Analysing the protective role of platelets during malaria infection. Platelets protect the host during malarial infection. This project aims to study how platelets kill the malaria parasite by investigating the role of host molecules and their potential as novel antimalarial agents. The role of platelets in the pathogenesis of cerebral malaria syndrome will also be investigated.
The epigenetic blueprint for T cell differentiation: a genomic view. A cardinal feature of adaptive immune cell activation is the initiation of a program of differentiation that results in acquisition and long term maintenance of lineage-speci?c effector function. This proposal aims to map and dissect genome wide molecular changes that occur at different stages of immune cell differentiation and identify key factors that regulating these changes. It is expected that distinct genomic signatures, ....The epigenetic blueprint for T cell differentiation: a genomic view. A cardinal feature of adaptive immune cell activation is the initiation of a program of differentiation that results in acquisition and long term maintenance of lineage-speci?c effector function. This proposal aims to map and dissect genome wide molecular changes that occur at different stages of immune cell differentiation and identify key factors that regulating these changes. It is expected that distinct genomic signatures, and the mechanisms indicative of effective immune cell differentiation will be identified. This proposal will provide insights into key mechanisms that result in reprogramming of immune cell function and memory and have implications for understanding general cellular differentiation.Read moreRead less
How enhancers regulate T cell differentiation and function. This project aims to identify the molecular mechanisms that regulate the activity of transcriptional enhancers needed for effective immune cell differentiation. Adaptive immune cell activation starts a programme of differentiation that acquires and maintains lineage-specific effector function. Using a multidisciplinary approach including cellular and chromatin biology, advanced bioinformatics, targeted genome editing and nanotechnology, ....How enhancers regulate T cell differentiation and function. This project aims to identify the molecular mechanisms that regulate the activity of transcriptional enhancers needed for effective immune cell differentiation. Adaptive immune cell activation starts a programme of differentiation that acquires and maintains lineage-specific effector function. Using a multidisciplinary approach including cellular and chromatin biology, advanced bioinformatics, targeted genome editing and nanotechnology, this project expects to provide insights into non-coding regulatory element reprogramming and control of immune cell function and memory with implications for understanding general cellular differentiation.Read moreRead less
microRNAs and the control of T lymphocyte differentiation, function and malignant transformation. The molecular mechanism of the immune system is not completely understood. This project will investigate how transcription factors and microRNAs, two major types of regulatory molecules work together to control immune responses. The results from this research will assist in the design of better vaccination strategies and treat certain lymphomas.
The New Collaborative Environmental Governance: Natural Resource Management in Australia. This project will evaluate the new regional natural resource management arrangements that have been established across Australia. The project outcomes will enable policy-makers nationally to identify opportunities for innovative policies and programs which can achieve better results for the environment (reducing environmental degradation), and for the economy (reducing costs to rural industries and to regul ....The New Collaborative Environmental Governance: Natural Resource Management in Australia. This project will evaluate the new regional natural resource management arrangements that have been established across Australia. The project outcomes will enable policy-makers nationally to identify opportunities for innovative policies and programs which can achieve better results for the environment (reducing environmental degradation), and for the economy (reducing costs to rural industries and to regulators) while substantially increasing effective community participation. The project will also provide principles with the potential to reshape environmental strategy and establish Australia as a leader in collaborative environmental governance internationally.Read moreRead less
Dissecting a RNA-histone variant interaction and its role in splicing. This project aims to define the molecular details of how a chromatin component, histone H2A.B, binds RNA and influences RNA splicing. This is unprecedented for histones, which are typically associated with DNA and transcriptional regulation. Over 90 per cent of human genes may be alternatively spliced. This explains how complex organisms develop from a limited set of genes, but how alternative splicing decisions are made is u ....Dissecting a RNA-histone variant interaction and its role in splicing. This project aims to define the molecular details of how a chromatin component, histone H2A.B, binds RNA and influences RNA splicing. This is unprecedented for histones, which are typically associated with DNA and transcriptional regulation. Over 90 per cent of human genes may be alternatively spliced. This explains how complex organisms develop from a limited set of genes, but how alternative splicing decisions are made is unclear. The intended outcome is to reveal links between chromatin, RNA splicing and gene expression regulation to explain how multicellular organisms have evolved. The translation of this knowledge will ultimately provide long-term economic and health benefits for Australia.Read moreRead less
Understanding how dynamic changes in chromatin composition control genome function. DNA is tightly packaged in eukaryotic cells as chromatin. Important genetic processes, such as transcription, require manipulation of chromatin structure to access the DNA. The cell sets up specialised chromatin structures to regulate these processes. Currently, precise molecular details of these specialised structures are limited. This project will push the envelope of an in vitro model chromatin system and dete ....Understanding how dynamic changes in chromatin composition control genome function. DNA is tightly packaged in eukaryotic cells as chromatin. Important genetic processes, such as transcription, require manipulation of chromatin structure to access the DNA. The cell sets up specialised chromatin structures to regulate these processes. Currently, precise molecular details of these specialised structures are limited. This project will push the envelope of an in vitro model chromatin system and determine the architecture of several chromatin states with unique functional implications inside the cell. This will unravel the molecular instructions that define how our genomes are organised, significantly advancing our knowledge of fundamental eukaryotic genome biology and paving the way for the future development of new tools and therapies.Read moreRead less
The social and environmental implications of privately regulated food quality standards for agri-food networks in Asia-Pacific. This proposal will contribute to an environmentally sustainable Australia in two ways. First, the research will highlight barriers to the uptake of environmental standards among fruit and vegetable growers as well as potential strategies to encourage certification. Second, the research will assess the extent to which compliance with internationally harmonised standards ....The social and environmental implications of privately regulated food quality standards for agri-food networks in Asia-Pacific. This proposal will contribute to an environmentally sustainable Australia in two ways. First, the research will highlight barriers to the uptake of environmental standards among fruit and vegetable growers as well as potential strategies to encourage certification. Second, the research will assess the extent to which compliance with internationally harmonised standards actually assists or encourages farmers to address local priority environmental issues. Improved understanding of the social and environmental impact of standards will highlight domestic policy and regulatory shifts which may be necessary to maximise positive environmental outcomes.Read moreRead less
Climate Change Projections and Policy Design Under Uncertainty. The issue of climate change and policy responses is one of the most important questions facing the world today. This research develops a global framework for understanding the many complexities surrounding this issue, for undertaking projections of emissions, for evaluating alternative policy proposals and for developing new policies. In particular it will provide a framework for undertaking alternative scenarios about future econom ....Climate Change Projections and Policy Design Under Uncertainty. The issue of climate change and policy responses is one of the most important questions facing the world today. This research develops a global framework for understanding the many complexities surrounding this issue, for undertaking projections of emissions, for evaluating alternative policy proposals and for developing new policies. In particular it will provide a framework for undertaking alternative scenarios about future economic growth and carbon emissions and attempt to quantify uncertainties. It will also focus on major developing countries such as China and India which will be critical in the future evolution of world economic activity and greenhouse emissions.Read moreRead less
Chromatin structure and pervasive transcription. This project aims to understand mechanisms that repress pervasive transcription and to identify chromatin characteristics that repress transcription initiation outside the promoter regions. Chromatin characteristics, such as position, occupancy and turnover-rate of nucleosomes, establish an elaborate genomic indexing mechanism, which defines functional units in the genome. Defects in this process increase pervasive transcription, toxic accumulatio ....Chromatin structure and pervasive transcription. This project aims to understand mechanisms that repress pervasive transcription and to identify chromatin characteristics that repress transcription initiation outside the promoter regions. Chromatin characteristics, such as position, occupancy and turnover-rate of nucleosomes, establish an elaborate genomic indexing mechanism, which defines functional units in the genome. Defects in this process increase pervasive transcription, toxic accumulation of non-coding transcripts and genomic instability. This work aims to understand eukaryotic genome organisation and may have long-term therapeutic implications for cancer and ageing-related diseases.Read moreRead less