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921.
Meschini S Condello M Calcabrini A Marra M Formisano G Lista P De Milito A Federici E Arancia G 《Autophagy》2008,4(8):1020-1033
In our previous studies, the bisindolic alkaloid voacamine (VOA), isolated from the plant Peschiera fuchsiaefolia, proved to exert a chemosensitizing effect on cultured multidrug resistant (MDR) osteosarcoma cells exposed to doxorubicin (DOX). In particular, VOA was capable of inhibiting P-glycoprotein action in a competitive way, thus explaining the enhancement of the cytotoxic effect induced by DOX on MDR cells. Afterwards, preliminary observations suggested that such an enhancement did not involve the apoptotic process but was due instead to the induction of autophagic cell death. The results of the present investigation demonstrate that the plant alkaloid VOA is an autophagy inducer able to exert apoptosis-independent cytotoxic effect on both wild-type and MDR tumor cells. In fact, under treatment condition causing about 50 percent of cell death, no evidence of apoptosis could be revealed by microscopical observations, Annexin V-FITC labeling and analysis of PARP cleavage, whereas the same cells underwent apoptosis when treated with apoptosis inducers, such as doxorubicin and staurosporine. Conversely, VOA-induced autophagy was clearly evidentiated by electron microscopy observations, monodansylcadaverine staining, LC3 expression, and conversion. These results were confirmed by the analysis of the modulating effects of the pretreatment with autophagy inhibitors prior to VOA administration. In addition, transfection of osteosarcoma cells with siRNA against ATG genes reduced VOA cytotoxicity. In conclusion, considering the very debated dual role of autophagy in cancer cells (protective or lethal, pro- or anti- apoptotic) our findings seem to demonstrate, at least in vitro, that a natural product able to induce autophagy can be effective against drug resistant tumors, either used alone or in association with conventional chemotherapeutics. 相似文献
922.
Scholten J Hartmann K Gerbaulet A Krieg T Müller W Testa G Roers A 《Transgenic research》2008,17(2):307-315
Mast cells are important effectors of type I allergy but also essential regulators of innate and adaptive immune responses.
The aim of this study was to develop a Cre recombinase-expressing mouse line that allows mast cell-specific inactivation of
genes in vivo. Following a BAC transgenic approach, Cre was expressed under the control of the mast cell protease (Mcpt) 5 promoter. Mcpt5-Cre transgenic mice were crossed to the ROSA26-EYFP Cre excision reporter strain. Efficient Cre-mediated recombination was observed
in mast cells from the peritoneal cavity and the skin while only minimal reporter gene expression was detected outside the
mast cell compartment. Our results show that the Mcpt5 promoter can drive Cre expression in a mast cell-specific fashion. We expect that our Mcpt5-Cre mice will be a useful tool for the investigation of mast cell biology.
Julia Scholten and Karin Hartmann contributed equally to this work.
Supported by grants from the German Research Counsil (Deutsche Forschungsgemeinschaft, RO 2133/2-2) to A.R. and K.H. and the
Koeln Fortune Program/Faculty of Medicine, University of Cologne, to A.R. and K.H.. The authors have no conflict of interest 相似文献
923.
La Regina G Silvestri R Gatti V Lavecchia A Novellino E Befani O Turini P Agostinelli E 《Bioorganic & medicinal chemistry》2008,16(22):9729-9740
New monoamine oxidase inhibitors were synthesized as indole analogues of a previously reported pyrrole series. Several compounds were potent MAO-A (12, 17, 19-22, 31, 36, and 37) or MAO-B (14, 20, 24, 38, 44, and 46) inhibitors, and had K(i) values in the nanomolar concentration range. In particular, 22 (K(i)=0.00092 microM, and SI=68,478) was exceptionally potent and selective as MAO-A inhibitor. In molecular modeling studies, compounds 22, 24, 44, and 46 positioned the indole ring into an aromatic cavity of MAO-A, and established pi-pi stacking interactions with Tyr407, Tyr444, and FAD cofactor. However, only compound 22 was able to form hydrogen bonds with FAD, a finding which was in accordance with its potent anti-MAO-A activity. Conversely, 22/MAOB complex was highly unstable during the MD simulation. 相似文献
924.
Banfi L Basso A Bevilacqua E Gandolfo V Giannini G Guanti G Musso L Paravidino M Riva R 《Bioorganic & medicinal chemistry》2008,16(7):3501-3518
Lactenediynes are compounds characterized by the fusion of a beta-lactam with a cyclodeca-3-ene-1,5-diyne. In this work the most promising members of this family have been activated by attaching a carbalkoxy or a carbamoyl group to the azetidinone nitrogen, and conjugated to various DNA-complexing moieties, either acting by intercalation or through groove binding. These conjugated artificial enediynes have been demonstrated to possess in vitro ability to produce single and double strand cleavage of plasmid DNA. As potency and capacity to induce double cut, they rank among the best simple enediyne analogues ever prepared. A thorough investigation was carried out in order to develop the best suited linkers for assembling these conjugates. 相似文献
925.
Giovanni Minervini Giuseppe Evangelista Fabio Polticelli Monika Piwowar Marek Kochanczyk Lukasz Flis Maciej Malawski Tomasz Szepieniec Zdzisaw Winiowski Ewa Matczyska Katarzyna Prymula Irena Roterman 《Bioinformation》2008,3(4):177-179
The number of natural proteins although large is significantly smaller than the theoretical number of proteins that can be obtained combining the 20 natural amino acids, the so-called “never born proteins” (NBPs). The study of the structure and properties of these proteins allows to investigate the sources of the natural proteins being of unique characteristics or special properties. However the structural study of NPBs can also been intended as an ideal test for evaluating the efficiency of software packages for the ab initio protein structure prediction. In this research, 10.000 three-dimensional structures of proteins of completely random sequence generated according to ROSETTA and FOD model were compared. The results show the limits of these software packages, but at the same time indicate that in many cases there is a significant agreement between the prediction obtained. 相似文献
926.
927.
Maffettone C De Martino L Irace C Santamaria R Pagnini U Iovane G Colonna A 《Journal of cellular biochemistry》2008,104(1):213-223
Bovine herpesvirus 1 (BHV-1), a dsDNA animal virus, is an economically important pathogen of cattle and the aetiological agent of many types of disease. The efficient replication of a DNA virus is strictly dependent on iron since this metal plays a crucial role in the catalytic center of viral ribonucleotide reductase. Consequently, iron metabolism is an important area for virus/host interaction and a large body of evidence suggests that viral infection is potentially influenced by the iron status of the host. The aim of the present study was to address the effects of BHV-1 on iron metabolism in Madin-Darby bovine kidney (MDBK) cells at different times of post-infection. For this purpose, cell viability, iron regulatory proteins (IRPs) activity and levels, transferrin receptor 1 (TfR-1), ferritin expression and LIP were evaluated. Our data demonstrate that a productive BHV-1 infection in MDBK cells determines an overall decrease of IRPs RNA-binding activity without affecting their expression. As consequence of this modulation, an increased ferritin mRNA translation and a decreased TfR-1 mRNA translation were also observed. Moreover, the LIP level was decreased following viral infection. These results are consistent with the hypothesis that by reducing the iron up-take and by enhancing the sequestration of free iron, animal cells will limit the iron availability for virus proliferation. Therefore, the results presented herein support the view that iron metabolism could be critical for the interaction between DNA viruses, such as BHV-1, and mammalian cells. Delineation of the interplay among pathogen and host may provide new antimicrobial agents. 相似文献
928.
Di Trolio R Di Lorenzo G Iacono A Filosa A Delfino M D'Armiento FP 《Analytical and quantitative cytology and histology / the International Academy of Cytology [and] American Society of Cytology》2008,30(4):203-208
OBJECTIVE: To determine the expression of HECA-452 epitope in mycosis fungoides (MF), assess whether its expression increases in relapsed MF compared with nonrelapsed MF and determine the potential prognostic relevance of HECA-452 expression. STUDY DESIGN: HECA-452 expression was evaluated by immunohistochemistry in a consecutive series of 20 MF. In all patients we evaluated the disease-free survival rate according to HECA-452 expression in a univariate analysis. RESULTS: We found a low expression in 5 MF (25%), a moderate expression in 8 MF (40%) and a high expression in 7 MF (35%) in the intraepidermal area. All patients were disease-free after appropriate therapy. Four of 20 patients (20%) relapsed within 2 years. HECA-452 expression significantly correlated with disease relapse in these patients. In fact, among the 7 patients whose lesions had a high expression, 4 had a disease recurrence (57%), whereas 0 of 13 (0%) with a low or moderate expression relapsed (p < 0.05). CONCLUSION: HECA-452 expression correlates with disease relapse in MF. Correlation with disease progression suggests that HECA-452 could be of prognostic relevance in the early stage of mycosis fungoides. 相似文献
929.
930.
Du T Ciccotosto GD Cranston GA Kocak G Masters CL Crouch PJ Cappai R White AR 《Free radical biology & medicine》2008,44(1):44-55
Loss of intracellular neuronal glutathione (GSH) is an important feature of neurodegenerative disorders including Alzheimer's disease, Parkinson's disease, and amyotrophic lateral sclerosis. The consequences of GSH depletion include increased oxidative damage to proteins, lipids, and DNA and subsequent cytotoxic effects. GSH is also an important modulator of cellular copper (Cu) homeostasis and altered Cu metabolism is central to the pathology of several neurodegenerative diseases. The cytotoxic effects of Cu in cells depleted of GSH are not well understood. We have previously reported that depletion of neuronal GSH levels results in cell death from trace levels of extracellular Cu due to elevated Cu(I)-mediated free radical production. In this study we further examined the molecular pathway of trace Cu toxicity in neurons and fibroblasts depleted of GSH. Treatment of primary cortical neurons or 3T3 fibroblasts with the glutathione synthetase inhibitor buthionine sulfoximine resulted in substantial loss of intracellular GSH and increased cytotoxicity. We found that both neurons and fibroblasts revealed increased expression and activation of p53 after depletion of GSH. The increased p53 activity was induced by extracellular trace Cu. Furthermore, we showed that in GSH-depleted cells, Cu induced an increase in oxidative stress resulting in DNA damage and activation of p53-dependent cell death. These findings may have important implications for neurodegenerative disorders that involve GSH depletion and aberrant Cu metabolism. 相似文献