antenatal care provided by a midwife/general practitioner was associated with improved perception of care by women. Clinical effectiveness of midwife/general practitioner managed care was similar to that of obstetrician/gynaecologist led shared care. REVIEWER'S CONCLUSIONS: It appears that a moderate reduction in the number of antenatal care visits with an increased emphasis on the content of the visits could be implemented without any increase in adverse biological perinatal outcomes. Women can be less satisfied with reduced visits. While clinical effectiveness seemed similar, women appeared to be slightly more satisfied with midwife/general practitioner managed care compared to obstetrician/gynaecologist led shared care.

Female↗

Steroid hormone contraception and bone mineral density: a cross-sectional study in an international population. The WHO Study of Hormonal Contraception and Bone Health.

OBJECTIVE: To evaluate relationships between bone mineral density and use of steroid hormonal contraceptives. METHODS: This was a multicenter cross-sectional study in seven centers in three regions of the developing world from April 1994 to June 1997. Women 30-34 years old attending family planning clinics, with at least 24 months of lifetime use of combined oral contraceptives (OC), depot-medroxyprogesterone acetate (DMPA), or levonorgestrel implants, or no or only short-term (less than 6 months) use of steroid hormonal contraceptives, had bone mineral density (BMD) measured at the distal radius and the midshaft of the ulna using single-photon x-ray absorptiometry. RESULTS: In the study, 2474 women were examined. For OC use, adjusted mean BMD was significantly higher in short-term, current users compared with women who never used hormonal contraceptives. For DMPA and levonorgestrel implants, adjusted mean BMD was statistically significantly lower in short-term current users compared with those who never used hormonal contraceptives. For all three hormonal methods, there were no significant differences in BMD between past users of hormonal contraceptives and never users, even among those who had used the methods for 4 or more years. The magnitude of changes in BMD was small and less than one standard deviation (SD) from the mean of those who never used steroid contraceptives. CONCLUSION: This study suggests that hormonal contraceptive use by young adult women is associated with small changes in BMD that occur early after initiation of use and are reversible.

Adult↗

Clinical and molecular heterogeneity of juvenile nephronophthisis in Italy: insights from molecular screening.

Autosomal recessive nephronophthisis (NPH) is a renal disorder histologically characterized by tubulointerstitial lesions that are, in some cases, associated with extrarenal manifestations such as tapeto-retinal degeneration or liver fibrosis. The disease is usually pauci-symptomatic in an early phase but invariably evolves to end-stage renal failure in childhood or early adulthood. The recent discovery of the NPHP1 gene (nephrocystin) has prompted research into putative genotype-phenotype correlations. We screened a population of 68 Italian children (10 multiplex families, 47 sporadic cases) with a clinical and histopathologic picture of NPH and found a large homozygous deletion at 2q13 involving nephrocystin in 30 cases, and heterozygous deletion associated with new point mutations at exons 15 (Tyr518Ter) and 17 (Arg585Ter) of the gene in two other cases. The remaining 36 children had no apparent molecular defects of nephrocystin. In spite of this genetic heterogeneity, the two groups, with and without detectable molecular defects of nephrocystin, showed similar renal defects and comparable cumulative survival considering the start of dialysis as an end-point. The unique difference observed was a less frequent requirement of dialysis in NPH1 patients with pure renal form. Finally, tapeto-retinal degeneration was associated with renal lesions in seven cases presenting deletion of the nephrocystin gene and in five sporadic cases without molecular defects. These data show that a molecular defect of nephrocystin is involved in approximately 50% of patients with NPH, and another 50% require further molecular characterization. Research therefore should now be aimed at characterizing a new locus. In spite of the molecular heterogeneity, NPH in children presents similar renal and extrarenal manifestations, thus suggesting the involvement of common pathological routes.

Adaptor Proteins, Signal Transducing↗

The retroviral transduction of HOXC4 into human CD34(+) cells induces an in vitro expansion of clonogenic and early progenitors.

OBJECTIVE: +HOX genes are expressed in the hematopoietic system and increasing data point to their involvement in the control of proliferation and/or differentiation. Genes belonging to the C cluster are preferentially expressed in developing and differentiated lymphoid lineages. However, recent studies demonstrated, by RT-PCR, that the HOXC4 gene is also actively transcribed in the most undifferentiated hematopoietic cells (CD34(+)38(low)) and in more mature myeloid and erythroid progenitors. We evaluated the expression of HOXC4 protein on human CD34(+) cells and the in vitro effect of its overexpression on proliferation and differentiation. MATERIALS AND METHODS: We assessed the expression of HOXC4 on human CD34(+) cells using a polyclonal antibody raised against the C-terminal portion of the protein expressed using the baculovirus system. Overexpression of HOXC4 in human CD34(+) cells was obtained by retroviral gene transfer; its effect on clonogenic (CFU-GM, BFU-E, and CFU-GEMM) and early progenitors (LTC-IC) was evaluated. RESULTS: The HOXC4 protein is indeed expressed in human CD34(+) cells, and its overexpression in human CD34(+) cells increases the proliferation potential of clonogenic and early progenitors. CFU-GM showed a median threefold expansion (range: 1.1-19.4; p < 0.002) compared with control transduced with the vector alone. The increment of BFU-E was higher (median ninefold, range 2.5-35; p < 0. 0009) and erythroid colonies presented a larger size with normal morphology. An even more marked effect was observed on LTC-IC (median 13, onefold; range 4.1-102.1, p < 0.0001). CONCLUSION: We demonstrate that HOXC4 is expressed in CD34(+) cells and that its overexpression induces an in vitro expansion of committed as well as very early hematopoietic progenitors. The most striking effect was obtained on LTC-IC with an expansion of 13.1-fold. The enforced expression of HOXC4 induced a significant increase (p < 0.009) in the number of erythroid colonies compared with CFU-GM, although without perturbing, at least in vitro, the maturation program of the cells. On the other hand, the effect of the gene overexpression did not induce any skewing in the colony types derived from the myeloid lineage.

Antigens, CD34↗

Cytogenetic response to autografting in chronic myelogenous leukemia correlates with the amount of BCR-ABL positive cells in the graft.

OBJECTIVE: An important step in successful autografting of patients with chronic myelogenous leukemia is the delivery of a leukemia-free graft. We conducted this study to determine whether the cytogenetic response after autografting was correlated with the number of BCR ABL-positive cells present within the stem cell grafts. MATERIALS AND METHODS: By BCR-ABL mRNA quantification, we studied the serial pheresis products from 40 Philadelphia (Ph)-positive patients who received ICE/mini-ICE mobilization therapy and underwent autologous stem cell transplantation. We correlated the residual disease within the graft reinfused with the cytogenetic response following transplantation, taking into consideration those responses that lasted 12 months or more. RESULTS: Thirty-two patients received a graft with 0-35% Ph-metaphases and 19 received a graft with BCR-ABL/ABL ratio < or =0.01. After a median of 27 months (range, 12-50) from transplant, 18 patients achieved complete or major cytogenetic response lasting at least 12 months, and 14 of them (78%) received a graft with BCR-ABL/ABL ratio < or =0.01 (range, 0.0003-0.01). Twenty-two patients experienced short-lived responses or had >35% Ph-positive cells in the marrow after transplant, but only 5 of them (23%) had a graft with BCR-ABL/ABL ratio < or =0.01 (range, 0.001-0.01). Therefore, we found a strong association between a BCR-ABL/ABL ratio less than or =0.01 and the achievement of complete or major cytogenetic remission after autografting (chi(2) test, p = 0.0001). Patients reinfused with grafts contaminated at low levels with leukemic cells also showed a longer duration of the response (log-rank test, p = 0.0009). Eleven patients were reinfused with the lowest level of contaminated stem cell collections, according to the BCR-ABL/ABL ratio. None of these patients experienced prolonged neutropenia or thrombocytopenia following stem cell reinfusion and nine of them had long-lasting complete or major cytogenetic responses after transplant. CONCLUSION: This study demonstrates that the number of BCR-ABL positive cells present in a stem cell graft is an important predictive factor for the achievement and the duration of cytogenetic response after autografting. [corrected]

Adult↗

Autografting with Ph-negative progenitors in patients at diagnosis of chronic myeloid leukemia induces a prolonged prevalence of Ph-negative hemopoiesis.

OBJECTIVE: In many patients with chronic myeloid leukemia (CML), a residual population of primitive normal (Ph-negative) progenitors persists despite the marked expansion of the leukemic (Ph-positive) clone. These cells may be found in the blood of patients studied soon after diagnosis or during the period of endogenous hematopoietic recovery that follows myeloreductive therapy. Based on those observations, we have developed a clinical protocol that allows collection of Ph-negative peripheral blood progenitor cells (PBPC) with transplantable hematopoietic regenerative potential. The aim of this study is to examine changes that occur in the percentage of Ph-negative- and Ph-positive-committed progenitor cells and to determine the relationship between changes and clinical outcome. MATERIALS AND METHODS: We followed 15 patients with CML, mobilized and autografted soon after diagnosis with 85%-100% Ph-negative PBPC for a median time of 28 months (range 18-50) after transplant. At 6 months, 1 year, 2 years, and last follow-up, cytogenetic analyses were performed on fresh bone marrow cells and on colony-forming cells (CFC). RESULTS: Autologous transplantation induces a reduction in the proportion of Ph-positive CFC, from 70%-100% to 0%-25% in the majority of patients (78%). After autografting, 8 of 15 patients achieved a long-lasting cytogenetic remission (median, 24 months; range, 21-43) with a Ph-positivity ranging between 0% and 20% at the level of mature mononuclear cells and colony-forming cells (CFC). In some patients, the majority of CFC remained Ph-negative, whereas the majority of the mature cells were Ph-positive. Other patients (5/15) developed cytogenetic relapse (100% Ph-positive), although they were in hematological remission. We found that detection of Ph-positive long-term-culture initiating cells (LTC-IC) in the marrow at diagnosis was the only factor significantly associated with recurrence of the disease (p < 0.01); on the other hand, the number of Ph-negative LTC-IC infused showed a significant correlation with a better outcome (p < 0.03). CONCLUSION: We have shown that a prolonged period of complete or almost complete Ph-negative hemopoiesis can be achieved in patients with CML who undergo autografting with Ph-negative progenitors. Longer follow-up study will be needed to assess whether these changes are associated with improved survival.

Adult↗

Induction of hTERT expression and telomerase activity by estrogens in human ovary epithelium cells.

In mammals, molecular mechanisms and factors involved in the tight regulation of telomerase expression and activity are still largely undefined. In this study, we provide evidence for a role of estrogens and their receptors in the transcriptional regulation of hTERT, the catalytic subunit of human telomerase and, consequently, in the activation of the enzyme. Through a computer analysis of the hTERT 5'-flanking sequences, we identified a putative estrogen response element (ERE) which was capable of binding in vitro human estrogen receptor alpha (ERalpha). In vivo DNA footprinting revealed specific modifications of the ERE region in ERalpha-positive but not ERalpha-negative cells upon treatment with 17beta-estradiol (E2), indicative of estrogen-dependent chromatin remodelling. In the presence of E2, transient expression of ERalpha but not ERbeta remarkably increased hTERT promoter activity, and mutation of the ERE significantly reduced this effect. No telomerase activity was detected in human ovary epithelial cells grown in the absence of E2, but the addition of the hormone induced the enzyme within 3 h of treatment. The expression of hTERT mRNA and protein was induced in parallel with enzymatic activity. This prompt estrogen modulation of telomerase activity substantiates estrogen-dependent transcriptional regulation of the hTERT gene. The identification of hTERT as a target of estrogens represents a novel finding which advances the understanding of telomerase regulation in hormone-dependent cells and has implications for a potential role of hormones in their senescence and malignant conversion.

3T3 Cells↗

HMGI(Y) and HMGI-C genes are expressed in neuroblastoma cell lines and tumors and affect retinoic acid responsiveness.

HMGI-C and HMGI(Y) are architectural DNA-binding proteins that participate in the conformational regulation of active chromatin. Their pattern of expression in embryonal and adult tissues, the analysis of the "pygmy" phenotype induced by the inactivation of the HMGI-C gene, and their frequent qualitative or quantitative alteration in experimental and human tumors indicate their pivotal role in the control of cell growth, differentiation, and tumorigenesis in several tissues representative of the epithelial, mesenchymal, and hematopoietic lineages. In contrast, very little information is available on their expression and function in neural cells. Here, we investigated the expression of the HMGI(Y) and HMGI-C genes in neuroblastoma (NB), a tumor arising from an alteration of the normal differentiation of neural crest-derived cells and in embryonal and adult adrenal tissue. Although HMGI(Y) is constitutively expressed in the embryonal and adult adrenal gland and in all of the NB cell lines and ex vivo tumors examined, its regulation appears to be associated to growth inhibition and differentiation because we observed that HMGI(Y) expression is reduced by retinoic acid (RA) in several NB cell lines that are induced to differentiate into postmitotic neurons, whereas it is up-regulated by RA in cells that fail to differentiate. Furthermore, the decrease of HMGI(Y) expression observed in RA-induced growth arrest and differentiation is abrogated in cells that have been made insensitive to this drug by NMYC overexpression. In contrast, HMGI-C expression is down-regulated during the development of the adrenal gland, completely absent in the adult individual, and only detectable in a subset of ex vivo NB tumors and in RA-resistant NB cell lines. We provide evidence of a causal link between HMGI-C expression and resistance to the growth arrest induced by RA in NB cell lines because exogenous HMGI-C expression in HMGI-C-negative and RA-sensitive cells is sufficient to convert them into RA-resistant cells. Therefore, we suggest that HMGI-C and HMGI(Y) may participate in growth- and differentiation-related tumor progression events of neuroectodermal derivatives.

Adrenal Glands↗

Down-regulation of cyclin B1 gene transcription in terminally differentiated skeletal muscle cells is associated with loss of functional CCAAT-binding NF-Y complex.

The observation that cyclin B1 protein and mRNAs are down-regulated in terminally differentiated (TD) C2C12 cells, suggested us to investigate the transcriptional regulation of the cyclin B1 gene in these cells. Transfections of cyclin B1 promoter constructs indicate that two CCAAT boxes support cyclin B1 promoter activity in proliferating cells. EMSAs demonstrate that both CCAAT boxes are recognized by the trimeric NF-Y complex in proliferating but not in TD cells. Transfecting a dominant-negative mutant of NF-YA we provide evidence that NF-Y is required for maximal promoter activity. Addition of recombinant NF-YA to TD C2C12 nuclear extracts restores binding activity in vitro, thus indicating that the loss of NF-YA in TD cells is responsible for the lack of the NF-Y binding to the CCAAT boxes. Consistent with this, we found that the NF-YA protein is absent in TD C2C12 cells. In conclusion, our data demonstrate that NF-Y is required for cyclin B1 promoter activity. We also demonstrate that cyclin B1 expression is regulated at the transcriptional level in TD C2C12 cells and that the switch-off of cyclin B1 promoter activity in differentiated cells depends upon the loss of a functional NF-Y complex. In particular the loss of NF-YA protein is most likely responsible for its inactivation.

Animals↗

The cyclin B2 promoter depends on NF-Y, a trimer whose CCAAT-binding activity is cell-cycle regulated.

Cyclin B2 is a regulator of p34cdc2 kinase, involved in G2/M progression of the cell cycle, whose gene is strictly regulated at the transcriptional level in cycling cells. The mouse promoter was cloned and three conserved CCAAT boxes were found. In this study, we analysed the mechanisms leading to activation of the cyclin B2 CCAAT boxes: a combination of (i) genomic footprinting, (ii) transfections with single, double and triple mutants, (iii) EMSAs with nuclear extracts, antibodies and NF-Y recombinant proteins and (iv) transfections with an NF-YA dominant negative mutant established the positive role of the three CCAAT sequences and proved that NF-Y plays a crucial role in their activation. NF-Y, an ubiquitous trimer containing histone fold subunits, activates several other promoters regulated during the cell cycle. To analyse the levels of NF-Y subunits in the different phases of the cycle, we separated MEL cells by elutriation, obtaining fractions >80% pure. The mRNA and protein levels of the histone-fold containing NF-YB and NF-YC were invariant, whereas the NF-YA protein, but not its mRNA, was maximal in mid-S and decreased in G2/M. EMSA confirmed that the CCAAT-binding activity followed the amount of NF-YA, indicating that this subunit is limiting within the NF-Y complex, and suggesting that post-transcriptional mechanisms regulate NF-YA levels. Our results support a model whereby fine tuning of this activator is important for phase-specific transcription of CCAAT-containing promoters.

3T3 Cells↗

Autografting with philadelphia chromosome-negative mobilized hematopoietic progenitor cells in chronic myelogenous leukemia.

Intensive chemotherapy given in early chronic phase of chronic myelogenous leukemia (CML) has resulted in high numbers of circulating Philadelphia (Ph) chromosome-negative hematopoietic progenitor cells (HPC). We have autografted 30 consecutive patients with CML in chronic phase with HPC collected in this way to facilitate restoration of Ph-negative hematopoiesis in bone marrow after high-dose therapy. Hematopoietic recovery to greater than 0.5 x10(9)/L neutrophils and to greater than 25 x 10(9)/L platelets occurred in all patients, a median of 13 (range, 9 to 32) days and 16 (range, 6 to 106) days postautograft, respectively. Regenerating marrow cells were Ph-negative in 16 (53%) patients and greater than 66% Ph-negative in 10 (33%) patients. Twenty-eight patients are alive 6 to 76 months (median, 24 months) after autografting. Three patients have developed blast crisis from which 2 have died. Eight patients are in complete cytogenetic remission at a median of 20 (range, 6 to 44) months with a median ratio BCR-ABL/ABL of 0.002 (range, <0.001 to 0.01). Eight patients are in major cytogenetic remission at a median of 22 (range, 6 to 48) months. No patient died as a consequence of the treatment. All patients had some degree of stomatitis that was severe in 15 (50%) patients. Gastrointestinal and hepatic toxicities were observed in about one fourth of patients. Thus, autografting with Ph-negative mobilized HPC can result in prolonged restoration of Ph-negative hematopoiesis for some patients with CML; moreover, most autograft recipients report normal or near normal activity levels, suggesting that this procedure need not to be associated either with prolonged convalescence or with chronic debility.

Adult↗