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Exon-14 skipping explains why the common Japanese CETP splicing mutation produces essentially no detectable protein (Arterioscler Thromb Vasc Biol 1997)

Original title: Skipping of exon 14 and possible instability of both the mRNA and the resultant truncated protein underlie a common cholesteryl ester transfer protein deficiency in Japan

Arterioscler Thromb Vasc Biol · · 6

Gotoda T, Kinoshita M, Ishibashi S, Inaba T, Harada K, Shimada M, Osuga J, Teramoto T, Yazaki Y, Yamada N

Since a G-to-A mutation at the start of CETP intron 14 is a frequent cause of CETP deficiency with markedly increased HDL-cholesterol among Japanese, this study investigated the detailed molecular abnormalities underlying this null deficiency. CETP mRNA amplified from monocyte-derived macrophages of two homozygous patients showed complete deletion of exon 14, shifting the reading frame and introducing a premature termination codon. In heterozygotes, the aberrant transcript was about one-third as abundant as the normal transcript in the cytoplasm, though equal amounts existed in the nucleus, indicating cytoplasmic instability of the abnormal mRNA. Although this predicted synthesis of a mutant CETP missing about 15% of its carboxy terminus, immunoblotting showed the abnormal CETP was virtually absent in both media and cell lysates of transfected COS-1 cells massively expressing the mutant mRNA. The authors conclude exon skipping both reduces mRNA levels and produces a truncated protein that is rapidly degraded intracellularly.

Read the paper (DOI)PubMed

Original abstract

Among the Japanese population, a G-to-A mutation at the beginning of intron 14 of the human cholesteryl ester transfer protein (CETP) gene is a frequent cause of CETP deficiency characterized by markedly increased HDL cholesterol. The resulting abnormalities responsible for null CETP deficiency were studied in detail. The CETP mRNA transcripts amplified by polymerase chain reaction from the monocyte-derived macrophages of two homozygous patients were both found to be normal except for the whole deletion of exon 14. The deletion causes a shift of reading frame and introduces a premature termination codon downstream. Examination of the macrophage RNA from heterozygotes suggested the increased instability of the abnormal mRNA in the cytoplasm, because the amount of the aberrant transcript was nearly one third that of a normal transcript in the cytoplasm, while they were equal in the nucleus. Although this indicated the synthesis of a mutant CETP that lacks about 15% at its carboxy terminus, immunoblot analysis demonstrated that the abnormal CETP was virtually absent in both the media and cell lysates of transfected COS-1 cells, which massively expressed the mutant CETP mRNA. These results elucidate the primary abnormality due to the common CETP splicing mutation to be the exon skipping of mRNA, which decreases the level of mRNA and produces a truncated protein that should be rapidly degraded intracellularly.

geneticsHDL biology

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