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Peter McIntyre

Publications and source records attributed to Peter McIntyre.

46 records · Page 3Linked to original sources

Influence of epitopes CD44v3 and CD44v6 in the invasive behavior of fibroblast-like synoviocytes derived from rheumatoid arthritic joints.

OBJECTIVE: To investigate the functional implications of CD44 splice variant expression in fibroblast-like synoviocytes (FLS) obtained from patients with rheumatoid arthritis (RA). METHODS: FLS were isolated from synovial tissue obtained from both diseased and nondiseased joints. The expression of splice variants containing exons v3 and v6 was analyzed using immunocytochemistry with exon-specific antibodies and reverse transcription-polymerase chain reaction followed by Southern blotting. The invasive capacity of the cells was studied in a transwell invasion assay. RESULTS: FLS obtained from RA joints expressed various CD44 splicing combinations containing the variant exons v3 and/or v6. These cells were highly invasive, whereas cells from normal tissues, which lacked expression of CD44 splice variants, were not. Variant exons CD44v3 and CD44v6 were instrumental in matrix invasion in vitro, with cells enriched for CD44v3 and v6 exhibiting greater invasion and antibodies that specifically recognize CD44v3 and v6 abrogating this capacity to invade. Invasive cells showed a reduced expression of CD44v7/8, and antibodies against this epitope had no significant effect on cellular infiltration of the matrix. The antibodies had no effect on cell migration into the porous section of the transwell. CONCLUSION: FLS obtained from patients with RA express CD44 splice variants and are highly invasive, whereas cells obtained from healthy tissue do not express these variants and are not invasive. Expression of the epitopes CD44v3 and CD44v6 is instrumental in the invasive capacity but not in cell migration. This finding highlights a functional implication for the expression of CD44 splice variants at the level of matrix degradation.

Alternative Splicing↗

Cloning and functional characterization of the guinea pig vanilloid receptor 1.

We have cloned a guinea pig Vanilloid receptor 1 (VR1) from a dorsal root ganglion cDNA library and expressed it in CHO cells. The receptor has been functionally characterized by measuring changes in intracellular calcium produced by capsaicin, low pH and noxious heat. Capsaicin produced a concentration-dependent increase in intracellular calcium in guinea pig VR1-CHO cells with an estimated EC(50) of 0.17 +/- 0.0065 micro M, similar to that previously reported for rat and human VR1. Olvanil and resiniferatoxin were also effective agonists (EC(50) values of 0.0087 +/- 0.0035 micro M and 0.067 +/- 0.014 micro M, respectively), but 12-phenylacetate 13-acetate 20-homovanillate (PPAHV) and anandamide showed little agonist activity up to 10 micro M. As with human and rat VR1, guinea pig VR1 was also activated by pH below 6.0 and by noxious heat (>42 degrees C). Capsazepine acted as an antagonist of capsaicin responses in guinea pig VR1-CHO cells (IC(50) of 0.324 +/- 0.041 micro M ), as seen at rat VR1. However, in contrast to its lack of activity against pH and heat responses at rat VR1, capsazepine was an effective antagonist of these responses at guinea pig VR1. Capsazepine displayed an IC(50) of 0.355 +/- 25 micro M against pH 5.5, and provided complete blockade of heat responses at 1 micro M. Thus, capsazepine can significantly inhibit calcium influx due to heat and pH 5.5 at guinea pig VR1 and human VR1 but is inactive against these activators at rat VR1.

Aequorin↗