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Biomedical subjects

S Giovanazzi

Publications and source records attributed to S Giovanazzi.

11 recordsLinked to original sources

Cloning and characterization of a new human Xq13 gene, encoding a putative helicase.

We describe the cloning and characterization of a new human Xq13 gene (XH2), extending over a 220 kb genomic stretch between MNK and DXS56. The gene, which undergoes X-inactivation, contains a 4 kb open reading frame and encodes a putative NTP-binding nuclear protein homologous to several members of the helicase II superfamily. The murine homologue maps to the syntenic genetic interval, between Pgk1 and Xist. In situ hybridization studies in mouse reveal precocious, widespread expression of the murine homologue of XH2 at early stages of embryogenesis, and more restricted expression during late developmental stages and at birth. XH2 is a new member of an expanding family of proven and putative helicases, sharing six conserved, collinear domains. In particular, the XH2 protein shows homology with yeast RAD54. Type II helicases have been implicated in nucleotide excision repair and the initiation of transcription. This new gene, represents a potential candidate for several genetic disorders mapped to human Xq13.

Amino Acid Sequence

Heterogeneity of binding sites for ICI 198,615 in human lung parenchyma.

We have identified and characterized two different subclasses of binding site for the novel peptido-leukotriene (LT) antagonist, [3H]ICI 198,615, in membranes from human lung parenchyma using a receptor-ligand assay. This novel compound is representative of a new class of LT receptor antagonists and it has been demonstrated to be several orders of magnitude more potent and selective than most other LT antagonists described to date. The binding of [3H]ICI 198,615 is rapid, specific and saturable. Equilibrium was reached within 5-10 min. Non linear fitting of dissociation time courses has revealed the presence of two different components (K(off)1 = 8.3 +/- 6.8 x 10(-4) sec-1 and K(off)2 = 0.79 +/- 1.66 x 10(-3) sec-1) of the kinetic curves, suggesting heterogeneity of the binding sites. Computer analysis of equilibrium binding data obtained at 25 degrees results in a model with two classes of binding sites, a high affinity-low capacity class with Kd1 = 0.024 +/- 0.014 nM and Bmax1 = 0.015 +/- 0.004 pmol/mg protein and a low affinity-high capacity class with Kd2 = 6326 +/- 3859 nM and Bmax2 = 473 +/- 383 pmol/mg protein. In competition studies, LTD4 was also found to interact with two classes of binding site (Kd1 = 0.016 +/- 0.008 nM and Kd2 = 15195 +/- 8965 nM). On the contrary, LTE4 and LTC4 were found to interact with a homogeneous class of sites only with Kd = 7466 +/- 4629 nM and Kd = 428 +/- 73 nM, respectively. Furthermore, we have evaluated the effect of a number of LT antagonists on the binding of [3H]ICI 198,615. Ro 24-5913 (Kd = 3.0 +/- 2.1 nM), FPL55712 (Kd = 4945 +/- 2868 nM), LY171883 (Kd = 19628 +/- 12365 nM), SKF 104353 (Kd = 74.2 +/- 46 nM) and its enantiomer SKF 104373 (Kd = 13627 +/- 6813 nM) were found to interact with a single class of binding sites. The present studies indicate a heterogeneity of binding sites for ICI 198,615 in membranes from human lung parenchyma and that ICI 198,615 is a very potent and selective antagonist of LTD4 receptors in this tissue.

Asthma

Decrease in rat brain calcitonin binding sites and adenylyl-cyclase activity during ageing.

In order to investigate the effects of ageing on the cerebral receptors for calcitonin (CT), we used an in vitro autoradiographic method to study the distribution of the binding sites for eel CT (eCT) in young and old rat brain. The inhibitory action of eCT on adenylyl-cyclase (AC) activity upon isolated brain cell membranes was also evaluated. The results show area-specific reduction of binding particularly in the hypothalamus and pons medulla of the old rat. The inhibitory action of eCT on AC activity was significantly reduced in the same areas, whereas in the striatum and mesencephalon no changes were observed. The parallel decrease of binding of eCT and of the inhibitory action of eCT on AC in ageing may represent a functional decline of neuronal activities during ageing.

1-Methyl-3-isobutylxanthine

Faster repair of DNA double-strand breaks in radioresistant human tumor cells.

To investigate the molecular basis of radiation resistance in human tumor cells, the induction and repair of radiation-induced DNA single- and double-strand breaks was determined by DNA elution analysis in two normal human cell lines and 12 early-passage human tumor cell lines of varying radiosensitivities. The radiosensitivities (D0) of the cell lines ranged from 1 to 2.9 Gy. Inherent cellular radiosensitivity was found to directly correlate with the rate at which the DNA double-strand breaks were repaired. Radioresistant cell lines repaired approximately 90% of their radiation-induced DNA double-strand breaks within 1 hr of irradiation while more radiosensitive cell lines required 2-4 hr to repair the same fraction of damage. Radioresistant cell lines also had lower initial DNA double-strand break frequencies. DNA single-strand break induction and repair was not found to be an important factor in the radiation response of human tumor and normal cell lines. Therefore, the rate at which DNA double strand breaks are repaired is a critical factor underlying radioresistance in human tumor cell lines.

Cell Line

(5Z)-carbacyclin displays agonist-antagonist properties on prostacyclin-receptors in platelets and vascular myocytes.

(5E)- and (5Z)-carbacyclin are chemically stable analogues of prostacyclin (PGI2), which mimic PGI2 actions. In particular, they inhibit platelet aggregation and relax vascular smooth muscle, through the activation of adenylate cyclase (AC) being, however, less potent than PGI2. The characteristics of AC activity modulation by the two isomeric carbacyclins in membranes of human platelets and of myocytes cultured from rabbit mesenteric artery have been investigated. In human platelet membranes, both carbacyclins stimulated AC activity with the same efficacy as PGE1 and PGI2; in addition, these two prostaglandins inhibited the aggregation of human and rabbit platelets to the same extent as PGE1. On the contrary, in myocytes (5Z)-carbacyclin fails to produce the same degree of stimulation of AC elicited by PGI2, (5E)-carbacyclin and PGE1, nor does it induce the maximal relaxation of rabbit mesenteric artery attained with the other prostaglandins. (5Z)-carbacyclin is also able to antagonize the activation of AC by PGE1, PGI2 or (5E)-carbacyclin, acting therefore as a partial agonist. In conclusion, (5Z)-carbacyclin is a full agonist at the platelet level both in human and rabbit, thus excluding possible interspecies differences, but it is a partial agonist on myocytes. Therefore, (5Z)-carbacyclin appears to discriminate between PGI2 -receptors in the two target cells.

Adenylyl Cyclases

Recovery from sublethal and potentially lethal damage in an X-ray-sensitive CHO cell.

It has been suggested that DNA strand breaks are the molecular lesions responsible for radiation-induced lethality and that their repair is the basis for the recovery of irradiated cells from sublethal and potentially lethal damage. EM9 is a Chinese hamster ovary cell line that is hypersensitive to killing by X rays and has been reported to have a defect in the rate of rejoining of DNA single-strand breaks. To establish the importance of DNA strand-break repair in cellular recovery from sublethal and potentially lethal X-ray damage, those two parameters, recovery from sublethal and potentially lethal damage, were studied in EM9 cells as well as in EM9's parental repair-proficient strain, AA8. As previously reported, EM9 is the more radiosensitive cell line, having a D0 of 0.98 Gy compared to a D0 of 1.56 Gy for AA8 cells. DNA alkaline elution studies suggest that EM9 cells repair DNA single-strand breaks at a slower rate than AA8 cells. Neutral elution analysis suggests that EM9 cells also repair DNA double-strand breaks more slowly than AA8 cells. All of these data are consistent with the hypothesis that DNA strand-break ligation is defective in EM9 cells and that this defect accounts for increased radiosensitivity. The kinetics and magnitude of recovery from sublethal and potentially lethal damage, however, were similar for both EM9 and AA8 cells. Six-hour recovery ratios for sublethal damage repair were found to be 2.47 for AA8 cells and 1.31 for EM9 cells. Twenty-four-hour recovery ratios for potentially lethal damage repair were 3.2 for AA8 and 3.3 for EM9 cells. Both measurements were made at approximately equitoxic doses. Thus, the defect in EM9 cells that confers radiosensitivity and affects DNA strand-break rejoining does not affect sublethal damage repair or potentially lethal damage repair.

Animals

Effects of prostaglandins and PAF on the contractility of the bovine ciliary muscle.

The present study has investigated the effect of prostaglandins and PAF on the contractility of the bovine ciliary muscle, a tissue involved in the control of aqueous outflow. The results show that the prostaglandins tested (PGI2, its stable analogue Iloprost, PGE2, PGE1, and PGF2 alpha) as well as PAF, were able to contract the ciliary muscle, although with different potencies and efficacies. PGI2 and Iloprost displayed parallel dose-effect curves with upper plateaus that did not differ significantly; however, PGI2 was slightly more potent than Iloprost. This is at variance with what is observed at the level of the platelet prostacyclin receptor. PGF2 alpha was equipotent with the PGEs tested, with a maximal effect not different from either PGI2 or PGEs. PAF was the most efficacious of the compounds tested.

Animals