The Role Of SKAM And Sphingosine Kinase In Wound Healing
Funder
National Health and Medical Research Council
Funding Amount
$281,340.00
Summary
Many aspects of wound healing are poorly understood. We have identified a novel cellular pathway that appears critically involved in controlling wound contraction. This project aims to characterise this cellular pathway to understand the exact mechanisms whereby it controls this critical aspect of wound healing. With this information we will develop topical therapeutics to aid the wound healing process.
Pyk2: A Central Mediator Of Gonadotropin Action In Ovarian Cancer
Funder
National Health and Medical Research Council
Funding Amount
$334,053.00
Summary
Ovarian cancer generally presents at an advanced stage where 5 yr survival is less than 25%. Elevated levels of specific hormones after menopause may increase the risk of this cancer. We have shown that a protein called Pyk2 is activated in response to these hormones and may have significant roles in ovarian cancer cell migration, invasion and proliferation. This project will investigate the role of this protein, with the goal of improved therapeutics for women with ovarian cancer.
Mast Cells - Bystanders Or Instigators Of Airway Remodelling In Asthma?
Funder
National Health and Medical Research Council
Funding Amount
$623,764.00
Summary
Current asthma treatments have little effect on changes to the breathing tubes in our lungs. The tubes are thickened and stiffer, with more muscle, blood vessels, matrix and mucus. We propose that a particular inflammatory cell, called a mast cell, causes these changes to the breathing tubes and we will find out how it does that. Thus this project will establish why and how the changes to the breathing tubes happen in asthma and reveal how best to target and reverse-prevent them in the future.
Role Of PAK1 In Colorectal Cancer Growth And Metastasis Regulated By Gastrins
Funder
National Health and Medical Research Council
Funding Amount
$460,070.00
Summary
Increased level of PAK1(a protein kinase) was associated with the progression of colorectal (large bowel) cancer (CRC). Gastrin peptides are growth factors responsible for CRC development. The objective of this project is to determine the role of PAK1 in the regulation of CRC growth and metastasis by gastrin peptides. We will use cell culture, animal models and clinical samples in the program. A successful outcome will lead to the development of new CRC therapies such as inhibitors of PAK1.
Characterising The Role Of MID1 In X-linked Opitz Syndrome: Implications For CATCH22 And Related Disorders
Funder
National Health and Medical Research Council
Funding Amount
$211,527.00
Summary
Opitz syndrome is a debilitating genetic disorder which affects the normal development of many organs and tissues of the human embryo. Patients with Opitz syndrome commonly present with facial deformities (such as cleft lip and palate) as well as both genital and heart defects. Males are usually more severely affected than females although the severity of the disease can vary even amongst males of the same family. Patients can die suddenly in infancy or suffer further developmental impairment du ....Opitz syndrome is a debilitating genetic disorder which affects the normal development of many organs and tissues of the human embryo. Patients with Opitz syndrome commonly present with facial deformities (such as cleft lip and palate) as well as both genital and heart defects. Males are usually more severely affected than females although the severity of the disease can vary even amongst males of the same family. Patients can die suddenly in infancy or suffer further developmental impairment due to respiratory complications and swallowing difficulties that result from the significant facial deformities. A brighter outlook for patients is expected if early and often repeated surgical repair is undertaken to correct not only the facial deformities but also any heart and genital abnormalities. Our research laboratory has recently identified the gene that, when mutated, causes one form of Opitz syndrome. Defects in this gene account for around half the cases with the disorder. Evidence suggests that there may be a number of other genes involved in causing the remaining cases of the disease. The proposed research is aimed at investigating the molecular and developmental mechanisms that go awry as a result of the gene mutation. It is anticipated that these studies will provide valuable scientific knowledge about why some patients are more severely affected than others as well as offering clues to the identity of the genes that cause the remaining cases of Opitz syndrome. The results also have potentially important implications for the understanding of other diseases that show similar deformities. The knowledge gained from this research is expected to provide a valuable aid for effective genetic counselling (as well as the option of prenatal diagnosis) for families at risk of further affected pregnancies. This will also ultimately lead to more effective disease management and correction in the affected child.Read moreRead less
Cytoskeletal Regulation Of Adhesion Structure And Cell Movement
Funder
National Health and Medical Research Council
Funding Amount
$60,420.00
Summary
Metastatic (secondary) cancers are a frequent cause of patient mortality. Central to the development of metastasis is cell motility-movement. A key component of cell movement is the way that cells bind and release the extra-cellular matrix as they move. By understanding how the dynamics of cell interaction with the matrix are regulated, we will identify molecules that are critical to the development of metastatic cancer and thus novel targets for inhibition of metastasis.
A Mechanotransduction Apparatus To Coordinate Epithelial Collective Cell Migration.
Funder
National Health and Medical Research Council
Funding Amount
$994,596.00
Summary
Epithelial cells migrate as physically coherent collective groups, which is necessary for normal development and is disrupted as cancers progress to become invasive and spread. Collective migration requires communication so that the behaviour of individual cells is properly coordinated. In this project we investigate how the transmission of physical force between cells allows them to communicate; and test how its disruption contributes to cancer invasion.
Elucidation Of Signalling Enzymes Regulating The Small GTPase RhoA
Funder
National Health and Medical Research Council
Funding Amount
$226,320.00
Summary
Many normal and pathological processes in the human body depend on the ability of cells to attach to a biological surface (adhesion), spread out, or move to another site (migration). Examples of biological processes that require such events include the division and arrangement of cells in a developing embryo, or the ability of cancer cells to spread (metastasise). A driving force behind the attachment or movement of cells is their ability to rearrange a scaffolding called the cytoskeleton. The c ....Many normal and pathological processes in the human body depend on the ability of cells to attach to a biological surface (adhesion), spread out, or move to another site (migration). Examples of biological processes that require such events include the division and arrangement of cells in a developing embryo, or the ability of cancer cells to spread (metastasise). A driving force behind the attachment or movement of cells is their ability to rearrange a scaffolding called the cytoskeleton. The cytoskeleton is similar to the skeleton of the human body, in that it acts to maintain cell shape and rigidity. However, it is also actively reorganised to participate in many cellular processes, including cell attachment and movement. By furthering our understanding of how the cytoskeleton is rearranged, this will provide important insights not only into the basics of cell behaviour, but will also have important implications for a number of human disease states. This proposal aims to investigate mechanisms that regulate the reorganisation of the cytoskeleton. It is well established that the rearrangement of this scaffolding, in many different types of cells, is controlled by a family of proteins called the Rho family of small GTPases. One of the members of this family, RhoA, has a specific role in controlling cell attachment, and interestingly, has been implicated in the invasive and metastatic properties of human tumour cells. We have recently identified a protein that is responsible for controlling the activation of RhoA. This proposal aims to further our understanding of how this protein regulates RhoA, and therefore cell attachment and movement. Given that cell attachment and movement are important events contributing to the spread of tumours, this study may provide important insight into alternative approaches of controlling cell movement, and ultimately malignant progression.Read moreRead less