Molecular Regulation Of Blood Cell Production And Function
Funder
National Health and Medical Research Council
Funding Amount
$18,333,174.00
Summary
The blood-forming system is an intricately controlled balance of cell proliferation, maturation and functional activity that is essential for oxygen transport throughout the body, blood clotting, and effective immune responses. Defining the genes and molecules that orchestrate blood cell production and function is crucial, not only for understanding the role of blood in health, but for establishing the bases of blood cell disorders such as autoimmunity and leukaemia, and for devising new clinica ....The blood-forming system is an intricately controlled balance of cell proliferation, maturation and functional activity that is essential for oxygen transport throughout the body, blood clotting, and effective immune responses. Defining the genes and molecules that orchestrate blood cell production and function is crucial, not only for understanding the role of blood in health, but for establishing the bases of blood cell disorders such as autoimmunity and leukaemia, and for devising new clinical strategies for fighting these lethal diseases. This program is conducted by a large, established team of investigators that have made world-class contributions to understanding blood cell formation and function for more than 30 years. Their work established the modern era of molecular haematology via discovery and analysis of blood cell hormones (colony-stimulating factors or CSFs), their receptors and intracellular mediators, which resulted in development of treatments for millions of cancer patients. The program is a multidisciplinary, team approach to fundamental biological questions with a focus on potential clinical and commercial outcomes involving collaborations with clinical medicine and the pharmaceutical industry. Research will focus on meshing novel genetic approaches in mice with translation studies in humans to identify new validated targets for therapeutic intervention in blood cell diseases, as well as building on the team s expertise in cytokine action with emphasis on the actions of the suppressor of cytokine signalling (SOCS) molecules, a key family of proteins that controls cytokine actions.Read moreRead less
Detection Of Susceptibility Genes For Multiple Sclerosis
Funder
National Health and Medical Research Council
Funding Amount
$589,073.00
Summary
Multiple sclerosis is one of the most common chronic diseases of the nervous system. It usually starts in young adulthood and continues with episodes of severe disability from which partial recovery leads in many patients to difficulties with walking, balance, speech, bladder control and other neurologic functions. The disease inflicts a severe burden on both patients and the community. There is currently no preventive treatment and therapy is expensive (interferon at $20,000 p.a.) and of limite ....Multiple sclerosis is one of the most common chronic diseases of the nervous system. It usually starts in young adulthood and continues with episodes of severe disability from which partial recovery leads in many patients to difficulties with walking, balance, speech, bladder control and other neurologic functions. The disease inflicts a severe burden on both patients and the community. There is currently no preventive treatment and therapy is expensive (interferon at $20,000 p.a.) and of limited benefit in stopping further damage and of no benefit in reversing existing damage. New treatments will come through a full understanding of how the immune system attacks the brain to cause MS. There is a strong inherited component in MS and the discovery of the genes responsible should speed up the quest to understand the cause of the disease. The proposed studies involve international collaboration co-ordinated from Cambridge University, UK, in which the entire human genome will be screened looking for the MS genes using world s best available technology. Funding of this grant will allow Australia an equal seat at the table for this collaboration involving 17 countries. No individual country can recruit enough patients and hence this international effort is essential. It is expected that the understanding of the cause of MS will lead to new treatments that are effective and with low side effects.Read moreRead less
Inhibition Of Retinoblastoma Protein Degradation By Interaction With The Serpin PAI-2 Via A Novel Consensus Motif
Funder
National Health and Medical Research Council
Funding Amount
$463,500.00
Summary
Plasminogen activator inhibitor-2 (PAI-2) has previously been shown to inhibit the activity of enzymes outside the cell that are involved in blood clotting and cell migration. We have discovered that this activity is probably not the major role of PAI-2. PAI-2 also has a function inside cells that protect and increases the activity of an important tumour suppressor protein called the retinoblastoma tumour suppressor protein (Rb). Rb is involved in many cellular functions such as, cell death, cel ....Plasminogen activator inhibitor-2 (PAI-2) has previously been shown to inhibit the activity of enzymes outside the cell that are involved in blood clotting and cell migration. We have discovered that this activity is probably not the major role of PAI-2. PAI-2 also has a function inside cells that protect and increases the activity of an important tumour suppressor protein called the retinoblastoma tumour suppressor protein (Rb). Rb is involved in many cellular functions such as, cell death, cell differentiation, cell growth, and most importantly prevention of cancer development. Rb is attacked and destroyed by several viruses which causes cells to become cancerous. This grant seeks to fully understand how PAI-2 protects and interacts with Rb. We have already found a new site on Rb to which PAI-2 binds. This site is also used by other proteins in the cell as well as disease causing virus proteins. Examples of these proteins are BRCA1, a protein involved in breast cancer development, and EBNA6, a protein from Epstein Barr virus that causes glandular fever and tumours. We have also found, and seek to explore further, how PAI-2 reverses the activities of the cervical cancer causing proteins of the human papilloma virus. Although at an early stage, these studies may lead to the development of new therapeutic drugs based on PAI-2 for the treatment of various types cancers or warts caused by HPV. Analysing the activity of PAI-2 inside cells will have implications for understanding much of the confusing scientific literature on PAI-2 and will provide a better comprehension of the role of PAI-2 in inflammation, cell differentiation, wound healing and cancer. For example it has long been known that the presence of PAI-2 in cancerous tumours is linked with a better prognosis, an activity that can now be understood in terms of the PAI-2 interaction with Rb. This new understanding may lead to the development of PAI-2 based prognostic assays for cancer.Read moreRead less
We propose an integrated program of bioinformatics research and capacity building focused on functional genomics. We will address research problems in the analysis and interpretation of high-volume genomic and proteomic data, in comparative sequence analysis, in determining the relation between genotype and phenotype using mutagenesis screens, and in making effective use of single nucleotide polymorphisms. Our capacity building will focus on the research training of students (undergraduates thro ....We propose an integrated program of bioinformatics research and capacity building focused on functional genomics. We will address research problems in the analysis and interpretation of high-volume genomic and proteomic data, in comparative sequence analysis, in determining the relation between genotype and phenotype using mutagenesis screens, and in making effective use of single nucleotide polymorphisms. Our capacity building will focus on the research training of students (undergraduates through the UROP scheme, honours and PhD) and postdoctoral scholars.Read moreRead less
I am a developmental cell biologist and molecular geneticist focusing on mechanisms controlling cell proliferation and modelling the development of cancer in the vinegar fly, Drosophila.
Investigation Of Cancer Predisposition In Heterozygous Carriers Of The ATM
Funder
National Health and Medical Research Council
Funding Amount
$822,750.00
Summary
Individuals with the human genetic disorder ataxia-telangiectasia are prone to cancer development and so also are their parents and relatives (carriers) who have one defective copy of the gene. This is a multisystem disease that is also characterized by neurodegeneration, immunodeficiency, infertility and extreme sensitivity to radiation. This project is designed to generate a mouse model of this disease to investigate cancer susceptibility in carriers of the defective gene. The specific mutatio ....Individuals with the human genetic disorder ataxia-telangiectasia are prone to cancer development and so also are their parents and relatives (carriers) who have one defective copy of the gene. This is a multisystem disease that is also characterized by neurodegeneration, immunodeficiency, infertility and extreme sensitivity to radiation. This project is designed to generate a mouse model of this disease to investigate cancer susceptibility in carriers of the defective gene. The specific mutation to be introduced into the mouse has been described in a patient with breast cancer and it has been shown to interfere with the normal function of the ATM protein. The mouse model is expected to reflect closely the human disease and will provide the opportunity to monitor heterozygous carriers for the development of cancer. This model is expected to confirm the observations in humans and provide a resource to understand susceptibility to develop cancer. The model will also address the issue of exposure to low dose radiation and risk of developing cancer.Read moreRead less
Mechanisms Underlying Generation Of Febrile Seizures In Mouse Models Of Human Familial Epilepsy
Funder
National Health and Medical Research Council
Funding Amount
$304,559.00
Summary
Febrile Seizures (FS) affect 3% of children aged 0.5 - 6 yrs and have been proposed as an indicator of severe forms of adult generalized epilepsy. Mechanisms underlying FS generation are unknown although studies of Australian families suffering from epilepsy have linked 2 genes to FS. We have generated mice expressing these 2 genes. Aims and Outcomes: to investigate events triggering FS which will provide important insights into why FS occurs in children. (NB: CIA 2 yr career interruption)
Genomic And Functional Analyses Of A Novel Gene Implicated In Type 1 Diabetes
Funder
National Health and Medical Research Council
Funding Amount
$732,439.00
Summary
We have recently discovered a novel gene that contributes to the development of juvenile diabetes. Unfortunately, very little is known about the function of this gene. To better understand how this gene affects the immune system and contributes to disease, we have generated a unique mouse strain that has a dysfunctional copy of this gene. These mice will enable us to characterise this gene and potentially establish a new area of research in diabetes prevention.
I am a developmental biologist investigating the molecular mechanisms regulating prenatal development and stem cell populations in the adult. I am studying defects in essential developmental processes leading to severe congenital disorders such as mental