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Dive into the research topics where Paula M. Gilmore is active.

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Featured researches published by Paula M. Gilmore.


Oncogene | 2001

BRCA1 and GADD45 mediated G2/M cell cycle arrest in response to antimicrotubule agents

Paul B. Mullan; Jennifer E. Quinn; Paula M. Gilmore; Stewart McWilliams; Heather N. Andrews; Celine Gervin; Nuala McCabe; Sarah McKenna; Pat White; Young-Han Song; Shyamala Maheswaran; Edison T. Liu; Daniel A. Haber; Patrick G. Johnston; D. Paul Harkin

BRCA1 is a tumour suppressor gene implicated in the predisposition to early onset breast and ovarian cancer. We have generated cell lines with inducible expression of BRCA1 to evaluate its role in mediating the cellular response to various chemotherapeutic drugs commonly used in the treatment of breast and ovarian cancer. Induction of BRCA1 in the presence of Taxol and Vincristine resulted in a dramatic increase in cell death; an effect that was preceded by an acute arrest at the G2/M phase of the cell cycle and which correlated with BRCA1 mediated induction of GADD45. A proportion of the arrested cells were blocked in mitosis suggesting activation of both a G2 and a mitotic spindle checkpoint. In contrast, no specific interaction was observed between BRCA1 induction and treatment of cells with a range of DNA damaging agents including Cisplatin and Adriamycin. Inducible expression of GADD45 in the presence of Taxol induced both G2 and mitotic arrest in these cells consistent with a role for GADD45 in contributing to these effects. Our results support a role for both BRCA1 and GADD45 in selectively regulating a G2/M checkpoint in response to antimicrotubule agents and raise the possibility that their expression levels in cells may contribute to the toxicity observed with these compounds.


Cancer Research | 2004

BRCA1 Interacts with and Is Required for Paclitaxel-Induced Activation of Mitogen-Activated Protein Kinase Kinase Kinase 3

Paula M. Gilmore; Nuala McCabe; Jennifer E. Quinn; Richard D. Kennedy; Julia J. Gorski; Heather N. Andrews; Stewart McWilliams; Michael Carty; Paul B. Mullan; W. Paul Duprex; Edison T. Liu; Patrick G. Johnston; D. Paul Harkin

BRCA1 has been implicated in a number of cellular processes, including transcriptional regulation, DNA damage repair, cell cycle arrest, and apoptosis. We identified mitogen-activated protein kinase (MAPK) kinase kinase 3 (MEKK3), an upstream regulator of the c-Jun NH2-terminal kinase/stress-activated protein kinase and p38/MAPK pathways, as a novel BRCA1-interacting protein in a yeast two-hybrid screen and confirmed the interaction by coimmunoprecipitation in mammalian cells. Deletion mapping demonstrated that amino acids 1611–1863 are required to mediate the interaction with MEKK3 in yeast. BRCA1 disease-associated mutations abrogated the interaction in yeast, and BRCA1 failed to interact with MEKK3 in BRCA1 mutant HCC1937 breast cancer cells. We demonstrate that small interfering RNA-based inhibition of endogenous BRCA1 reduces MEKK3 kinase activity and conversely that inducible expression of BRCA1 activates MEKK3 and p38/MAPK. Finally, we demonstrate using complementary approaches that BRCA1 is required for paclitaxel-induced activation of MEKK3. These data indicate that BRCA1 is a key regulator of the paclitaxel-induced stress response pathway and suggest that the ability of BRCA1 to associate with, and mediate the activation of, MEKK3 represents a potential mechanism through which this pathway is regulated.


Biochemical Society Transactions | 2001

Uncovering BRCA1-regulated signalling pathways by microarray-based expression profiling

Paul B. Mullan; Stewart McWilliams; John A. Quinn; Heather N. Andrews; Paula M. Gilmore; Nuala McCabe; S. McKenna; Denis Paul Harkin

The introduction of microarray technology to the scientific and medical communities has dramatically changed the way in which we now address basic biomedical questions. Expression profiling using microarrays facilitates an experimental approach where alterations in the transcript level of entire transcriptomes can be simultaneously assayed in response to defined stimuli. We have used microarray analysis to identify downstream transcriptional targets of the BRCA1 (Breast Cancer 1) tumour-suppressor gene as a means of defining its function. BRCA1 has been implicated in the predisposition to early onset breast and ovarian cancer and while its exact function remains to be defined, roles in DNA repair, cell-cycle control and transcriptional regulation have been implied. In the current study we have generated cell lines with tetracycline-regulated, inducible expression of BRCA1 as a tool to identify genes, which might represent important effectors of BRCA1 function. Oligonucleotide array-based expression profiling identified a number of genes that were upregulated at various times following inducible expression of BRCA1 including the DNA damage-responsive gene GADD45 (Growth Arrest after DNA Damage). Identified targets were confirmed by Northern blot analysis and their functional significance as BRCA1 targets examined.


Cancer Research | 2003

BRCA1 Functions as a Differential Modulator of Chemotherapy-induced Apoptosis

Jennifer E. Quinn; Richard D. Kennedy; Paul B. Mullan; Paula M. Gilmore; Michael Carty; Patrick G. Johnston; D. Paul Harkin


Gynecologic Oncology | 2005

Infrequent mutations of Archipelago (hAGO, hCDC4, Fbw7) in primary ovarian cancer

Eunice L. Kwak; Kenneth H. Moberg; Doke C. R. Wahrer; Jennifer E. Quinn; Paula M. Gilmore; Colin A. Graham; Iswar K. Hariharan; D. Paul Harkin; Daniel A. Haber; Daphne W. Bell


Biochemical Society Transactions | 2001

Role played by BRCA1 in regulating the cellular response to stress

Paula M. Gilmore; Jennifer E. Quinn; Paul B. Mullan; Heather N. Andrews; Nuala McCabe; Michael Carty; Richard D. Kennedy; Denis Paul Harkin


Gynecologic Oncology | 2005

Infrequent mutations of (, , ) in primary ovarian cancer

Eunice L. Kwak; Kenneth H. Moberg; Doke C. R. Wahrer; J. M. Quinn; Paula M. Gilmore; C. James Graham; Iswar K. Hariharan; D. Paul Harkin; Daniel A. Haber; Douglas S. Bell


Clinical Cancer Research | 2003

Identification and characterisation of a BRCA1 MAD1 protein complex.

Michael Carty; Paula M. Gilmore; Mary T. Harte; J.E. Quinn; Nuala McCabe; D. P. Harkin; Julia J. Gorski; Denis Paul Harkin


Journal of Biological Chemistry | 2002

A novel role for BRCA1 in mediating the interferon gamma antiproliferative response

Heather N. Andrews; Paul B. Mullan; Stewart McWilliams; S. Sebelova; J.E. Quinn; Paula M. Gilmore; Nuala McCabe; Amy J. Pace; Beverly H. Koller; Patrick G. Johnston; Da Haber; Paul Harkin


Clinical Cancer Research | 2000

BRCA1 mediated G2/M cell cycle arrest in response to taxol.

Paul B. Mullan; Jennifer Quinn-O'Brien; Paula M. Gilmore; Heather N. Andrews; C Gervin; Da Haber; Patrick G. Johnston; D. P. Harkin; Denis Paul Harkin

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Paul B. Mullan

Queen's University Belfast

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Nuala McCabe

Queen's University Belfast

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D. Paul Harkin

Queen's University Belfast

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Jennifer E. Quinn

Queen's University Belfast

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Denis Paul Harkin

Queen's University Belfast

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Michael Carty

Queen's University Belfast

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