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R Bassi

Publications and source records attributed to R Bassi.

At least 73 records · Page 4Linked to original sources

Salvage of catabolic products in ganglioside metabolism: a study on rat cerebellar granule cells in culture.

Cerebellar granule cells in culture were subjected to a pulse (0.5-4 h)-chase (0-4 h) of 10(-6) M [3H]ganglioside GM1 carrying the radioactive label at the level of NeuAc ([3H-NeuAc]GM1), Sph ([3H-Sph]GM1) or Gal ([3H-Gal]GM1) and the formed [3H]metabolites were determined. With all forms of [3H]GM1, there was formation of [3H]catabolites, including [3H]H2O and [3H]biosynthetic products obtained by recycling of [3H]NeuAc, [3H]Sph and [3H]Gal released during intralysosomal ganglioside degradation (salvage processes). Much higher amounts of [3H]H2O were produced from [3H-Gal]GM1 than [3H-Sph]GM1 and [3H-NeuAc]GM1; conversely, more products from salvage processes (polysialogangliosides GD1a, GD1b, GT1b, O-acetylated GT1b, protein-bound radioactivity) were obtained with [3H-NeuAc]GM1 than the two other forms of [3H]GM1. Liberated [3H]NeuAc produced 10-fold less tritiated water and 10-fold higher salvage products than [3H]Gal. Using [3H-NeuAc]GM1, granule cells appeared to metabolize 7.7% of membrane-incorporated exogenous GM1 per hour with a high degree of NeuAc recycling and the calculated metabolic half-life was 6.5 h.

Animals↗

Excited state equilibration in the photosystem I-light-harvesting I complex: P700 is almost isoenergetic with its antenna.

Photosystem I with its full antenna complement (PSI-LHCI) has been prepared by mild detergent solubilization with octyl beta-D-glucopyranoside from maize thylakoids. A preliminary polypeptide analysis is presented. At room temperature, the steady-state fluorescence derives from an almost perfectly thermalized state, as demonstrated by a Stepanov analysis, in which about 90% of the excited states are associated with the red chlorophyll spectral forms absorbing above 700 nm. Equilibration is temperature-sensitive and is lost at T < 200 K. A careful analysis of fluorescence between 75 and 280 K clearly demonstrates the presence of at least three red chlorophyll spectral forms with emission maxima at 720, 730, and 742 nm, the absorption origin bands of which have been calculated at 714, 725, and 738 nm. On the basis of a minor deviation from thermal equilibration around 695 nm, it is suggested that at least 3-4 antenna chlorophylls, with an average absorption near 695 nm, are strongly coupled to P700. Thermodynamic analysis of absorption and fluorescence spectra indicates that the equilibrium, absorption-weighted excited state population of the P700 dimer is around 0.013 assuming that the low-energy exciton state possesses all the oscillator strength. The average free energy for excitation transfer from antenna to P700 is thus calculated to be -0.26 kT at room temperature. This indicates that P700 is almost isoenergetic with its antenna at room temperature when the red forms are taken fully into account. From the calculated excited state population of P700, we estimate that the primary charge separation rate in PSI is 1-2 ps-1.

Light-Harvesting Protein Complexes↗

Reconstitution and pigment-binding properties of recombinant CP29.

The minor light-harvesting chlorophyll-a/b-binding protein CP29 (Lhcb4), overexpressed in Escherichia coli, has been reconstituted in vitro with pigments. The recombinant pigment-protein complexes show biochemical and spectral properties identical to the native CP29 purified from maize thylakoids. The xanthophyll lutein is the only carotenoid necessary for reconstitution, a finding consistent with the structural role of two lutein molecules/polypeptide suggested by the crystallographic data for the homologous protein light-harvesting chlorophyll-a/b-binding protein of photosystem II (LHCII). The CP29 protein scaffold can accommodate different chromophores. This conclusion was deduced by the observation that the pigment composition of the reconstituted protein depends on the pigments present in the reconstitution mixture. Thus, in addition to a recombinant CP29 identical to the native one, two additional forms of the complex could be obtained by increasing chlorophyll b content. This finding is typical of CP29 because the major LHCII complex shows an absolute selectivity for chromophore binding [Plumley, F. G. & Schmidt, G. W. (1987) Proc. Natl Acad. Sci. USA 84, 146-150; Paulsen, H., Rümler, U. & Rüdiger, W. (1990) Planta (Heidelb.) 181, 204-211], and it is consistent with the higher stability of CP29 during greening and in chlorophyll b mutants compared with LHCII.

Apoproteins↗

Sphingoid bioregulators in the differentiation of cells of neural origin.

The involvement of ceramide in the differentiation of two neuroblastoma cell lines, Neuro2a and SH-SY5Y, and cerebellar granule cells in primary culture was investigated. The following results were obtained: (a) the cellular content of ceramide markedly increased with induced differentiation of Neuro2a cells (inducers: RA, FCS deprivation), SH-SY5Y cells (inducers: RA, PMA), and spontaneous differentiation of cerebellar granule cells; (b) all the investigated cells in the differentiated form displayed a higher ability to produce ceramide from exogenously administered [3H]Sph-SM and expressed a higher content of neutral sphingomyelinase and, in the case of cerebellar granule cells, also of acidic sphingomyelinase; (c) inhibition of ceramide biosynthesis by Fumonisin B1 blocked the process of differentiation in Neuro2a and cerebellar granule cells; and (d) treatments capable of enhancing ceramide level (administration of sphingosine or C2-Ceramide) induced differentiation in both Neuro2a and SH-SY5Y cells. The data obtained support the notion that ceramide plays a general biomodulatory role in neural cell differentiation.

Animals↗

Cryoglobulinemic neuropathy related to hepatitis C virus infection. Clinical, laboratory and neurophysiological study.

Peripheral neuropathy is frequently reported in mixed cryoglobulinemia. As a close relationship has been established between mixed cryoglobulinemia and hepatitis C virus (HCV), the clinical, neurophysiological, and serologic findings of five patients affected by neuropathy, cryoglobulinemia and HCV infection were investigated. HCV infection was ascertained by the presence in the serum of anti-HCV antibodies detected by enzyme-linked immunosorbent assay(ELISA), and of HCV RNA assessed by polymerase chain reaction (PCR). Initial symptoms included paresthesias and painful dysesthesias in the legs. Later on, the patients developed a mainly asymmetric axonal polyneuropathy or a multifocal neuropathy associated with signs of systemic vasculitis. In this case series we report the short-term prognosis, as well as the response to interferon (IFN) alpha and conventional treatment. The presence of HCV RNA supports the hypothesis that a persistent HCV infection might be involved in the pathogenesis of mixed cryoglobulinemia and cryoglobulinemia-associated disorders.

Adult↗

A mediator role of ceramide in the regulation of neuroblastoma Neuro2a cell differentiation.

Current studies indicate that ceramide is involved in the regulation of important cell functions, namely cell growth, differentiation, and apoptosis. In the present study, the possible role of ceramide in the differentiation of neuroblastoma Neuro2a cells was investigated. The following results were obtained. (a) Ceramide content of Neuro2a cells, induced to differentiate by retinoic acid (RA) treatment rapidly increased after addition of RA, was maintained at high levels in RA-differentiated cells and returned to the starting levels with removal of RA and reversal of differentiation; under the same conditions, the sphingosine content remained unchanged. (b) After a short pulse with [3H]sphingomyelin or [3H]sphingosine or L-[3H]serine, the metabolic formation of ceramide was markedly higher and more rapid in RA-differentiated than undifferentiated cells. (c) Inhibitors of ceramide biosynthesis (Fumonisin B1, beta-chloroalanine and L-cycloserine) diminished the extent of the differentiating effect of RA and concomitantly Cer content decreased. (d) The activity of neutral sphingomyelinase increased after addition of RA, maintained high levels in RA-differentiated cells, and returned to the initial levels with removal of RA. (e) Experimental conditions that cause an elevation of ceramide content (treatment with sphingosine or ceramide or C2-ceramide or bacterial sphingomyelinase) inhibited cell proliferation and stimulated neurite outgrowth; dihydro-analogues of sphingosine, ceramide, and C2-ceramide had no effect on differentiation. (f) treatment with Fumonisin B1 completely inhibited sphingosine-induced differentiation. These data suggest a specific bioregulatory function of ceramide in the control of Neuro2a cell growth and differentiation and pose the general hypothesis of a mediator role of ceramide in the differentiation of cells of neural origin.

Animals↗

Biochemical and functional properties of photosystem II in agranal membranes from maize mesophyll and bundle sheath chloroplasts.

We have studied the occurrence and organization of photosystem II (PSII) in bundle sheath thylakoids and stroma lamellae from maize. As shown by non-denaturing lauryl beta-D- iminopropionidate (Deriphat)/PAGE, PSII exists in a dimeric form in grana membranes. In bundle sheath and stroma lamellae, however, only a monomeric form was found. Based on immunotitration data, we estimated the stoichiometry of the individual components of the PSII core complex and antenna systems. In stroma lamellae, all PSII antenna complexes had a stoichiometry similar to that in grana membranes, with the exception of light-harvesting complex II (LHCII) that was somewhat over-represented, while the minor antenna complexes CP26 and CP29 were under-represented. In bundle sheath, the amount of LHCII was approximately eight times higher than expected with respect to D1. The 33-kDa protein of the oxygen-evolving enhancer polypeptides was not detectable nor was the ferredoxin-NADP+ reductase, thus strongly suggesting that no significant linear electron transport occurs in bundle sheath thylakoids. Fluorescence induction data suggest that most of the PSII reaction centers in bundle sheath and stroma lamellae sustain electron transport towards a secondary acceptor pool. Stromal PSII centers are only weakly inhibited by 3-(3,4-dichlorophenyl)-1,1-dimethylurea (diuron), whereas, unexpectedly, dichlorobenzoquinone and methyl viologen had a pronounced inhibitory effect of the QA- reoxidation. An additional specificity of these centers is the slow rate (50-ms range) of the QA to QB electron transfer. The amplitude of variable fluorescence found in stroma lamellae can only account for a small fraction (1-2%) of the variable fluorescence of whole thylakoids. This suggests that stromal PSII cannot be solely responsible for the slow beta-phase of the induction kinetics.

Chlorophyll↗

A post-translational modification of the photosystem II subunit CP29 protects maize from cold stress.

The resistance of maize plants to cold stress has been associated with the appearance of a new chlorophyll a/b binding protein in the thylakoid membrane following chilling treatment in the light. The cold-induced protein has been isolated, characterized by amino acid sequencing, and pulse labeled with radioactive precursors, showing that it is the product of post-translational modification by phosphorylation of the minor chlorophyll a/b protein CP29 rather than the product of a cold-regulated gene or an unprocessed CP29 precursor. We show here that the CP29 kinase activity displays unique characteristics differing from previously described thylakoid kinases and is regulated by the redox state of a quinonic site. Finally, we show that maize plants unable to perform phosphorylation have enhanced sensitivity to cold-induced photoinhibition.

Amino Acid Sequence↗

The degradative pathway of gangliosides GM1 and GM2 in Neuro2a cells by sialidase.

Gangliosides GM1 [3H-labeled at the sphingosine (Sph) moiety] and GM2 [3H-labeled at the Sph or N-acetylgalactosamine (GalNAc) moiety] were administered to cultured Neuro2a cells for varying pulse (1-4 h) and chase (up to 4 h) periods, and their metabolic processing was followed. The main and earliest formed 3H-metabolites of [Sph-3H]GM1 were GM2, asialo-GM1 asialo-GM2, and lactose-ceramide, and those of [Sph-3H]GM2 were asialo-GM2 and lactose-ceramide. The asialo-GM1 and asialo-GM2 formed were isolated and chemically characterized. [3H]Asialo-GM2 was produced in identical amounts after treatment with equimolar [Sph-3H]GM2 and [GalNAc-3H]GM2. At low temperature or in the presence of chloroquine, the formation of all 3H-metabolites, including asialo-GM2 and asialo-GM1, was undetectable, indicating that ganglioside metabolic processing was an endocytosis- and lysosome-dependent process. These results demonstrate that in Neuro2a cells exogenous GM1 (and GM2) is mainly degraded through the pathway GM1-->GM2-->asialo-GM2-->-->Sph, with a minor fraction of GM1 undergoing degradation with the sequence GM1-->asialo-GM-1-->asialo-GM2-->-->Sph. These findings are consistent with the hypothesis that Neuro2a cells contain a sialidase (likely of lysosomal nature) affecting ganglioside GM1 and GM2. The sialidase-mediated degradative pathway of GM1 and GM2 in Neuro2a cells might be related to the tumoral nature of these cells.

Animals↗

Personality disorders and psychiatric symptoms in psoriasis.

Two groups of psoriatic outpatients (ns = 192 and 119) were given, respectively, the Million Clinical Multiaxial Inventory-II and Foulds' Delusions-Symptoms-States Inventory. They were compared with dental (n = 192) and with general surgical (n = 190) patients. The psoriatic group presented clearly higher mean scores and frequencies on most of the personality disorder scales. On Foulds' inventory, psoriatic patients showed higher frequencies of neurotic and psychotic class allocations. A cluster analysis of personality scores provided evidence for 4 different personality clusters of patients with psoriasis: (a) Avoidant, Dependent, Schizoid, and Self-defeating (32.2%), (b) Compulsive, Narcissistic, and Aggressive (30.7%), (c) no personality disorder (18.2%), (d) Borderline, Paranoid, and Schizotypal, etc. (18.8%).

Adolescent↗

Formation of bioactive sphingoid molecules from exogenous sphingomyelin in primary cultures of neurons and astrocytes.

Exogenous sphingomyelin, radiolabelled at the sphingosine moiety, was administered to primary cultures of cerebellar granule cells and astrocytes for different pulse times (20 min-2 h) and the fate of the radioactivity was followed. Ceramide was the main metabolic product in both cells, whereas sphingosine, glucosyl-ceramide and gangliosides GM3 and GD3 were produced only in astrocytes. When endocytosis was prevented and the lysosomal apparatus inactivated, ceramide formation was reduced slightly in granule cells and almost completely blocked in astrocytes, with disappearance of sphingosine, glucosyl-ceramide, GM3 and GD3. These data indicate that (a) ceramide is rapidly produced in cerebellar granule cells and astrocytes, presumably at the level of the plasma membrane in the first cell type, and of the lysosomes in the second one; (b) sphingosine is produced in cerebellar astrocytes by lysosomal sphingomyelin degradation and is partly reused for glucosyl-ceramide and ganglioside biosynthesis.

Animals↗

Cultured cerebellar granule cells, but not astrocytes, produce an ester of ganglioside GD1b, presumably GD1b monolactone, from exogenous GD1b.

Granule cells and astrocytes from rat cerebellum were fed in culture with 2 microM ganglioside [Gal-3H]GD1b and then analysed for the presence of carboxyl esters of that ganglioside. Before extraction and purification of gangliosides, cells were treated with NaBH4 under conditions that would allow complete reductive cleavage of carboxyl ester linkages, [Gal-3H]GD1b monolactone and dilactone being used as reference esters of GD1b. These conditions, established by adding harvested cells (250 micrograms of protein) with 0.01-2 nmol of standard [Gal-3H]GD1b monolactone or dilactone and [Gal-3H]GD1b-1ol or -2ol formed respectively, consisted of an NaBH4/cell protein ratio of 2:1 (w/w). Cerebellar granule cells, but not astrocytes, were able to produce a radioactive compound which was identified as GD1b-1ol. The formation of this compound increased with pulse (up to 4 h) and chase (up to 3 h) time after a 2 h pulse and also occurred when ganglioside endocytosis was blocked. It can be concluded that cerebellar granule cells are able to convert ganglioside GD1b into a carboxyl ester form, presumably GD1b monolactone. The natural occurrence of the same GD1b carboxyl ester in cerebellar granule cells was also demonstrated.

Animals↗

Gaussian decomposition of absorption and linear dichroism spectra of outer antenna complexes of photosystem II.

Room temperature and 10 K absorption and linear dichroism spectra of the chlorophyll-protein complexes comprising the outer antenna of PSII (LHCII, CP29, CP26, CP24) have been analyzed in terms of a linear combination of asymmetric Gaussian bands. The results demonstrate the following: (a) The absorption and linear dichroism spectra of each sample can be described by nearly the same set of Gaussian bands at room temperature and 10 K. (b) The relative distributions of the transition moments of the major red-absorbing spectral forms seem to be similar in all four outer antenna chlorophyll-protein complexes at room temperature, with the 684-nm band being oriented closest to the particle plane at room temperature and the 677- and 669-nm bands being tilted at progressively greater angles out of the particle plane. The shorter wavelength transitions seem to be oriented close to the magic angle, but interpretation is complicated in this spectral region due to the low linear dichroism values and by overlap with vibrational bands. (c) The 684-nm band, detected in room temperature absorption and linear dichroism spectra of all complexes, vanishes at 10 K.

Chlorophyll↗

Heterogenous lipid distribution among chlorophyll-binding proteins of photosystem II in maize mesophyll chloroplasts.

Photosystem II membrane fractions from dark-adapted mesophyll chloroplasts of maize were solubilized in different concentrations of dodecyl beta-D-maltoside. Chlorophyll-binding proteins from photosystem II were isolated either by ultracentrifugation on a sucrose gradient, or by flat bed isoelectric focusing and identified by gel electrophoresis analysis for their polypeptide composition. Lipid and fatty acid compositions were determined in complexes prepared by both methods and also in purified light-harvesting complex II, in minor chlorophyll a/b binding complexes 29, 26, 24, in photosystem II antennae (chlorophyll-protein complexes 43, 47) and in the photosystem II reaction centers chlorophyll-protein complexes. Comparative analysis of the results suggests that a true heterogeneity exists in the lipid class distribution among the different chlorophyll-protein complexes in this region of the photosynthetic membrane. Photosystem II core fractions prepared either by ultra-centrifugation on a sucrose gradient or by isoelectric focusing were found significantly enriched in monogalactosyldiacylglycerol; fractionation of the photosystem II core in its components showed that it was the chlorophyll-protein complexes 43 and 47 which were mainly responsible for this enrichment. One of them, the chlorophyll-protein complex 47, was found containing monogalactosyldiacylglycerol and having a very high level of saturated fatty acids. The minor chlorophyll a/b binding linkers (chlorophyll-protein complexes 24, 26 and 29) retain a largely higher amount of lipids than all other complexes and especially of highly unsaturated galactolipids. Concerning the main light-harvesting antenna (LHCII), it is demonstrated that phosphatidylglycerol is strongly linked to the complex if it cannot be detached at high detergent concentration, while many galactolipids (which nevertheless represent the major lipid classes) are lost. This main light-harvesting complex has been fractionated into several families by isoelectric focusing showing a marked difference in lipid and polypeptide composition. A spectacular increase in the phosphatidylglycerol content was observed in the fraction migrating near the anode and enriched in a 26-kDa polypeptide; but this result is difficult to interpret in physiological terms as it was shown that phosphatidylglycerol alone, because of its negative charge, also migrates toward the anode in isoelectric focusing.

Chemical Fractionation↗

Three-dimensional structure of the higher-plant photosystem II reaction centre and evidence for its dimeric organization in vivo.

The three-dimensional structure of photosystem II (PSII) has been determined by conventional transmission electron microscopy and computerized three-dimensional reconstruction. Both the complete system and that lacking the oxygen-evolving complex have been analyzed. The PSII complex has a four-lobed structure with twofold symmetry. An estimate of the molecular mass and the results of Deriphat/PAGE analysis suggest that a reaction centre is present in each half of the structure resolved by electron microscopy. Stepwise removal of components of the complex showed that the removal of CP47 (a 47-kDa chlorophyll-protein complex) induces monomerization of PSII, which indicates the importance of this subunit for the dimeric structure.

Cell Membrane↗

Effect of brefeldin A on ganglioside metabolism in cultured neurons: implications for the intracellular traffic of gangliosides.

The effect of BFA on the metabolic processing and intracellular traffic of gangliosides was studied in cerebellar granule cells, fed in culture for different periods with radiolabeled ganglioside GM1. The following results were obtained: (a) degradation of taken-up GM1 was markedly inhibited by BFA; this effect was rapid, reversible, and affected by reduced temperature, ATP depletion, and microtubule disruption: (b) direct glycosylation of internalized GM1 to GD1a was completely blocked by BFA; (c) the portion of GM1 that escaped BFA inhibition was degraded with formation of sphingosine, that was recycled for the biosynthesis of less glycosylated glycolipids (glucosyl-ceramide, GM3 and GD3); (d) in BFA-treated cells highly glycosylated gangliosides were undetectable, and the formation of sphingomyelin from liberated sphingosine was markedly reduced. These results suggest that, in the cells used: (a) the delivery of endocytosed gangliosides to lysosomes, (b) the flow of poorly glycosylated glycolipids from the Golgi stacks to the trans-Golgi network, and (c) the direct transport of part of endocytosed gangliosides to the late sites of glycosylation (possibly TGN) are mediated by BFA-sensitive vesicles. We propose that in cultured granule cells a BFA-sensitive mechanism regulates ganglioside traffic to and from the plasma membrane.

Animals↗

Metabolism of exogenous ganglioside GM1 in cultured cerebellar granule cells. The fatty acid and sphingosine moieties formed during degradation are re-used for lipid biosynthesis.

Cerebellar granule cells, differentiated in vitro, were parallelly fed with [Sph-3H]GM1 and [stearoyl-14C]GM1, under identical conditions (10(-6) M ganglioside; pulse, from 1-4 h; chase, up to 24 h after 4 h pulse) and the salvage pathways of sphingosine and stearic acid were investigated. It was observed that both sphingosine and stearic acid, liberated during the intralysosomal degradation of ganglioside, are metabolically recycled, along distinct pathways. Sphingosine is used for the biosynthesis of a number of sphingolipids, particularly ceramide, glucosyl-ceramide, gangliosides and sphingomyelin; stearic acid is utilized for the biosynthesis of sphingolipids, and to a greater extent, glycero-phospholipids, especially those endogenously richer in stearic acid (phosphatidyl-ethanolamine and phosphatidyl-choline). No evidence was provided for a salvage pathway for ceramide.

Animals↗