Exploring The Function Of Breast Cancer-Associated Variants In Long Non-Coding RNAs
Funder
National Health and Medical Research Council
Funding Amount
$501,585.00
Summary
Recent studies have identified regions within the human genome in which DNA sequence variations are associated with an increased risk of breast cancer. Several of these regions do not contain any known protein coding genes, suggesting that non-protein coding genes could be responsible for the associated risk. The aim of this proposal is to identify and characterise these non-coding genes. Understanding how sequences variations in these novel genes contribute to breast cancer will provide novel a ....Recent studies have identified regions within the human genome in which DNA sequence variations are associated with an increased risk of breast cancer. Several of these regions do not contain any known protein coding genes, suggesting that non-protein coding genes could be responsible for the associated risk. The aim of this proposal is to identify and characterise these non-coding genes. Understanding how sequences variations in these novel genes contribute to breast cancer will provide novel avenues for therapy.Read moreRead less
Inherited Genetic Variants As Prognostic Markers For Colorectal Cancer
Funder
National Health and Medical Research Council
Funding Amount
$623,972.00
Summary
Bowel cancer is a major health burden. Surgical resection of the primary cancer is often possible at diagnosis, yet in many patients the cancer will recur. Together with mutations, inherited genetic variants influence the rate of bowel cancer growth. This study aims to identify inherited variants predictive of cancer recurrence. Improved prediction of recurrence will permit more targeted use of clinical interventions, tailored to the individual patient, ultimately improving patient survival.
Kallikrein Gene Variants In Prostate Cancer: In-depth Association And Functional Studies
Funder
National Health and Medical Research Council
Funding Amount
$302,123.00
Summary
The number of men diagnosed with prostate cancer varies substantially between races, indicating a role of genetics in prostate cancer development. Recently, genetic variations in the PSA gene have been related to prostate cancer risk. I aim to elucidate the molecular mechanism of this correlation and to systematically investigate the association of other novel genetic variations in PSA and related genes with prostate cancer risk in a search of sensitive clinical biomarkers for prostate cancer di ....The number of men diagnosed with prostate cancer varies substantially between races, indicating a role of genetics in prostate cancer development. Recently, genetic variations in the PSA gene have been related to prostate cancer risk. I aim to elucidate the molecular mechanism of this correlation and to systematically investigate the association of other novel genetic variations in PSA and related genes with prostate cancer risk in a search of sensitive clinical biomarkers for prostate cancer diagnosis and prognosis.Read moreRead less
Population Based Genetic Testing For High-risk Breast And Ovarian Cancer Predisposition Genes
Funder
National Health and Medical Research Council
Funding Amount
$1,112,985.00
Summary
Inherited mutations in BRCA1 and BRCA2 confer a very high risk of breast and ovarian cancer. Importantly, once carriers are identified, effective strategies are available that can dramatically reduce the risk of cancer. We will perform genetic testing of a healthy western population to identify breast/ovarian cancer genes before the women develop cancer. Population-based screening could significantly reduce the incidence of these diseases.
Identification And Molecular Characterisation Of High-risk Premalignant Breast Lesions
Funder
National Health and Medical Research Council
Funding Amount
$560,382.00
Summary
Understanding the full repertoire of genetic events that underlie the development of breast cancer may allow development of prevention strategies. This study will analyse genetic data of benign breast lesions that may be non-obligate precursors of breast cancer. Importantly, clinical management of these lesions is difficult. A reliable method of predicting the risk of progression to cancer would be a significant advance, with benefits to individual patients and also the health system.
An International Whole Genome Study To Definitively Map Heritable Risk In Sarcomas
Funder
National Health and Medical Research Council
Funding Amount
$836,550.00
Summary
We want to understand why some people get sarcomas, and others do not. This is likely due to genetic causes, because these cancers affect the young. We now have the tools to address this question, and have created the largest and best characterised study of sarcoma families in the world upon which to apply these tools. This project will create an enduring foundation for research into the genetic basis of sarcomas for the next 20 years.
The Mutational Landscape Of Melanoma In Adolescents And Young Adults
Funder
National Health and Medical Research Council
Funding Amount
$314,644.00
Summary
Melanoma is the most common cause of cancer mortality in 20-34 year olds and many traditional treatments, chemotherapy and radiotherapy cause tremendous long-term damage to growing bodies. Fortunately new drugs that target the genetic mutations are proving effective. Unfortunately, the genomic mutation specific to young melanoma patients are unknown. This study aims to characterising the genomic mutations of young melanoma patients, leading to the discovery of innovative treatment options.
Stress-induced Genomic Instability As A Driver Of Adaptive Responses In Human Cancer Cells
Funder
National Health and Medical Research Council
Funding Amount
$690,426.00
Summary
Growing experimental evidence suggests human cancer cells use evolutionary conserved programs to regulate their mutation rates in response to pharmacological agents, accelerating adaptation and the emergence of resistance. The purpose of our study is to identify the common molecular pathways and genetic mechanisms driving the regulation of mutation rates. Targeting of these pathways using a new generation of “anti-evolution” drugs is an attractive possibility for novel therapeutic approaches.
I am interested in using new technologies to understand how and why cancers develop. I am focused on sarcomas, cancers that particularly affect the young, but rare and neglected cancers more generally. I want to use the knowledge we can gain from basic research to develop new models of clinical care, that will reduce the morbidity and mortality from these deadly diseases.