1,649 research outputs found

    Ethnic Education: A Clash of Cultures in Progressive Chicago

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    The City of Chicago recently embarked upon a pioneering effort to transform the quality of its public school system. The concept of decentralization that allows for neighborhood councils, greater decision-making at the local level, and increased parental involvement in the schools is not a new one. Similar governance structures of a century ago fell victim to class and ethnic factionalism. The progressive vision of a homogenous society assumed a passive clientele and a consensus culture. Particular educational programs brought diverse groups closer to the mainstream, but the resultant mass culture accommodated pluralistic values rather than the sought-after homogeneity

    The Athlete as Trickster

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    This study invokes hegemony theory to analyze the role and uses of sport as a means to resist dominant group pressures and the adaptation of sporting practices to subordinate groups\u27 needs. The study draws upon literary and anthropological works that support the role of the trickster as a resistive, even manipulative figure, who fulfills both instructive and psychological needs for particular subordinate groups

    The aging-disease false dichotomy: understanding senescence as pathology

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    From a biological perspective aging (senescence) appears to be a form of complex disease syndrome, though this is not the traditional view. This essay aims to foster a realistic understanding of aging by scrutinizing ideas old and new. The conceptual division between aging-related diseases and an underlying, non-pathological aging process underpins various erroneous traditional ideas about aging. Among biogerontologists, another likely error involves the aspiration to treat the entire aging process, which recent advances suggest is somewhat utopian. It also risks neglecting a more modest but realizable goal: to develop preventative treatments that partially protect against aging

    The mysterious case of the C. elegans gut granule: death fluorescence, anthranilic acid and the kynurenine pathway

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    Gut granules are lysosome-like organelles with acidic interiors that are found in large numbers within the intestine of the nematode Caenorhabditis elegans. They are particularly prominent when viewed under ultraviolet light, which causes them to emit intense blue fluorescence. Yet the function of these large and abundant organelles in this heavily-studied model organism remains unclear. One possibility is that they serve as storage organelles, for example of zinc. A new clue to gut granule function is the identification of the blue fluorescent material that they contain as a glycosylated form of anthranilic acid, which is derived from tryptophan by action of the kynurenine pathway. This compound can also serve a surprising role as a natural, endogenous marker of organismal death

    Insulin/IGF-1 and hypoxia signaling act in concert to regulate iron homeostasis in C. elegans

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    Iron plays an essential role in many biological processes, but also catalyzes the formation of reactive oxygen species (ROS), which can cause molecular damage. Iron homeostasis is therefore a critical determinant of fitness. In Caenorhabditis elegans, insulin/IGF-1 signaling (IIS) promotes growth and reproduction but limits stress resistance and lifespan through inactivation of the DAF-16/FoxO transcription factor (TF). We report that long-lived daf-2 insulin/IGF-1 receptor mutants show a daf-16–dependent increase in expression of ftn-1, which encodes the iron storage protein H-ferritin. To better understand the regulation of iron homeostasis, we performed a TF–limited genetic screen for factors influencing ftn-1 gene expression. The screen identified the heat-shock TF hsf-1, the MAD bHLH TF mdl-1, and the putative histone acetyl transferase ada-2 as activators of ftn-1 expression. It also revealed that the HIFα homolog hif-1 and its binding partner aha-1 (HIFβ) are potent repressors of ftn-1 expression. ftn-1 expression is induced by exposure to iron, and we found that hif-1 was required for this induction. In addition, we found that the prolyl hydroxylase EGL-9, which represses HIF-1 via the von Hippel-Lindau tumor suppressor VHL-1, can also act antagonistically to VHL-1 in regulating ftn-1. This suggests a novel mechanism for HIF target gene regulation by these evolutionarily conserved and clinically important hydroxylases. Our findings imply that the IIS and HIF pathways act together to regulate iron homeostasis in C. elegans. We suggest that IIS/DAF-16 regulation of ftn-1 modulates a trade-off between growth and stress resistance, as elevated iron availability supports growth but also increases ROS production
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