The Role Of Non-classical MHC Class I Molecules In Adaptive Immunity
Funder
National Health and Medical Research Council
Funding Amount
$443,834.00
Summary
Specialised proteins called MHC class Ia molecules (MHC-Ia) stimulate killer T cells to lyse virus infected cells. In contrast, the function of the closely related MHC-Ib is uncertain. Recent findings have demonstrated that MHC-Ib can also be recognised by T cells and this interaction is important in the control of viral infections. However, despite the similarity to MHC-Ia, it is unclear how this interaction occurs. This project aims to investigate how killer T cells recognise MHC-Ib molecules.
Assembly Of Mitochondrial Respiratory Chain Complexes And Their Defects Associated With Disease.
Funder
National Health and Medical Research Council
Funding Amount
$413,431.00
Summary
Mitochondrial “respiratory chain complexes are multi-subunit assemblies that function to produce most of our cellular energy. Defects in the assembly of these complexes can result in mitochondrial disease, including infant death. The assembly of the respiratory complexes is a complicated procedure and the mechanisms involved in disease remain elusive. This work will aid in our understanding of how these protein complexes are built and how defects in their assembly can cause disease.
Asthma Genetics: Dissecting The Missing Heritability And Biology
Funder
National Health and Medical Research Council
Funding Amount
$451,716.00
Summary
The goal of this application is to apply state-of-the-art technologies to (1) identify genes that increase the risk of developing asthma and (2) help translate this information into knowledge that can be used to improve disease management. I will achieve this by analysing data generated by the Australian Asthma Genetics Consortium and international collaborators.
Dissecting Genetic Variation For Human Complex Diseases And Traits
Funder
National Health and Medical Research Council
Funding Amount
$135,821.00
Summary
Understanding the pattern of inheritance for human common diseases such as cancers, obesity, diabetes and mental illness, is of key importance for disease diagnosis, treatment and prevention. In this project, we will develop statistical methods and software tools to analyse DNA and clinical data to better understand the genetic basis of human common diseases and to predict a person�s risk of developing disease.
The Structure And Composition Of The T-Cell Receptor-CD3 Complex
Funder
National Health and Medical Research Council
Funding Amount
$419,180.00
Summary
My research will use cutting edge imaging techniques to provide a fundamental advance in our understanding of how foreign viruses and pathogens trigger the immune system. Gaining a greater understanding of these central events will facilitate the design of novel therapies to treat immune associated disorders such as transplant rejection, autoimmune disease and some cancers.
Strengthening Primary Health Care Systems For Under-served Populations Worldwide
Funder
National Health and Medical Research Council
Funding Amount
$476,728.00
Summary
The World Health Organization has identified the strengthening of primary health care systems as a priority area for global health. My research program focusses on identifying, developing and testing innovative strategies to improve access to high quality primary health care for under-served populations in Australia (particularly for Aboriginal and Torres Strait Islander communities), rural India, China and the USA.
Discovering The Genetic Causes Of Congenital Heart Disease Using Systems Biology
Funder
National Health and Medical Research Council
Funding Amount
$419,180.00
Summary
Congenital heart disease (CHD) affects one in one hundred live-born babies, representing a significant health burden in Australia and worldwide. My research team is using state-of-the-art DNA sequencing technology to sequence the entire genome of hundreds of patients with CHD and their family members. My research program develops fast and reliable computer software to accelerate the discovery of the genetic causes of CHD, and make personalised genome-based medicine a reality.
Novel Health Data Systems For Translation And Impact
Funder
National Health and Medical Research Council
Funding Amount
$425,048.00
Summary
Health research seeks to benefit society by improving health. However, there is a gap between the findings of research and healthcare practice. New systems are beginning to change the way research data are used to improve health outcomes. I am an HIV specialist developing and evaluating several new data systems and my vision for the next four years is to use these to improve the translation of health research into practice and policy for the benefit of people with HIV and society at large.
Exploring And Exploiting Novel Therapeutic Avenues In Mesothelioma
Funder
National Health and Medical Research Council
Funding Amount
$425,048.00
Summary
Mesothelioma is a fatal cancer of the lungs. It rapidly grows and invades surrounding tissues such as the ribcage, causing severe shortness of breath and pain. Chemotherapy has limited effect and although immunotherapy appears promising, most patients do not respond. I will investigate why mesothelioma is so invasive; how to improve the response to immunotherapy and how to best combine chemotherapy and immunotherapy. I aim to develop new treatments that will benefit patients with mesothelioma.