951 resultados para Police Functions.


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The three peroxisome proliferator-activated receptors (PPAR alpha, PPAR beta, and PPAR gamma) are ligand-activated transcription factors belonging to the nuclear hormone receptor superfamily. They are regarded as being sensors of physiological levels of fatty acids and fatty acid derivatives. In the adult mouse skin, they are found in hair follicle keratinocytes but not in interfollicular epidermis keratinocytes. Skin injury stimulates the expression of PPAR alpha and PPAR beta at the site of the wound. Here, we review the spatiotemporal program that triggers PPAR beta expression immediately after an injury, and then gradually represses it during epithelial repair. The opposing effects of the tumor necrosis factor-alpha and transforming growth factor-beta-1 signalling pathways on the activity of the PPAR beta promoter are the key elements of this regulation. We then compare the involvement of PPAR beta in the skin in response to an injury and during hair morphogenesis, and underscore the similarity of its action on cell survival in both situations.

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Si dans certains domaines (ex. les services de l'emploi) la co-production est bien implantée, elle paraît plus ardue dans d'autres types de services publics, comme la police. La co-production de la sécurité est-elle faisable ? Quelles sont les volontés de part et d'autre pour développer ce partenariat ? À l'aune de la police de proximité en Suisse et sur la base de données quantitatives et qualitatives, cet article apporte des résultats innovants. If in some administrations (eg. employment services) it is clearly well established, the co-production seems to be more difficult in other services, like the police. Thus, is the co-production of security services feasible ? Are both parties (police forces and citizens) ready for such a process ? In the light of community policing in Switzerland and on the basis of quantitative and qualitative data, this article will provide innovative results and research avenues in the field.

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Calcineurin signaling plays diverse roles in fungi in regulating stress responses, morphogenesis and pathogenesis. Although calcineurin signaling is conserved among fungi, recent studies indicate important divergences in calcineurin-dependent cellular functions among different human fungal pathogens. Fungal pathogens utilize the calcineurin pathway to effectively survive the host environment and cause life-threatening infections. The immunosuppressive calcineurin inhibitors (FK506 and cyclosporine A) are active against fungi, making targeting calcineurin a promising antifungal drug development strategy. Here we summarize current knowledge on calcineurin in yeasts and filamentous fungi, and review the importance of understanding fungal-specific attributes of calcineurin to decipher fungal pathogenesis and develop novel antifungal therapeutic approaches.