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Oleic acid roughly doubles full-length CETP transcription in Caco-2 intestinal cells without affecting exon-9-deleted splice variant (Mol Cell Biochem 1997)

Original title: Alternative splicing of human plasma cholesteryl ester transfer protein mRNA in Caco-2 cells and its modulation by oleic acid

Mol Cell Biochem · · 6

Dessí M, Motti C, Cortese C, Leonardis E, Giovannini C, Federici G, Piemonte F

Caco-2 cells, a model of human enterocyte epithelium, were examined for CETP expression by reverse-transcriptase PCR. Under basal conditions, Caco-2 cells showed a low rate of active CETP mRNA expression, and CETP mRNA alternative splicing occurred with deletion of exon 9, accounting for about 60% of reverse-transcribed CETP cDNA. After challenge with 50 microM sodium oleate, competitive PCR showed an approximately 2-fold increase in the transcription rate of full-length CETP cDNA, accompanied by increased CETP activity in the cell-conditioned medium, while the amount of exon 9-deleted cDNA showed no significant change. This produced an inversion in the ratio of full-length to exon 9-deleted CETP cDNA, suggesting sodium oleate selectively enhances expression of full-length CETP mRNA.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) is a plasma protein involved in the reverse cholesterol transport and expressed in several human tissues and cell lines. We studied CETP expression in Caco-2 cell line, a model of the human enterocyte epithelium. By reverse-transcriptase polymerase chain reaction, we could demonstrate that in basal condition Caco-2 cells have a low rate of expression of active CETP mRNA. Furthermore, we found that even in this cell line CETP mRNA alternative splicing occurs with deletion of exon 9 sequence. Densitometric analysis of the in vitro amplified fragments showed that under basal conditions about 60% of reverse transcribed CETP cDNA corresponds to exon 9-deleted transcripts. After challenge with 50 microM sodium oleate, there is a approximately 2 fold increase in the transcription rate of the full-length CETP cDNA, as measured by competitive PCR, which is accompanied to an increased activity measured in the cell-conditioned medium. On the contrary, no significant change is seen in the amount of exon 9-deleted cDNA. Consequently, an inversion in the ratio of full-length and exon 9-deleted CETP cDNA is evident, suggesting that sodium oleate selectively enhances the expression of full-length CETP mRNA.

HDL biologymechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.