Investigating The Aetiopathogenic Role Of Autoantibodies Against The M1 Muscarinic Acetylcholine Receptor In Patients With First Episode Of Schizophrenia
Funder
National Health and Medical Research Council
Funding Amount
$830,986.00
Summary
Previously we have found that a proportion of patients with schizophrenia have elevated levels of antibodies that target one of the neurotransmitter receptors, the M1 muscarinic acetylcholine receptor, and that those patients who have the highest levels of antibodies tend to have more severe manifestations of some of the symptoms of schizophrenia. In this project, we will try to confirm this relationship, and also investigate further how this antibodies might be able to worsen specific symptoms.
The Cell Biology Of Macropinocytosis Pathways In Antigen Presenting Cells
Funder
National Health and Medical Research Council
Funding Amount
$545,216.00
Summary
Cells internalise molecules in membrane-bound vesicles, a process known as endocytosis. This internalisation pathway is essential for many biological events, including the ability to capture foreign antigens and mount an effective immune response. Some internalisation pathways can be switched on by signals received at the cell surface. This study will identify the molecules that control antigen capture in immune cells. This knowledge is important for the development of better vaccines.
Sorting Nexins And Their Role In Endosomal Trafficking
Funder
National Health and Medical Research Council
Funding Amount
$331,000.00
Summary
Cells are able to internalise molecules via membrane-bound vesicles, a process known as endocytosis. Endocytosis is fundamental for many cellular processes, including receptor signalling, uptake of many essential nutrients and the ability to mount an effective lymphocyte response to foreign antigens. Once internalised, cargo is then sorted to different intracellular destinations of the endosomal transport system. The ultimate destination depends on the particular cargo molecule. The importance o ....Cells are able to internalise molecules via membrane-bound vesicles, a process known as endocytosis. Endocytosis is fundamental for many cellular processes, including receptor signalling, uptake of many essential nutrients and the ability to mount an effective lymphocyte response to foreign antigens. Once internalised, cargo is then sorted to different intracellular destinations of the endosomal transport system. The ultimate destination depends on the particular cargo molecule. The importance of the endosomal transport system is also highlighted by the discovery that many human diseases, including various cancers, lysosomal storage diseases and hypercholesterolemia, are linked to defects in trafficking along the endocytic pathway. Furthermore, a number of viral pathogens, such as HIV, and toxins, such as shiga toxin, exploit the endosomal system to gain entry into a cell. Understanding the molecular details of the sorting events within the endosomal system is necessary to be able to consider therapeutic manipulation of the trafficking of specific cargo molecules. The study seeks to understand the molecular details of the endosomal sorting machinery, knowledge that will underpin future efforts to develop drugs to manipulate movement of proteins within the endosomal system. In the long term, this could allow for the manipulation of a variety of cellular functions including the inhibition of proliferative signals in tumour cells.Read moreRead less
The Molecular Basis Of HLA-linked Drug Hypersensivity Reactions
Funder
National Health and Medical Research Council
Funding Amount
$683,040.00
Summary
Adverse drug reactions are one of the leading causes of death in hospitalised patients. We have discovered a new mechanism that links these reactions to recognition of drug induced changes in immunological self, resulting from interactions of drugs with immune receptors. This project probes the generality of this mechanism by examining the basis of life threatening reactions to drugs used to treat epilepsy (carbamazepine), gout (allopurinol), HIV (Nevirapine) and towards aspirin a commonly used ....Adverse drug reactions are one of the leading causes of death in hospitalised patients. We have discovered a new mechanism that links these reactions to recognition of drug induced changes in immunological self, resulting from interactions of drugs with immune receptors. This project probes the generality of this mechanism by examining the basis of life threatening reactions to drugs used to treat epilepsy (carbamazepine), gout (allopurinol), HIV (Nevirapine) and towards aspirin a commonly used pharmaceutical.Read moreRead less
Understanding The Complexity Of Antigen Presentation
Funder
National Health and Medical Research Council
Funding Amount
$774,540.00
Summary
I have developed and established the use of mass spectrometry to identify and quantitate ligands of antigen presenting molecules to understand the breadth of immune responses in a variety of human disease states including autoimmunity, cancer, infection and allergy. By embedding the technology in disease focussed research programs I will define the molecular bases of these diseases and the important immunological targets that will provide new avenues for therapeutic development and vaccines.
Investigation Of Small Molecule Interactions With The Human Leukocyte Antigen And Their Role In Non-infectious Disease
Funder
National Health and Medical Research Council
Funding Amount
$316,449.00
Summary
The Human Leukocyte Antigens (HLA) play a key role in the immune system helping the body differentiate healthy from diseased cells. Numerous autoimmune diseases and adverse drug reactions are associated with specific HLA variants. This study seeks to unlock the mechanisms behind these diseases, investigating how small molecules including drugs interact with the HLA to make healthy body cells seem foreign. This research has the potential to inform strategies for disease avoidance and management.
Antigen Presentation During HLA B27 Associated Auotimmune Disease
Funder
National Health and Medical Research Council
Funding Amount
$715,365.00
Summary
Ankylosing spondylitis is a debilitating arthritic disease, susceptibility to which is conferred by genes of the immune system, particularly HLA-B27, and following gastrointestinal infection. Using mass spectrometry we will identify bacterial peptides bound to HLA-B27 on infected cells that may trigger an autoimmune response. Defining the self peptides that remain the targets of autoimmunity will unravel the molecular and cellular mechanisms if disease and identify peptides for immunotherapy.