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61.
Silvia Lisa Massimiliano Meli Gema Cabello Ruth Gabizon Giorgio Colombo María Gasset 《Cellular and molecular life sciences : CMLS》2010,67(16):2825-2838
The conversion of the cellular prion protein (PrPC) into its disease-associated form (PrPSc) involves a major conformational change and the accumulation of sulfoxidized methionines. Computational and synthetic approaches
have shown that this change in the polarity of M206 and M213 impacts the C-terminal domain native α-fold allowing the flexibility
required for the structural conversion. To test the effect in the full-length molecule with site-specificity, we have generated
M-to-S mutations. Molecular dynamics simulations show that the replacement indeed perturbs the native state. When this mutation
is placed at the conserved methionines of HaPrP(23–231), only substitutions at the Helix-3 impair the α-fold, stabilizing
a non-native state with perturbed secondary structure, loss of native tertiary contacts, increased surface hydrophobicity,
reduced thermal stability and an enhanced tendency to aggregate into protofibrillar polymers. Our work supports that M206
and M213 function as α-fold gatekeepers and suggests that their redox state regulate misfolding routes. 相似文献
62.
Walton R Kimber M Rockett K Trafford C Kwiatkowski D Sirugo G 《Nature genetics》2005,37(9):915-6; author reply 916
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64.
Hohmann AG Suplita RL Bolton NM Neely MH Fegley D Mangieri R Krey JF Walker JM Holmes PV Crystal JD Duranti A Tontini A Mor M Tarzia G Piomelli D 《Nature》2005,435(7045):1108-1112
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanisms. Here we show that an opioid-independent form of this phenomenon, termed stress-induced analgesia, is mediated by the release of endogenous marijuana-like (cannabinoid) compounds in the brain. Blockade of cannabinoid CB(1) receptors in the periaqueductal grey matter of the midbrain prevents non-opioid stress-induced analgesia. In this region, stress elicits the rapid formation of two endogenous cannabinoids, the lipids 2-arachidonoylglycerol (2-AG) and anandamide. A newly developed inhibitor of the 2-AG-deactivating enzyme, monoacylglycerol lipase, selectively increases 2-AG concentrations and, when injected into the periaqueductal grey matter, enhances stress-induced analgesia in a CB1-dependent manner. Inhibitors of the anandamide-deactivating enzyme fatty-acid amide hydrolase, which selectively elevate anandamide concentrations, exert similar effects. Our results indicate that the coordinated release of 2-AG and anandamide in the periaqueductal grey matter might mediate opioid-independent stress-induced analgesia. These studies also identify monoacylglycerol lipase as a previously unrecognized therapeutic target. 相似文献
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Lump lime as a flux material in a basic oxygen furnace (BOF) often creates problems in operation due to its high melting point, poor dissolution property, hygroscopic nature, and fines generation tendency. To alleviate these problems, fluxed lime iron oxide pellets (FLIP) containing 30% CaO were developed in this study using waste iron oxide fines and lime. The suitable handling strengths of the pellet (crushing strength: 300 N; drop strength: 130 times) of FLIP were developed by treating with CO2 or industrial waste gas at room temperature, while no separate binders were used. When the pellet was added into hot metal bath (carbon-containing molten iron), it was decomposed, melted, and transformed to produce low melting oxidizing slag, because it is a combination of main CaO and Fe2O3. This slag is suitable for facilitating P and C removal in refining. Furthermore, the pellet enhances waste utilization and use of CO2 in waste gas. In this article, emphasis is given on studying the behavior of these pellets in hot metal bath during melting and refining along with thermodynamics and kinetics analysis. The observed behaviors of the pellet in hot metal bath confirm that it is suitable and beneficial for use in BOF and replaces lump lime. 相似文献
69.
Almudena Fuster-Matanzo Jerónimo Jurado-Arjona Stefano Benvegnù Esther García Patricia Martín-Maestro Raquel Gómez-Sintes Félix Hernández Jesús Ávila 《Cellular and molecular life sciences : CMLS》2017,74(6):1153-1163
Glycogen synthase kinase-3β (GSK-3β) is a serine-threonine kinase implicated in multiple processes and signaling pathways. Its dysregulation is associated with different pathological conditions including Alzheimer’s disease (AD). Here we demonstrate how changes in GSK-3β activity and/or levels regulate the production and subsequent secretion of fractalkine, a chemokine involved in the immune response that has been linked to AD and to other different neurological disorders. Treatment of primary cultured neurons with GSK-3β inhibitors such as lithium and AR-A014418 decreased full-length fractalkine in total cell extracts. Opposite effects were observed after neuron transduction with a lentiviral vector overexpressing the kinase. Biotinylation assays showed that those changes mainly affect the plasma membrane-associated form of the protein, an observation that positively correlates with changes in the levels of its soluble form. These effects were confirmed in lithium-treated wild type (wt) mice and in GSK-3β transgenic animals, as well as in brain samples from AD patients, evident as age-dependent (animals) or Braak stage dependent changes (humans) in both the membrane-bound and the soluble forms of the protein. Further immunohistochemical analyses demonstrated how GSK-3β exerts these effects by affecting the trafficking of the chemokine from the Golgi to the plasma membrane, in different and opposite ways when the levels/activity of the kinase are increased or decreased. This work provides for the first time a mechanism linking GSK-3β and fractalkine both in vitro and in vivo, with important implications for neurological disorders and especially for AD, in which levels of this chemokine might be useful as a diagnostic tool. 相似文献
70.
Wain LV Verwoert GC O'Reilly PF Shi G Johnson T Johnson AD Bochud M Rice KM Henneman P Smith AV Ehret GB Amin N Larson MG Mooser V Hadley D Dörr M Bis JC Aspelund T Esko T Janssens AC Zhao JH Heath S Laan M Fu J Pistis G Luan J Arora P Lucas G Pirastu N Pichler I Jackson AU Webster RJ Zhang F Peden JF Schmidt H Tanaka T Campbell H Igl W Milaneschi Y Hottenga JJ Vitart V Chasman DI Trompet S Bragg-Gresham JL Alizadeh BZ Chambers JC Guo X Lehtimäki T Kühnel B Lopez LM Polašek O Boban M Nelson CP 《Nature genetics》2011,43(10):1005-1011
Numerous genetic loci have been associated with systolic blood pressure (SBP) and diastolic blood pressure (DBP) in Europeans. We now report genome-wide association studies of pulse pressure (PP) and mean arterial pressure (MAP). In discovery (N = 74,064) and follow-up studies (N = 48,607), we identified at genome-wide significance (P = 2.7 × 10(-8) to P = 2.3 × 10(-13)) four new PP loci (at 4q12 near CHIC2, 7q22.3 near PIK3CG, 8q24.12 in NOV and 11q24.3 near ADAMTS8), two new MAP loci (3p21.31 in MAP4 and 10q25.3 near ADRB1) and one locus associated with both of these traits (2q24.3 near FIGN) that has also recently been associated with SBP in east Asians. For three of the new PP loci, the estimated effect for SBP was opposite of that for DBP, in contrast to the majority of common SBP- and DBP-associated variants, which show concordant effects on both traits. These findings suggest new genetic pathways underlying blood pressure variation, some of which may differentially influence SBP and DBP. 相似文献