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L Guerrini

Publications and source records attributed to L Guerrini.

31 records · Page 2Linked to original sources

Synaptic activation of NF-kappa B by glutamate in cerebellar granule neurons in vitro.

Neuronal proliferation, migration, and differentiation are regulated by the sequential expression of particular genes at specific stages of development. Such processes rely on differential gene expression modulated through second-messenger systems. Early postnatal mouse cerebellar granule cells migrate into the internal granular layer and acquire differentiated properties. The neurotransmitter glutamate has been shown to play an important role in this developmental process. We show here by immunohistochemistry that the RelA subunit of the transcription factor NF-kappa B is present in several areas of the mouse brain. Moreover, immunofluorescence microscopy and electrophoretic mobility-shift assay demonstrate that in cerebellar granule cell cultures derived from 3- to 7-day-old mice, glutamate specifically activates the transcription factor NF-kappa B, as shown by binding of nuclear extract proteins to a synthetic oligonucleotide reproducing the kappa B site of human immunodeficiency virus. The use of different antagonists of the glutamate recpetors indicates that the effect of glutamate occurs mainly via N-methyl-D-aspartate (NMDA)-receptor activation, possibly as a result of an increase in intracellular Ca2+. The synaptic specificity of the effect is strongly suggested by the observation that glutamate failed to activate NF-kappa B in astrocytes, while cytokines, such as interleukin 1 alpha and tumor necrosis factor alpha, did so. The effect of glutamate appears to be developmentally regulated. Indeed, NF-kappa B is found in an inducible form in the cytoplasm of neurons of 3- to 7-day-old mice but is constitutively activated in the nuclei of neurons derived from older pups (8-10 days postnatal). Overall, these observations suggest the existence of a new pathway of trans-synaptic regulation of gene expression.

Aging↗

Structural and functional characterization of the promoter regions of the NFKB2 gene.

In order to clarify the transcriptional regulation of the NFKB2 gene (lyt-10, NF-kappa Bp100), we have characterized the structure and function of its promoter regions. Based on the nucleotide sequence of cDNA clones and the 5' flanking genomic region of the NFKB2 gene, RT-PCR analysis in a number of human cell lines demonstrated the presence of two alternative noncoding first exons (1a and 1b). Two distinct promoter regions, P1 and P2, were identified upstream of each exon, containing multiple sites of transcription initiation, as shown by RNase protection analysis. Sequence analysis of these regions showed a CAAT box upstream of exon 1a and high G-C content regions within both P1 and P2. Consensus binding sites for transcription factors, including SP1, AP1 and putative NF-kappa B (kappa B sites), were found upstream of each exon. In particular, six kappa B sites were identified, all but one of them capable of binding NF-kappa B complexes in vitro. Transfection in HeLa cells of plasmids containing P1 and P2 sequences linked to a chloramphenicol acetyltransferase reporter gene indicated that both P1 and P2 can act independently as promoters. Co-transfection of NF-kappa B effector plasmids (NF-kappa Bp52 and RelA) with a reporter gene linked to P1 and P2 showed that the NFKB2 promoter regions are regulated by NF-kappa B factors. RelA transactivates the NFKB2 promoter in a dose-dependent manner, whereas NF-kappa Bp52 acts as a repressor, indicating that the NFKB2 gene may be under the control of a negative feedback regulatory circuit.

Base Sequence↗

Differential DNA sequence specificity and regulation of HIV-1 enhancer activity by cRel-RelA transcription factor.

The cRel-RelA and NF-kappa B (p50-RelA) transcription factors bind to a kappa B-like sequence termed Rel-related proteins binding element localized in the regulatory region of the human urokinase plasminogen activator (uPA) gene. This sequence is highly conserved in murine and porcine uPA genes where it retained the ability to associate with cRel-RelA. On the other hand, NF-kappa B binding was obtained with the human and porcine elements only. Methylation interference analysis showed that NF-kappa B and cRel-RelA had identical interference patterns. Mutational analysis showed that DNA binding was highly sensitive to mutations within the decameric Rel-related proteins binding element core site. However, alterations of nucleotides flanking the decameric IgK-kappa B motif, which preferentially associated with NF-kappa B, resulted in high affinity cRel-RelA binding both in vitro and in vivo. These data demonstrate that NF-kappa B and cRel-RelA have overlapping but distinct DNA sequence specificities. Bandshift analysis with HeLa and Jurkat cell extracts or with in vitro translated proteins revealed that the SV40-, HIV-1-, and interleukin-2 receptor alpha subunit kappa B elements efficiently associated with cRel-RelA, suggesting that this heterodimer may be involved in the regulation of several genes. Cotransfection studies of HIV-1 long terminal repeat-chloramphenicol acetyltransferase reporter DNA with RelA, cRel, and p50 expression vectors were performed in COS7 and U293 cells to analyze the ability of cRel-RelA to regulate HIV-1 enhancer activity. In vivo formation of the cRel-RelA complex resulted in specific stimulation of the viral enhancer at a level comparable with that obtained with NF-kappa B. These data suggest that activation of cellular cRel-RelA may play a critical role in the regulation of HIV-1 enhancer activity.

Animals↗

Cis- and trans-acting elements involved in amino acid regulation of asparagine synthetase gene expression.

We have previously shown that asparagine synthetase (AS) mRNA expression can be dramatically up-regulated by asparagine deprivation in ts11 cells, mutants of BHK hamster cells which encode a temperature-sensitive AS. The expression of AS mRNA was also induced upon starvation for one of several essential amino acids in HeLa cells. We also showed that regulation of AS mRNA expression by amino acid concentration has both transcriptional and posttranscriptional components. Here we report the analysis of the elements in the human AS promoter region important for its basal activity and activation by amino acid starvation. Our results indicate that a DNA fragment spanning from nucleotides -164 to +44 of the AS promoter is sufficient for uninduced and induced gene expression. Mutations in a region located 15 to 30 bp downstream from the major transcription start site that shows good homology to a sequence in the first exon of c-fos implicated as a negative regulatory element resulted in a significant increase in basal gene expression but did not affect regulation. Interestingly, this region binds single-stranded-DNA-binding proteins that are specific for the AS coding strand. Mutations in either one of two putative binding sites for transcription factor Sp1, in a region of approximately 60 bp where many minor RNA start sites are located, or at the major transcription start site decreased promoter activity, but significant induction by amino acid starvation was still observed. Strikingly, mutations centered around nucleotide -68 not only decreased the basal promoter activity but also abolished amino acid regulation. This DNA region contains the sequence 5'-CATGATG-3', which we call the amino acid response element (AARE), that can bind a factor(s) present in HeLa cells nuclear extracts that is not capable of binding to an AS promoter with mutations or deletions of the AARE. This finding is in line with the hypothesis that transcriptional activation of AS gene expression is mediated through the binding of a positive regulatory element. We did not detect changes in the level of binding of this factor to the AARE by using nuclear extracts from HeLa cells grown under starved conditions, suggesting that activation of this factor(s) results from posttranslational modification or complexing with other proteins that do not affect its DNA-binding properties.

Amino Acids↗

Regulation of asparagine synthetase gene expression by amino acid starvation.

We have studied the regulation of expression of the asparagine synthetase (AS) gene in ts11 cells, a mutant of BHK hamster cells which encodes a temperature-sensitive AS and therefore does not produce endogenous asparagine at 39.5 degrees C. Incubation of ts11 cells at the nonpermissive temperature drastically increases the level of AS mRNA, and the stimulation of AS mRNA expression is effectively suppressed by the addition of asparagine to the medium. We show here that regulation of AS gene expression involves cis-acting elements which are contained in the mRNA as well as in the 5' genomic region. When a plasmid containing the human AS cDNA under the control of the human AS promoter region was stably transfected into ts11 cells, the expression of human AS RNAs was regulated as that of the endogenous hamster transcripts, indicating that this construct contained all cis elements necessary for regulation. Expression of the AS cDNA in ts11 cells under the control of a constitutive foreign promoter was also regulated by the concentration of asparagine, and this regulation required translation. When we introduced by mutagenesis a number of stop codons in the AS cDNA, the mutant mRNAs with short open reading frames were expressed at low levels that were not increased by asparagine deprivation. Inhibition of protein and RNA synthesis also prevented down-regulation of AS mRNA levels by high concentrations of asparagine. In a parallel series of experiments, we showed that an AS DNA fragment including the promoter and first exon can also regulate RNA expression in response to asparagine concentration. Furthermore, similar increases in the levels of AS RNAs are produced not only by asparagine deprivation in ts11 cells but also by deprivation of human and wild-type BHK cells of leucine, isoleucine, or glutamine. Thus, regulation of AS gene expression is a response to amino acid starvation through mechanisms which appear to involve both changes in RNA stability and change in the rates of transcription initiation or elongation.

Amino Acids↗

Do calcium channel blockers have any influence on the immunological status of renal graft recipients on ciclosporin therapy?

We have assessed the peripheral distribution of T cells, using the monoclonal antibodies OKT3, OKT4, OKT8 and LEU7 and the proliferative response to phytohaemagglutinin (PHA), in 10 renal transplant recipients. In each patient, the immunological pattern was evaluated twice, both before and after 1 month of calcium antagonist (calcium channel blockers, CaA) treatment. During treatment with CaA, we have observed both a significant decrease in the mitogenic response to PHA and a significant increase in OKT8 cells. Our data support the hypothesis that CaAs per se may have an immunomodulatory effect on T cell distribution independently of changes in ciclosporin (CS) blood levels. These results could also provide a cellular basis for synergism between CS and CaA.

Adjuvants, Immunologic↗

The evaluation of effect of radiotherapy on T and B lymphocytes with standard methods and monoclonal antibodies: results at 30 months.

We examined and evaluated the immunologic status of 15 patients suffering from neoplastic, not ematologic, diseases, who underwent external beam radiation therapy. We determined the total lymphocyte count, the percentage of E and EAC rosettes, surface membrane immunoglobulins, the lymphocyte reactivity to PWM and PHA, and T-lymphocyte subpopulations by means of monoclonal antibodies (OKT3-OKT4-OKT8). Besides we evaluated the percentage of LEU7 and OKM1 cells and lymphocytes response to MLR. Blastogenesis tests (PHA and MLR), after 18 months, were performed with and without monocytes. We found out that the amount of T and B lymphocyte subpopulations, which was extremely variable during and after radiotherapy, gradually returned to initial value. After 30 months, the functional impairment seems to be almost completely recovered. At 18 months from the beginning of radiation treatment, the mixed lymphocyte reaction was normal. The presence of monocytes doesn't change either MLR or PHA responses. LEU7+ cells are normal, while OKM1+ cells increased.

B-Lymphocytes↗

The mid-term effects of radiotherapy on T and B lymphocytes: an evaluation of cellular immunity with standard methods and monoclonal antibodies.

The mid-term effects of radiotherapy on T and B peripheral lymphocytes of 15 patients treated for various malignancies were evaluated. All patients had a significant impairment of lymphocyte functions, as measured by blastogenesis after stimulation with phytohemagglutinin and pokeweed mitogen. Such impairment lasted for 1 year after the completion of radiotherapy, when numerical variability of T and B subpopulations, observed during and after radiation treatment, was restored to initial values.

B-Lymphocytes↗

Impaired distribution of T-lymphocyte subsets in patients with haemophilia.

The distribution of T-lymphocyte subsets was assessed using monoclonal antibodies in 20 symptom-free patients with haemophilia. In 15 patients, the T-cell subsets appear substantially balanced with only a moderate reduction in the proportion and absolute number of OKT4 positive cells. In the remaining 5, all with a reversed OKT4/OKT8 ratio, the proportion and absolute number of OKT4 positive cells was significantly reduced (p less than 0.0002) while the absolute number of OKT8 positive cells was normal or reduced although the proportion of these cells appeared increased. Functional studies, testing the proliferative response to PHA and PWM, were normal in all cases including those with immunological abnormalities. These results suggest that a proportion of patients with classic haemophilia show some immunological abnormalities similar to those observed in patients with acquired immunodeficiency syndrome and that regular evaluation of several immunological parameters is warranted in these patients.

Adolescent↗

Testicular peritubular myoid cells are a target for adrenomedullin.

Adrenomedullin (AM) is a recently cloned vasorelaxing peptide that belongs to the calcitonin gene-related peptide family. AM inhibits the contraction of several types of smooth muscle cells and is present in the testis as well as in many other organs. The authors investigated whether testicular peritubular myoid cells (PMC) possess specific receptors for AM. Binding of AM to PMC was saturable in a time-dependent manner and 125I-AM binding was effectively displaced by cold AM. The study documents that testicular peritubular myoid cells are a target for adrenomedullin and suggests a role for this peptide in the paracrine regulation of the testis.

Adrenomedullin↗

Is it possible to define a better ASCUS class in cervicovaginal screening? A review of 187 cases.

OBJECTIVE: To try to better define the cytologic diagnosis of atypical squamous cells of undetermined significance (ASCUS) in a cervical screening protocol. STUDY DESIGN: Smears from 187 patients with cytologic diagnoses of ASCUS and histologic or two years' cytologic/colposcopic follow-up were reviewed. When an ASCUS diagnosis was confirmed, it was done strictly on the basis of the morphologic criteria recommended by the Regione Emilia Romagna Screening Protocol in 1997, trying also to subclassify ASCUS into favor reactive or favor neoplasia. RESULTS: Seventy ASCUS cases were negative (37.4%). Three cases (1.6%) were low grade squamous intraepithelial lesion, and seven (3.8%) were high grade squamous intraepithelial lesion. One hundred seven ASCUS cases (57.2%) were confirmed. Among the 70 negative cases, 36 (51.4%) had reactive changes on biopsy, 30 (42.9%) koilocytosis, 3 cervical intraepithelial neoplasia (CIN 1) and one CIN not otherwise specified (5.7% total). CONCLUSION: Reclassification of ASCUS cases using tighter criteria reduced them to a rate of 57.2% but missed 30 patients with histologic diagnoses of koilocytosis and 4 with histologic diagnoses of CIN.

Biopsy↗