37 research outputs found

    Toward An Architecture for Internet-based \u27Evolutionary\u27 Collaboration

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    In this paper, we review, synthesize and extend the World Wide Web (WWW) models for collaboration into a meta-framework. We start with a set of requirements for a framework for collaborative systems and describe a specific architectural implementation of the suggested framework for Internet based collaboration building upon current research efforts worldwide. Areas that need further research and our future plans are describe

    Effect of salt deprivation on blood pressure in rats

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    Developing Health Workforce Capacity in Africa

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    Claudin-4 forms paracellular chloride channel in the kidney and requires claudin-8 for tight junction localization

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    Tight junctions (TJs) play a key role in mediating paracellular ion reabsorption in the kidney. The paracellular pathway in the collecting duct of the kidney is a predominant route for transepithelial chloride reabsorption that determines the extracellular NaCl content and the blood pressure. However, the molecular mechanisms underlying the paracellular chloride reabsorption in the collecting duct are not understood. Here we showed that in mouse kidney collecting duct cells, claudin-4 functioned as a Cl– channel. A positively charged lysine residue at position 65 of claudin-4 was critical for its anion selectivity. Claudin-4 was observed to interact with claudin-8 using several criteria. In the collecting duct cells, the assembly of claudin-4 into TJ strands required its interaction with claudin-8. Depletion of claudin-8 resulted in the loss of paracellular chloride conductance, through a mechanism involving its recruitment of claudin-4 during TJ assembly. Together, our data show that claudin-4 interacts with claudin-8 and that their association is required for the anion-selective paracellular pathway in the collecting duct, suggesting a mechanism for coupling chloride reabsorption with sodium reabsorption in the collecting duct
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