FUNCTIONAL IDENTIFICATION OF CORTICAL AND SUBCORTICAL SITES RESPONSIBLE FOR NEUROGENIC HYPERTENSION IN HUMANS
Funder
National Health and Medical Research Council
Funding Amount
$514,644.00
Summary
Blood pressure is normally maintained at a relatively constant level through reflexes involving the brainstem, but we have recently shown that higher areas of the brain are also involved in the regulation of blood pressure in humans. Here, we will use the novel methodologies we have developed to study functional and structural changes in the brain in patients with essential and renovascular hypertension.
TNF Receptor 2 And INOS Genes In Basis Of Cardiovascular Disease
Funder
National Health and Medical Research Council
Funding Amount
$242,545.00
Summary
Cardiovascular diseases account for almost half of total deaths in Australia and other industrialized countries. Hypertesnion, coronary artery disease and diabetes are major contributing factors to mortality and morbidity. It is well known that each of these have a genetic basis, as well as having environmental influences. A key focus of reseach internationally is discovery of the molecular mechanisms involved. Our recent findings point to a role for the inducible nitric oxide synthase gene (whi ....Cardiovascular diseases account for almost half of total deaths in Australia and other industrialized countries. Hypertesnion, coronary artery disease and diabetes are major contributing factors to mortality and morbidity. It is well known that each of these have a genetic basis, as well as having environmental influences. A key focus of reseach internationally is discovery of the molecular mechanisms involved. Our recent findings point to a role for the inducible nitric oxide synthase gene (which generates nitric oxide, a potent blood vessel dilator) and tumor necrosis factor receptor 2 gene (whose product sends signals to the former gene) in heart, kidney and blood vessel diseases. We now propose to find the actual gene changes responsible and the molecules and mechanisms involved. By elucidating roles in cardiovascular physiology and pathology the importance of these for cardiovascular function will be ascertained, and may open up new avenues for treatment.Read moreRead less
Role Of Urotensin II, A Novel Vasoconstrictor Factor, In Cardiovascular Disease
Funder
National Health and Medical Research Council
Funding Amount
$196,018.00
Summary
Urotensin II (UII) is a newly discovered peptide that may play an important role in human health and disease. It has been found to be a potent constrictor (narrower) of blood vessels and therefore may be involved in diseases such as hypertension (high blood pressure) and heart failure (weak heart muscle disease). Furthermore, many other factors that constrict blood vessels have also been found to have effects on key organs, such as the heart. Our preliminary data suggests that this is also true ....Urotensin II (UII) is a newly discovered peptide that may play an important role in human health and disease. It has been found to be a potent constrictor (narrower) of blood vessels and therefore may be involved in diseases such as hypertension (high blood pressure) and heart failure (weak heart muscle disease). Furthermore, many other factors that constrict blood vessels have also been found to have effects on key organs, such as the heart. Our preliminary data suggests that this is also true of urotensin II. The proposal studies seek to determine the role of urotensin II in the : (i) periphery, by assessing contraction of forearm vessels to low doses of UII in normal volunteer subjects and patients with hypertension and heart failure; (ii) heart, by measuring expression of UII and its receptor in normal and failing human heart tissue; the UII response to experimental heart attack in the rat and in cell culture of important heart cells; (iii) general circulation, by measuring plasma levels in health and disease. The significance of this project is that if it is found that UII plays an important role in these diseases, then agents that block this system may represent a major therapeutic advance in the management of these diseases.Read moreRead less
High blood pressure affects 1 in 5 Australian adults and is a leading cause of mortality and morbidity from heart attack and stroke. The condition tends to run in families and genetic predisposition, in the face of environmental factors, leads to the elevation in blood pressure. My Lab has demonstrated the capacity of a cohort of affected hypertensive sibships we have collected to find loci for essential hypertension at a level that has achieved genome-wide statistical significance and has been ....High blood pressure affects 1 in 5 Australian adults and is a leading cause of mortality and morbidity from heart attack and stroke. The condition tends to run in families and genetic predisposition, in the face of environmental factors, leads to the elevation in blood pressure. My Lab has demonstrated the capacity of a cohort of affected hypertensive sibships we have collected to find loci for essential hypertension at a level that has achieved genome-wide statistical significance and has been published in a leading molecular genetics journal. Moreover, this previous work, which included fine-mapping after finding a suggestive locus following a scan of chromosome 1, not only demonstrated significant linkage, but also went on to compare gene markers between a different cohort of (unrelated) hypertensive subjects with 2 affected parents (and early-onset, moderate to severe hypertension) and control normotensive matched subjects with unaffected parents, to identify a likely candidate gene. This same approach will be used to complete the rest of the genome. The discovery of all of the genes for essential hypertension will be an important prelude to: (1) developing new, more effective treatments, since the gene products responsible will be able to be targetted by novel therapeutics, (2) genotyping individuals early in life in order to advise them what their risk is, and thus allow couselling about lifestyle modification, (3) more logically apply existing treatment strategies according to the volume-neural-vasoconstrctor component of the contribution to high blood pressure.Read moreRead less
Tremor is the rhythmic shaking of a body part and is a common and disabling problem seen in diseases such as Parkinson’s disease and Essential Tremor. At present there is no single diagnostic test to determine the cause of a person’s tremor. This project aims to combine the use of sensors that measure tremor and muscle activity with clinical assessment to develop new tests for reliably diagnosing and monitoring tremor, a key step to treating patients correctly and conducting future drug trials.
Regulation Of Megakaryocyte And Platelet Survival In Malignancy
Funder
National Health and Medical Research Council
Funding Amount
$536,914.00
Summary
In this grant we will investigate how blood cells called platelets are produced in normal conditions and during disease. Platelets are blood cells that stop us from bleeding when we get a cut. When too many platelets accumulate, there is an increased risk of blood clots forming. This project grant will help us learn how platelet numbers swell in response to some blood and ovarian cancers, and the mechanisms that control cell death in platelets and the cells that produce them.
The Regulation Of PI 3-kinase Second Messenger Molecules, PtdIns(3,4)P2 And PtdIns 3-P.
Funder
National Health and Medical Research Council
Funding Amount
$406,980.00
Summary
Cells respond to the external environment, hormones, and growth factors by generating messages inside the cell that send a signal to the nucleus that stimulates cell growth. One such signalling network is that produced by membrane lipids known as phosphoinositides. Enzymes that produce these signals are known as kinases. There has been considerable interest in the PI 3-kinase as the signals generated by this enzyme are increased in many human cancers. Inherited cancer syndromes have been describ ....Cells respond to the external environment, hormones, and growth factors by generating messages inside the cell that send a signal to the nucleus that stimulates cell growth. One such signalling network is that produced by membrane lipids known as phosphoinositides. Enzymes that produce these signals are known as kinases. There has been considerable interest in the PI 3-kinase as the signals generated by this enzyme are increased in many human cancers. Inherited cancer syndromes have been described that have lost the ability to switch off PI 3-kinase signals. The current project aims to investigate a recently identified enzyme called the 4-phosphatase that has the ability to terminate PI 3-kinase signals. Recent studies have shown this enzyme regulates cell growth. In addition key experiments have shown the enzyme is important as it may regulate certain strains of bacterial infection. This research proposal aims to investigate how the enzyme works to regulate these growth promoting signals. This may help us develop novel therapeutic strategies to control cell growth.Read moreRead less
A Bioinformatic Analysis And Structural Study On The Inositol Polyphosphate 5-phosphatases
Funder
National Health and Medical Research Council
Funding Amount
$421,320.00
Summary
Communication (or signaling) inside the cell enables the cell to respond to factors in its external environment, such as hormones or growth factors. The inositol phosphates and the phosphoinositides are signaling molecules that play an essential role in intracellular communication. The 5-phosphatases are able to modify these molecules and terminate, and in certain cases stimulate, signals. Failure to properly control intracellular signaling pathways may result in abnormal cell growth and cancer. ....Communication (or signaling) inside the cell enables the cell to respond to factors in its external environment, such as hormones or growth factors. The inositol phosphates and the phosphoinositides are signaling molecules that play an essential role in intracellular communication. The 5-phosphatases are able to modify these molecules and terminate, and in certain cases stimulate, signals. Failure to properly control intracellular signaling pathways may result in abnormal cell growth and cancer. Human 5-phosphatases are a complex family of enzymes: In addition to the region responsible for phosphatase activity (the catalytic domain) many members contain other protein modules . These associated domains may perform critical roles, such as regulating intracellular location and docking with other proteins. This project aims to perform a computational investigation of human 5-phosphatases and their associated domains. In particular we will search for novel phosphatases, investigate the evolutionary relationships between members of each domain family, and make testable predictions regarding the function of uncharacterized domains. This study will take advantage of data produced by the recently completed human genome project. The second aim of the project is to determine, using X-ray crystallography, the three-dimensional shape (or atomic structure) of a representative member of the 5-phosphatase family. Solving the structure of a 5-phosphatase at the atomic level is critical for understanding the nature of substrate specificity and for rational drug design.Read moreRead less