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Alba Minelli Silvia Grottelli Lanfranco Corazzi Ilaria Bellezza Maria Grazia Rambotti Carla Emiliani Bertil B. Fredholm 《Mitochondrion》2010,10(4):369-379
A1 adenosine receptors are highly expressed in the central nervous system. Mitochondrial function is a major player in adenosine receptors-mediated effects. Here, by using mice with genetic deletion of the A1 receptor, we addressed the existence of a relationship between mitochondria functions and adenosine A1 receptor. Mitochondrial functions and effects of MPP+ in primary mixed cultures are influenced by the presence of the A1 receptor, demonstrating, for the first time, the mitochondrial localization of the adenosine A1 receptor and suggesting a role for this receptor as a mitochondrial vulnerability factor. 相似文献
64.
Macchioni L Davidescu M Mannucci R Francescangeli E Nicoletti I Roberti R Corazzi L 《Biochimica et biophysica acta》2011,1811(3):203-208
The mitochondrial electron transport chain is a source of oxygen superoxide anion (O(2)(-)) that is dismutated to H(2)O(2). Although low levels of ROS are physiologically synthesized during respiration, their increase contributes to cell injury. Therefore, an efficient machinery for H(2)O(2) disposal is essential in mitochondria. In this study, the ability of brain mitochondria to acquire cardiolipin (CL), phosphatidylglycerol (PG), and phosphatidylserine (PS) in vitro through a fusion process was exploited to investigate lipid effects on ROS. MTT assay, oxygen consumption, and respiratory ratio indicated that the acquired phospholipids did not alter mitochondrial respiration and O(2)(-) production from succinate. However, in CL-enriched mitochondria, H(2)O(2) levels where 27% and 47% of control in the absence and in the presence of antimycin A, respectively, suggesting an increase in H(2)O(2) elimination. Concomitantly, cytochrome c (cyt c) was released outside mitochondria. Since free oxidized cyt c acquired peroxidase activity towards H(2)O(2) upon interaction with CL in vitro, a contribution of cyt c to H(2)O(2) disposal in mitochondria through CL conferred peroxidase activity is plausible. In this model, the accompanying CL peroxidation should weaken cyt c-CL interactions, favouring the detachment and release of the protein. Neither cyt c peroxidase activity was elicited by PS in vitro, nor cyt c release was observed in PS-enriched mitochondria, although H(2)O(2) levels were significantly decreased, suggesting a cyt c-independent role of PS in ROS metabolism in mitochondria. 相似文献
65.
Fatima-Zohra?Kenza?LabbaniEmail author Benedetta?Turchetti Leila?Bennamoun Scheherazad?Dakhmouche Rita?Roberti Lanfranco?Corazzi Zahia?Meraihi Pietro?Buzzini 《Antonie van Leeuwenhoek》2015,107(4):961-970
A novel killer protein (Pkkp) secreted by a Pichia kluyveri strain isolated from an Algerian soil was active against food and beverage spoilage yeasts of the genera Dekkera, Kluyveromyces, Pichia, Saccharomyces, Torulaspora, Wickerhamomyces and Zygosaccharomyces. After purification by gel filtration chromatography Pkkp revealed an apparent molecular mass of 54 kDa with SDS-PAGE. Minimum inhibitory concentrations (MICs) of purified Pkkp exhibited a high in vitro activity against Dekkera bruxellensis (MICs from 64,000- to 256,000-fold lower than that exhibited by potassium metabisulphite) and Saccharomyces cerevisiae (MICs from 32,000- to 64,000- fold lower than potassium sorbate). No in vitro synergistic interactions (calculated by FIC index ? Σ FIC) were observed when Pkkp was used in combination with potassium metabisulphite, potassium sorbate, or ethanol. Pkkp exhibited a dose–response effect against D. bruxellensis and S. cerevisiae in a low-alcoholic drink and fruit juice, respectively. The results of the present study suggest that Pkkp could be proposed as a novel food-grade compound useful for the control of food and beverage spoilage yeasts. 相似文献
66.
The transcriptome of the arbuscular mycorrhizal fungus Glomus intraradices (DAOM 197198) reveals functional tradeoffs in an obligate symbiont 总被引:3,自引:0,他引:3
Tisserant E Kohler A Dozolme-Seddas P Balestrini R Benabdellah K Colard A Croll D Da Silva C Gomez SK Koul R Ferrol N Fiorilli V Formey D Franken P Helber N Hijri M Lanfranco L Lindquist E Liu Y Malbreil M Morin E Poulain J Shapiro H van Tuinen D Waschke A Azcón-Aguilar C Bécard G Bonfante P Harrison MJ Küster H Lammers P Paszkowski U Requena N Rensing SA Roux C Sanders IR Shachar-Hill Y Tuskan G Young JP Gianinazzi-Pearson V Martin F 《The New phytologist》2012,193(3):755-769
67.
Davidescu M Sciaccaluga M Macchioni L Angelini R Lopalco P Rambotti MG Roberti R Corcelli A Castigli E Corazzi L 《Journal of bioenergetics and biomembranes》2012,44(1):51-60
The GL15 glioblastoma cell line undergoes viability loss upon treatment with bromopyruvate. The biochemical mechanisms triggered
by the antiglycolytic agent indicate the activation of an autophagic pathway. Acridine orange stains acidic intracellular
vesicles already 60 min after bromopyruvate treatment, whereas autophagosomes engulfing electron dense material are well evidenced
18 h later. The autophagic process is accompanied by the expression of the early autophagosomal marker Atg5 and by LC3-II
formation, a late biochemical marker associated with autophagosomes. In agreement with the autophagic route activation, the
inhibitory and the activator Akt and ERK signaling pathways are depressed and enhanced, respectively. In spite of the energetic
collapse suffered by bromopyruvate-treated cells, MALDI-TOF mass spectrometry lipid analysis does not evidence a decrease
of the major phospholipids, in accordance with the need of phospholipids for autophagosomal membranes biogenesis. Contrarily,
mitochondrial cardiolipin decreases, accompanied by monolyso-cardiolipin formation and complete cytochrome c degradation,
events that could target mitochondria to autophagy. However, in our experimental conditions cytochrome c degradation seems
to be independent of the autophagic process. 相似文献
68.
Loredana Ingrosso Fenicia Vescio Massimo Giuliani Giovanni Battista Migliori Lanfranco Fattorini Santino Severoni Giovanni Rezza 《PloS one》2014,9(4)
In Italy, TB notifications in foreign-born people (FBP) are steadily increasing. To investigate this issue we did a meta-analysis on risk factors for FBP people. A systematic search was performed in PubMed and EMBASE from Jan-1980 to Jan-2013. We analysed HIV status, previous TB-treatment, intravenous drug use and alcohol abuse, and multidrug resistant TB. Odd ratio was used as a measure of effect. One and two-stages approaches were used. In the main analysis we used a 2-stages approach to include studies with only aggregate estimates. Among 1996 references, 18 fulfilled inclusion criteria. In TB-affected FBP people positive HIV-status was about 3 times higher than among Italians, after 1996 when combined antiretroviral therapy for HIV was introduced (OR: 2.91; 95%CI: 1.37; 6.17). No association was found between FBP and intravenous drug users in adults; after 1-stage meta-analysis foreign born people from highly endemic countries had a 4 times higher risk to be multidrug resistant TB than Italian people. Finally, TB-affected FBP were less likely than Italians to be alcoholics (OR: 0.10 95%CI: 0.01; 0.84) or of having received previous TB-treatment (OR: 0.55; 95%CI: 0.43; 0.71). An association of multidrug resistant TB with immigrant status as well as an association of Tuberculosis with HIV-positive status in foreign-born people are major findings of this analysis. Drugs and alcohol abuse do not appear to be risk factors for TB in FBP, however they cannot be discharged since may depend on cultural traditions and their role may change in the future along with the migratory waves. An effective control of TB risk factors among migrants is crucial to obtain the goal of TB eradication. 相似文献
69.
Barberini Sara Danti Roberto Lambardi Maurizio 《Plant Cell, Tissue and Organ Culture》2016,127(2):393-403
Regeneration of nodular cultures involves the production of new individuals from organogenic nodules. Despite the existence of well-established protocols for bromeliads species, many gaps in understanding the mechanisms of this route still remain, particularly the regeneration of new shoots, a stage little explored. Therefore, this work aimed to monitor the morpho and histodifferentiation processes of shoot regeneration from nodular cultures of Billbergia zebrina. To accomplish this, nodular cultures previously obtained from nodal segments of B. zebrina were transferred to regeneration induction medium consisting of semi-solid MS medium supplemented with 1.0 µM of naphthalene acetic acid and 2.0 µM of benzylaminopurine, respectively. Cultures were maintained in a growth chamber over 8 weeks, and samples were collected weekly for analysis under light, transmission electron, and scanning electron microscopy. Cells in the shoot formation region presented characteristics of mitotically active cells, such as the presence of numerous plasmodesmata and conspicuous microtubules. New shoots maintained vascular connection to the node. Cells binding the nodule vascular bundle toward the shoot showed degeneration of organelles, which, in turn, originated vascular neoelements. The dome presented a depressed or prominent surface, depending on shoot development. Rounded stomata were conspicuous in the leaf primordia and generally higher in number as compared to the epidermal surface. This study elucidated the nodular culture in vitro system in aspects associated to the regeneration of shoots and it is anticipated that such data will lead to the optimization of present nodular cultures based protocols with the aim of conserving endangered bromeliad species. 相似文献
70.
Lara Macchioni Katia Fettucciari Magdalena Davidescu Rita Vitale Pamela Ponsini Emanuela Rosati Angela Corcelli Pierfrancesco Marconi Lanfranco Corazzi 《Journal of bioenergetics and biomembranes》2013,45(6):519-529
Group B Streptococcus (GBS) causes severe infection in the central nervous system. In this study, brain mitochondrial function was investigated by simulating infection of isolated mitochondria with GBS, which resulted in loss of mitochondrial activity. The β-hemolysin expressing strains GBS-III-NEM316 and GBS-III-COH31, but not the gGBS-III-COH31 that does not express β-hemolysin, caused dissipation of preformed mitochondrial membrane potential (Δψm). This indicates that β-hemolysin is responsible for decreasing of the reducing power of mitochondria. GBS-III-COH31 interacted with mitochondria causing increase of oxygen consumption, due to uncoupling of respiration, blocking of ATP synthesis, and cytochrome c release outside mitochondria. Moreover, the mitochondrial systems contributing to the control of cellular Ca2+ uptake were lost. In spite of these alterations, mitochondrial phospholipid content and composition did not change significantly, as evaluated by MALDI-TOF mass spectrometry. However, exogenous cardiolipin (CL) and dipalmitoylphosphatidylcholine (DPPC) attenuated the uncoupling effect of GBS-III-COH31, although with different mechanisms. CL was effective only when fused to the inner mitochondrial membrane, probably reducing the extent of GBS-induced proton leakage. DPPC, which is not able to fuse with mitochondrial membranes, exerted its effect outside mitochondria, likely by shielding mitochondria against GBS β-hemolysin attack. 相似文献