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R F Newbold

Publications and source records attributed to R F Newbold.

59 records · Page 4Linked to original sources

Fibroblast immortality is a prerequisite for transformation by EJ c-Ha-ras oncogene.

The established mouse cell line NIH 3T3 has been used with considerable success over the past three years as the basis of an in vitro transformation assay for demonstrating the presence of transfectable transforming genes in the DNA of certain human and rodent tumour cells (for review see ref. 1). In the case of the human bladder carcinoma cell lines EJ and T24, this approach has led to the molecular cloning of a transforming gene which is closely related to the rat-derived Harvey sarcoma virus oncogene, v-Ha-ras. A single point mutation, which distinguishes these genes from their normal human homologue (c-Ha-ras1), is thought to be solely responsible for their transforming potential. However, carcinogenesis in both humans and laboratory rodents is a multi-stage process (reviewed in ref. 11) of which the NIH 3T3 cell, already partly transformed, may represent only the penultimate stage. We therefore chose to examine the transforming effects of the EJ oncogene in a hamster fibroblast system originally developed in our laboratory to study stages in carcinogen-induced malignant transformation of normal diploid cells. We show here that EJ c-Ha-ras-1 lacks complete transforming activity when transfected into normal fibroblasts which have a limited lifespan, but can fully transform fibroblasts that have been newly 'immortalized' by carcinogens.

Animals↗

BRCA1 germline mutations in Cypriot breast cancer patients from 26 families with family history.

Germline mutations in the BRCA1 gene are causative for a variable number of hereditary breast/ovarian cancers. The data presented in this study are based on genetic analysis of the BRCA1 gene in 49 DNA samples from breast cancer patients with a positive family history. A combination of manual direct DNA sequencing and SSCP analysis was used to screen the entire coding region of BRCA1. Overall 13 variants were detected which included 5 missense mutations, 3 polymorphisms and 5 intronic changes. Further genetic analysis of the 13 variants was carried out using 50 control DNA samples. Our results showed that 12 out of the 13 variants detected in the DNA of the patients group, were also present in the control group. It appears that the Greek Cypriot families studied so far have an unexpectebly low frequency of deleterious mutations in the BRCA1 gene. This is the first report on BRCA1 mutation analysis in Cyprus.

Adult↗

WNT5A expression in human breast cancer.

UNLABELLED: The Wnt family encodes secreted signaling molecules involved in cell adhesion and, by implication, cell growth. Wnt5a has been shown to behave as a putative oncogene and also as a tumour suppressor gene. This is a reflection of its role within a multi-step pathway and in the variety of ways in which its production can be stimulated or switched off. Wnt genes can be functionally separated into two classes; those that activate the canonical Wnt/beta-catenin pathway and those that activate the Wnt/Ca++ pathway. Wnt5a signals through frizzled receptors and, depending upon which frizzled receptor is present, may activate either pathway. Therefore the observed function of Wnt5a is entirely dependent upon its context, hence the confusion over its role in tumorigenesis. This study examines Wnt5a mRNA expression using RT-PCR in human breast cancer. MATERIALS AND METHODS: One hundred and twenty malignant breast tumours and 33 normal breast tissues were analysed. The levels of transcription of Wnt5a were determined using real-time quantitative PCR. Levels of expression were analysed against staging, nodal involvement, grade, distant metastasis and survival over a 6-year follow-up period. RESULTS: Levels of Wnt5a mRNA were lower in tumours than in normal tissue (mean values: 107 vs. 62.7). They fell further with increasing stage using the Nottingham Prognostic Index. This became statistically significant when NPI3 was compared to normal tissue (p=0.043, t-test). There was a trend towards lower levels of Wnt5a in those with progressive disease, however, this did not reach statistical significance. In patients with ER-negative disease, lower levels of Wnt5a were significantly associated with a worse clinical outcome (p=0.016). CONCLUSION: There is a trend for mRNA levels to be lower in cancerous tissue and lower still in those showing more aggressive behaviour. This is consistent with the hypothesis that Wnt5a is a tumour suppressor gene with potential clinical applications.

Breast Neoplasms↗

hTERT mRNA expression is associated with a poor clinical outcome in human breast cancer.

BACKGROUND: Telomerase is a ribonucleoprotein enzyme that synthesises telomeres after cell division and maintains chromosomal length and stability thus leading to cellular immortalisation. hTERT (human telomerase reverse transcriptase) gene is the rate-limiting determinant of telomerase reactivation. The present study aims to quantitatively measure the expression of hTERT mRNA in human breast cancer, examine the association between hTERT and the clinicopathological characteristics of the cancer specimens including the Nottingham Prognostic Index (NPI) and to explore the relationship between hTERT expression and clinical outcome. MATERIALS AND METHODS: RNA was extracted from 116 breast carcinomas and 31 matched adjacent non-cancerous tissue (ANCT). hTERT mRNA expression was estimated by reverse transcriptase-PCR (RT-PCR) and Taqman methodology. RESULTS: hTERT mRNA was present in all of the cancerous specimens (mean=0.1701, median=0.0205) and most ANCT specimens with levels being 2.6 times higher in the cancerous tissue than in ANCT (mean=0.156 vs. 0.68, p=0.18). The mean mRNA levels increased with NPI scores (0.0816 for NPI 1, 0.1186 for NPI 2 and 0.68 for NPI 3), however this failed to reach statistical significance (P-values= 0.33 for NPI 1 vs. 2, 0.27for NPI2 vs. 3 and 0.24 for NPI 1 vs. 3). hTERT levels also increased with increasing tumour's grade (mean= 0.0459 for grade 1, 0.111for grade 2, and 0.27 for grade 3) but this trend did not reach a statistical significance. Low levels of hTERT were associated with mucinous carcinoma compared with ductal (p=0.023) and lobular (p=0.021) types. hTERT mRNA levels were higher in patients who had recurrent disease or died from breast cancer compared with those who remained alive without disease after a median follow up of 6 years (p=0.0026). CONCLUSION: High hTERT mRNA levels are associated with a poor clinical outcome in human breast cancer and should be included as a prognostic marker in future validation studies.

Breast Neoplasms↗