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Biomedical subjects

A Spina

Publications and source records attributed to A Spina.

At least 19 recordsLinked to original sources

Differentiation of H9c2 cardiomyoblasts: The role of adenylate cyclase system.

The adenylate cyclase (AC)/cAMP/cAMP-dependent protein kinase pathway controls many biological phenomena. The molecular mechanisms by which cAMP induces alternative commitment towards differentiation or proliferation are not still completely known. The differentiation of myoblast cell lines into myocytes/myotubes represents a well-established model of skeletal muscle differentiation. We analyzed the AC/cAMP pathway during terminal differentiation of H9c2 myoblasts. When cultured in low-serum containing medium, H9c2 myoblasts exit the cell cycle and differentiate into myocytes/myotubes. A key step of this process is the expression of myogenin, an essential transcription factor for the terminal differentiation into myocytes. During this phenomenon we observed a decrease in both cAMP levels and AC activity, which suggests a functional negative role of cAMP on the differentiation process of H9c2 cells. 8-Br-cAMP and other cAMP-elevating agents, such as forskolin, IBMX, and isoproterenol, negatively affected skeletal muscle differentiation of H9c2 myoblasts. Both AC activity down-regulation and intracellular cAMP reduction were accompanied by significant variations in the levels of membrane proteins belonging to the AC system (AC catalytic subunit, G(alphai-1), G(alphas)). The functional relationship between intracellular cAMP content and protein levels of AC system is discussed.

Adenylyl Cyclases↗

Treatment of v-Ki-ras-transformed SVC1 cells with low retinoic acid induces malignancy reversion associated with ras p21 down-regulation.

The effect of nontoxic, low concentrations (10(-8) M) of retinoic acid (RA) for a relatively long time (28 days) on a Kirsten ras-virus transformed cell line (Ki-SVC1), derived from the rat seminal vesicle epithelium, was investigated. In these experimental conditions, the cell treatment with RA induced a decrease of the proliferation rate, apoptosis and a marked reduction of both anchorage-independent growth and tumorigenicity. These biological responses were either preceded or associated with important changes in adenylate cyclase/protein kinase C signaling pathways, the activation of important apoptosis-linked genes and a marked decrease of the v-Ki-ras p21 protein. The significance of these findings is discussed.

Adenylyl Cyclases↗

tTGase/G alpha h protein expression inhibits adenylate cyclase activity in Balb-C 3T3 fibroblasts membranes.

Stably transfected Balb-C 3T3 fibroblasts (clone 5), overexpressing a catalytically active tissue transglutaminase, showed a basal adenylate cyclase activity lower than control cells (clone 1). Several modulators of the adenylate cyclase activity (forskolin, Mn2+ and pertussis toxin) showed the existence of a marked negative control on the adenylate cyclase activity present in clone 5 cells. Very interestingly, this same marked negative control was also found in a Balb-C 3T3 fibroblast clone stably transfected with a mutagenized human tissue transglutaminase (mut277 cys > ser) virtually devoid of transglutaminase catalytic activity (clone Ser). Conversely, a significant increase of the adenylate cyclase activity was observed in bovine aortic endothelial cells after the lowering of tissue transglutaminase expression levels by the transfection of an eukaryotic expression vector containing the gene for tissue transglutaminase in antisense orientation. All these findings suggest a possible role for type II tissue transglutaminase as a negative modulator of the adenylate cyclase activity in different cell types, beside its transglutaminase enzyme activity.

3T3 Cells↗

Aryl sulfotransferase-IV-catalyzed sulfation of aryl oximes: steric and substituent effects.

The aryl sulfotransferases (EC 2.8.2.1) catalyze the sulfation of a wide variety of hydroxyl-containing molecules. The enzyme reaction requires 3'-phosphoadenosine-5'-phosphosulfate as the sulfate donor and several isozymes with broad, overlapping substrate specificities have been identified. One of the isozymes in rat hepatic cytosol, isozyme IV, is a major contributor to enzymatic sulfation. It exhibits the broadest substrate specificity of the three isozymes which have been characterized to date. Its substrates include a wide variety of phenols, certain aromatic hydroxylamines and benzylic alcohols. The latter two substrate types have implicated this isozyme in the bioactivation of several toxic compounds. Relatively little information is available, however, on substrate molecular features which account for the ability of isozyme IV to sulfate compounds not utilized by isozymes I and II. A recent investigation of isozymes I and II with a series of model aryl-oxime substrates suggested that catalysis is influenced primarily by steric factors and in particular substrate planarity and hydroxyl group orientation (Mangold et al. (1989) Biochim. Biophys. Acta 991, 453-458). In the present study, isozyme IV was investigated to characterize its substrate requirements with a more extensive series of aryl oxime substrates. The results indicated that isozyme IV has a much less stringent requirement for planarity and hydroxyl-group orientation than isozymes I or II. Isozyme IV accepted a greater variety of aryl-oxime substrates, including several classes which were not substrates for isozymes I and II. A comparison of kinetic constants and catalytic efficiencies suggested that substituent effects play a role in the sulfation of aryl oximes by isozyme IV.

Animals↗

Correlations between abnormalities on brain SPECT scan and interictal EEG-foci in children with 'intractable' partial epilepsy.

SPECT scanning with Tc99mHM-PAO was performed on 40 children with 'intractable' partial epilepsy; 27 patients had abnormalities on SPECT images consisting of areas of decreased cerebral blood flow. In 18 of these 27 subjects there was a good correlation between site of the abnormalities on SPECT scan and interictal EEG foci. 12 patients with regionally decreased CBF had also neuroimaging (C.T. and/or R.M.I.) abnormalities. The brain SPECT provides more precise detection of epileptogenic foci, when used to complement EEG, also in childhood-onset epilepsy.

Adolescent↗

Brain SPECT and migraine in childhood.

The recent development of SPECT has introduced a new procedure to evaluate neurological diseases. By mean of Tc99mHM-PAO we studied a group of 19 pediatric subjects (7 males and 12 females) with different form of migraine, within five days after the last headache attack. Postictally SPECT shows regionally decreased CBF in 3/4 of HM, in 5/6 of BAM, in 5/5 of CM and in 2/4 of M.

Adolescent↗

Sulfation of mono- and diaryl oximes by aryl sulfotransferase isozymes.

Aryl sulfotransferases (3'-phosphoadenylsulfate:phenol sulfotransferase, EC 2.8.2.1) catalyze the sulfonation of a wide variety of hydroxyl-containing substrates, including numerous xenobiotics. The chemical diversity of aryl sulfotransferase substrates is in part attributable to the presence of multiple isozymes, each of which has broad substrate specificity. Of the aryl sulfotransferase isozymes in rat liver cytosol, two (designated isozymes I and II) have previously been shown to sulfonate phenolic compounds exclusively and, moreover, have very similar substrate specificity patterns. The recently reported unusually efficient, rapid isozyme I-catalyzed sulfonation of 9-fluorenone oxime (Mangold, J.B., Mangold, B.L.K. and Spina, A. (1986) Biochim. Biophys. Acta 874, 37-43) was therefore unexpected and suggested that aryl oximes may represent a useful class of model compounds to probe isozymic differences in substrate steric and electronic requirements. In the present study, several mono- and diaryl oximes have been prepared and tested as potential substrates for partially purified aryl sulfotransferases I and II from rat liver cytosol. The results indicate that steric factors, specifically planarity and hydroxyl group position, appear to be important requirements for enzyme-catalyzed sulfonation. In addition, although isozymes I and II had comparable activity with diaryl oximes, some striking differences in the ability of these two isozymes to sulfonate both substituted and unsubstituted monoaryl oximes were observed. This dissimilarity is consistent with distinct differences in the active sites of these isozymes.

Arylsulfotransferase↗

Treatment of "intractable childhood epilepsy" with high doses of intravenous gamma-globulins.

The authors refer their experience in the treatment of intractable childhood epilepsies (18 cases) with intravenous gamma globulin. Seven patients showed great reduction or indeed disappearance of the seizures whereas modest improvement was observed in other 4 cases. A better organization of the EEG corresponded to this clinical improvement with a reduction or disappearance of paroxysmal anomalies, and also a better result in motor and cognitive capacities.

Anticonvulsants↗

Fisher syndrome. An infantile case.

A case of acute onset of partial ophthalmoplegia, ataxia and areflexia in a child is described. This case closely resembles those described by Fisher (Fisher syndrome). Clinical data, also in relation to the few cases previously reported, are discussed.

Ataxia↗

Protein kinase C activities are increased in rat thyroid epithelial cells expressing v-ras genes.

Both cytoplasmic and membrane-bound protein kinase C activities are increased in: Harvey-Sarcoma Virus, infected thyroid epithelial cells. The cytoplasmic kinase C increase is found in the chromatographic fraction eluted at lower salt concentration (100 mM NaCl-S100), while the more acidic protein fraction eluted at higher salt concentration (35 mM NaCl-S350) is virtually absent. Although the cytoplasmic S100 fraction from the control and ras-virus infected cells display a comparable PBt2 binding activity, they are different in the Ca+2-dependence and the TPA down regulation. In addition, the membranes from the control and ras-virus infected cells are different phosphate acceptors in place of the H1 histones.

Animals↗

Increased adenylate cyclase activity in rat thyroid epithelial cells expressing viral ras genes.

The activity of the adenylate cyclase catalytic subunit is higher in Harvey and Kirsten Murine Sarcoma Viruses-infected thyroid epithelial cells than in uninfected control cells either in the presence of Mg2+ alone or following stimulation by Mn2+ or forskolin. The higher activity is associated with an increased cAMP cellular content. The Gpp(NH)p and F- anion are more effective positive modulators in the control than in the virus infected cells: these results exclude therefore that the ras p21 proteins can act as the G-protein alpha-subunit and suggest that they negatively interfere with the G-protein modulation of the adenylate cyclase system.

Adenylyl Cyclases↗

Rat liver aryl sulfotransferase-catalyzed sulfation and rearrangement of 9-fluorenone oxime.

The role of hepatic cytosolic aryl sulfotransferase (3'-phosphoadenylylsulfate:phenol sulfotransferase, EC 2.8.2.1) in the enzymic rearrangement of 9-fluorenone oxime to phenanthridone was investigated. 9-Fluorenone oxime was found to be an excellent substrate for a partially purified rat liver aryl sulfotransferase preparation. This compound was in fact superior to 2-naphthol, the standard assay substrate. This is the first reported observation of aryl oxime sulfation by the aryl sulfotransferases. 9-Fluorenone oxime sulfation exhibited pronounced substrate inhibition at high substrate concentrations. However, despite virtually complete conversion of 9-fluorenone oxime to the corresponding N-O-sulfate conjugate in enzyme incubation mixtures, only small amounts of rearrangement product were detected after long-term incubations. In addition, 9-fluorenone oxime-O-sulfonic acid was chemically synthesized and tested for stability. The results showed that rearrangement was pH-dependent and occurred slowly over several hours. It is therefore concluded that aryl sulfotransferase-catalyzed sulfation likely plays an important role in the in vitro and in vivo disposition of 9-fluorenone oxime. Moreover, sulfation facilitates the Beckmann-like conversion of 9-fluorenone oxime to phenanthridone. Sulfation alone, however, appears insufficient to account for all of the previously reported in vitro and in vivo rearrangement.

Animals↗