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Research Topic : Molecular evolution
Australian State/Territory : VIC
Scheme : Career Development Fellowships
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  • Funded Activity

    Discovering And Targeting Genes Regulating Skeletal Muscle Function, Metabolism, And Adaptations To Exercise Interventions

    Funder
    National Health and Medical Research Council
    Funding Amount
    $431,000.00
    Summary
    Muscle wasting and decreased in mitochondrial function due to ageing or lack of physical activity are associated with reduced quality of life. The overarching aim is to develop a unique research program focusing on targeting specific genes, and to discover novel genes regulating muscle wasting and mitochondrial (dis)function. I anticipate this approach to assist in the development of targeted and personalised prevention and therapy for diseases associated with muscle (dis)function.
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    Funded Activity

    Signalosomes And Compartmentalisation In Cellular Homeostasis And Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $473,646.00
    Summary
    G protein-coupled receptors are specialised proteins on the surface of cells. They are the targets of 30% of currently available pharmaceuticals. This proposal will examine exciting and novel properties of these proteins that only occur following their assembly into specialised networks in cells. The use of cutting-edge technology will allow us to understand the role of these networks in many diseases. The new information will expand our current knowledge, and facilitate targeted drug design.
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    Funded Activity

    The Role Of The Zinc Finger Transcriptional Repressor Znf238 During Nerve Cell Maturation

    Funder
    National Health and Medical Research Council
    Funding Amount
    $394,264.00
    Summary
    Proper foetal brain assembly is critical for brain function, but the underlying genetic mechanisms remain poorly defined. In this study, I will investigate a family of proteins that “turn on” neural gene expression in combination with another protein that “turns off” their expression during nerve cell development. Understanding this novel on/off mechanism for controlling gene expression in newborn nerve cells will further our understanding of how the brain is assembled.
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    Showing 1-3 of 3 Funded Activites

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