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C. G. Nicholl, J. M. Bhatavdekar, J. Mak, S. I. Girgis, and S. Legon

ABSTRACT

Messenger RNA for rat islet amyloid polypeptide (IAPP) has been identified not only in the pancreas but also, in lesser amounts, in preparations from the stomach and dorsal root ganglia. In the stomach, insulin mRNA was not detectable, ruling out possible contamination by pancreatic tissue. Because IAPP and calcitonin gene-related peptide (CGRP) are related and CGRP is present in both stomach and dorsal root ganglia, it was possible that 'IAPP' signals were in fact due to cross-hybridization with CGRP mRNA. A second IAPP probe was constructed which does not cross-react. This probe also detected mRNA in both tissues, confirming the expression of IAPP in both tissues. The regional distribution of IAPP mRNA in the stomach did not parallel that of gastrin mRNA. IAPP mRNA was present in the antrum, centrum and pylorus and, like gastrin, the highest amounts were in the pylorus. However, the ratio between the pylorus and centrum was 3·6:1 for IAPP and 156:1 for gastrin. The effects of dietary manipulation were determined; a period of 48 h of starvation reduced pancreatic IAPP mRNA by approximately 60%, whereas in the stomach there was no significant reduction. If the action of IAPP was hormonal, pancreas and stomach would not be acting in concert. A paracrine role for gastric IAPP therefore seems more likely.

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A A I Daffada, S R D Johnston, J Nicholls, and M Dowsett

ABSTRACT

Using reverse transcription (RT)/PCR we have shown that four breast cancer cell lines expressed oestrogen receptor (ER) mRNA, irrespective of whether they were assessed as ER-positive (MCF-7 and BT-474) or ER-negative (MDA-MB-231 and BT-20) by enzyme immunoassay (EIA). In addition to the wild type (WT) form, they were all found to express the exon 5-deleted variant (V) form of ER mRNA by RT/PCR; this is thought to code for a truncated constitutively active protein. By Northern blot analysis only the ER-positive cell lines (MCF-7 and BT-474) were found to express detectable levels of ER mRNA. Oestradiol-induced growth was found only in the ER-positive (by EIA) cell lines. These results confirm that the differences between ER-positive and ER-negative cell lines are quantitative rather than qualitative. As low levels of ER mRNA could be detected by RT/PCR, this may reflect the greater sensitivity of this approach. The presence of exon 5-deleted V form ER mRNA in addition to the WT form in all four breast cancer cell lines may allow these lines to be used to assess differential regulation of transcription and the impact of this on their oestrogen dependence.