To understand the genetic basis of two of the most important cancers in women, breast and ovarian cancer. The team has already identified one gene that confers a very high risk of breast cancer and may account for a large proportion of 'familial' breast cancer. Their aim is to identify additional predisposition genes and to determine their normal function in the cell, as well as the way in which they contribute to the development of cancer
Heritability And Biological Consequences Of Human Variation In Mitotic Recombination
Funder
National Health and Medical Research Council
Funding Amount
$130,906.00
Summary
Cells in our bodies constantly sustain damage to their genetic material (genes) most of which is efficiently repaired. Some is not and accumulated damage to genes in a cell can start a cancer. There are several repair mechanisms that cells possess which have evolved since the earliest life-forms. One repair mechanism homologous recombination repair will, as a minor by-product of its activity, produce an event called mitotic recombination (MR). MR causes a loss of diversity of genes and this can ....Cells in our bodies constantly sustain damage to their genetic material (genes) most of which is efficiently repaired. Some is not and accumulated damage to genes in a cell can start a cancer. There are several repair mechanisms that cells possess which have evolved since the earliest life-forms. One repair mechanism homologous recombination repair will, as a minor by-product of its activity, produce an event called mitotic recombination (MR). MR causes a loss of diversity of genes and this can contribute to cancer rather than prevent it. We have shown that the rate at which MR occurs varies very widely in humans. In this project we will devise a simple method for measuring MR, use identical and non identical twins to find if the rate of MR is inherited and finally see whether the rate of MR is associated with risk of cancer, as we expect.Read moreRead less
Somatic Retrotransposition Drives Neoplastic Mutagenesis In Glioblastoma Multiforme
Funder
National Health and Medical Research Council
Funding Amount
$667,342.00
Summary
Retrotransposons are mobile genes that copy-and-paste themselves in our genome. Previously thought to represent “junk DNA”, retrotransposons are increasingly found to play major roles in biology. In a recent landmark publication in Nature, we demonstrated that retrotransposons move in the healthy human brain. In the current study, we will use cutting-edge technologies to determine whether brain cancer can occur as a result. This will provide new perspectives of the genetic basis for cancer.
I am a molecular and cellular biologist with particular interest in understanding the regulation of DNA damage surveillance pathway and its role in the maintenance of genome stability.
As women age, the quality of their eggs decline and their chance of having a healthy baby plummets. The accumulation of DNA damage within the egg, and the reduced ability to repair this damage, may be one cause of compromised reproductive success in older women. This project will investigate the ability of eggs to repair DNA damage during maternal aging and will explore the importance of DNA repair to fertility and the transmission of high quality genetic material to their offspring.