36 research outputs found

    The politics of ageing: health consumers, markets and hegemonic challenge

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    In recent years ageing has travelled from the placid backwaters of politics into the mainstream of economic, social and cultural debate. What are the forces that have politicised ageing, creating a sustained opposition to the supply side hegemony of pharmaceuticals, medicine and state which has historically constructed, propagated and legitimised the understanding of ageing as decline in social worth? In addressing this question, the paper develops Gramsci's theory of hegemony to include the potentially disruptive demand side power of consumers and markets. It shows how in the case of ageing individuals acting in concert through the mechanisms of the market, and not institutionalised modes of opposition, may become the agents of hegemonic challenge through a combination of lifecourse choice and electoral leverage. In response, the hegemony is adapting through the promotion of professionally defined interpretations of β€˜active ageing’ designed to retain hegemonic control. With the forces of hegemony and counter‐hegemony nicely balanced and fresh issues such as intergenerational justice constantly emerging, the political tensions of ageing are set to continue

    A Mapping of Drug Space from the Viewpoint of Small Molecule Metabolism

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    Small molecule drugs target many core metabolic enzymes in humans and pathogens, often mimicking endogenous ligands. The effects may be therapeutic or toxic, but are frequently unexpected. A large-scale mapping of the intersection between drugs and metabolism is needed to better guide drug discovery. To map the intersection between drugs and metabolism, we have grouped drugs and metabolites by their associated targets and enzymes using ligand-based set signatures created to quantify their degree of similarity in chemical space. The results reveal the chemical space that has been explored for metabolic targets, where successful drugs have been found, and what novel territory remains. To aid other researchers in their drug discovery efforts, we have created an online resource of interactive maps linking drugs to metabolism. These maps predict the β€œeffect space” comprising likely target enzymes for each of the 246 MDDR drug classes in humans. The online resource also provides species-specific interactive drug-metabolism maps for each of the 385 model organisms and pathogens in the BioCyc database collection. Chemical similarity links between drugs and metabolites predict potential toxicity, suggest routes of metabolism, and reveal drug polypharmacology. The metabolic maps enable interactive navigation of the vast biological data on potential metabolic drug targets and the drug chemistry currently available to prosecute those targets. Thus, this work provides a large-scale approach to ligand-based prediction of drug action in small molecule metabolism

    Drosophila cbl Is Essential for Control of Cell Death and Cell Differentiation during Eye Development

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    Activation of cell surface receptors transduces extracellular signals into cellular responses such as proliferation, differentiation and survival. However, as important as the activation of these receptors is their appropriate spatial and temporal down-regulation for normal development and tissue homeostasis. The Cbl family of E3-ubiquitin ligases plays a major role for the ligand-dependent inactivation of receptor tyrosine kinases (RTKs), most notably the Epidermal Growth Factor Receptor (EGFR) through ubiquitin-mediated endocytosis and lysosomal degradation.Here, we report the mutant phenotypes of Drosophila cbl (D-cbl) during eye development. D-cbl mutants display overgrowth, inhibition of apoptosis, differentiation defects and increased ommatidial spacing. Using genetic interaction and molecular markers, we show that most of these phenotypes are caused by increased activity of the Drosophila EGFR. Our genetic data also indicate a critical role of ubiquitination for D-cbl function, consistent with biochemical models.These data may provide a mechanistic model for the understanding of the oncogenic activity of mammalian cbl genes

    Complete plastome sequence of Rumex japonicus

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