Metabolomic Analysis And Membrane Transport Proteins In The Malaria Parasite
Funder
National Health and Medical Research Council
Funding Amount
$368,875.00
Summary
The malaria parasite is a single celled organism which invades the red blood cells of those it infects. There is no vaccine and the parasite is becoming increasingly resistant to the drugs that we have available. There is therefore an urgent need for new antimalarial strategies. Research in this area has been helped by the sequencing of the genome of the parasite. However we still don t know what most of the genes in the parasite do, and it is not a straightforward matter to find out. One of the ....The malaria parasite is a single celled organism which invades the red blood cells of those it infects. There is no vaccine and the parasite is becoming increasingly resistant to the drugs that we have available. There is therefore an urgent need for new antimalarial strategies. Research in this area has been helped by the sequencing of the genome of the parasite. However we still don t know what most of the genes in the parasite do, and it is not a straightforward matter to find out. One of the things hampering us in our efforts to develop new antimalarial drugs is our relatively poor understanding of the sorts of biochemical pathways that the parasite relies on to support its high rate of growth and replication inside the red blood cell, as well the biochemical mechanisms that enable it to becomes drug-resistant. In this study we will use a range of modern analytical techniques to carry out the first detailed survey of the biochemical composition - the so-called metabolome - of the parasite. We will investigate how this changes in response to nutrient deprivation, in response to mutations in genes which play a key role in antimalarial drug resistance and in response to changes in the expression of genes encoding proteins which we believe to be involved in the uptake of nutrients by the parasite. This project will provide us with a wealth of new information about the biochemical make-up of the parasite, and it will provide new insights into the biochemical pathways that are operating and which might be targeted with new drugs. The work is likely to provide new insights into mechanisms of antimalarial drug resistance. It will also form the basis for a strategy that is likely to be extremely useful in helping us to ascribe function to the many genes involved in the biochemistry of this important human pathogen.Read moreRead less
Element Labeling Antibodies For Bio-imaging Of Proteins: A Case Study Of Beta-amyloid In Alzheimer's Disease Mouse Models
Funder
National Health and Medical Research Council
Funding Amount
$221,136.00
Summary
This project will develop new analytical methods for quantitative in-situ imaging of beta-amyloid in mouse brains. Beta-amyloid deposition in the brain is associated with Alzheimer�s disease. It is also planned to simultaneously image metal ions, which are also implicated in the deposition of beta-amyloid. Application of these novel methods to Alzheimer�s disease mouse models will provide new knowledge and significant insights into the aetiology of Alzheimer�s disease by determining the relation ....This project will develop new analytical methods for quantitative in-situ imaging of beta-amyloid in mouse brains. Beta-amyloid deposition in the brain is associated with Alzheimer�s disease. It is also planned to simultaneously image metal ions, which are also implicated in the deposition of beta-amyloid. Application of these novel methods to Alzheimer�s disease mouse models will provide new knowledge and significant insights into the aetiology of Alzheimer�s disease by determining the relationship between amyloid proteins and metal ions.Read moreRead less
Chemical Aided Phospoproteome Sequencing With Mass Spectrometry
Funder
National Health and Medical Research Council
Funding Amount
$141,000.00
Summary
Essentially all of the body's functions from muscle contraction, energy expenditure through to appetite are controlled by a complex molecular communications system. One of the key elements involves the modification of proteins to alter their properties by adding and removing phosphate. By analysing this process in response to diet and exercise we will obtain a greater understanding of their health benefits and understand how type 2 diabetes and obesity develop at the molecular level.
Development And Application Of A Novel Ultrasensitive LC-MS Estradiol Assay
Funder
National Health and Medical Research Council
Funding Amount
$240,400.00
Summary
This project will develop a new ultrasensitive method using liquid chromatography-mass spectrometry to measure extremely low level of circulating estrogens in the bloodstream especially in mice. This will allow for the first time the ability to study the natural regulation of fertility in mice and other sub-primate mammals for which the present assay methods are not adequate.