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Genetics

A novel intron 10 splice mutation causes exon 10 skipping and disrupts downstream splicing in CETP deficiency (J Lipid Res 1996)

Original title: Exon 10 skipping caused by intron 10 splice donor site mutation in cholesteryl ester transfer protein gene results in abnormal downstream splice site selection

J Lipid Res · · 5

Sakai N, Santamarina-Fojo S, Yamashita S, Matsuzawa Y, Brewer HB

A 49-year-old Japanese man with total cholesterol, HDL cholesterol, and apolipoprotein A-I of 300, 236, and 233 mg/dl and a total absence of plasma CETP activity and mass was found by sequencing to carry two CETP gene defects: the splice donor consensus GT substituted by GG in intron 10, and by AT in intron 14. Restriction digestion confirmed the patient was a compound heterozygote for both mutations. RT-PCR sequencing of the patient's macrophage-derived cDNA showed the intron 10 defect causes skipping of exon 10 and abnormal splicing at a native site 31 nucleotides upstream of the normal acceptor in intron 13, inserting a 31 bp fragment containing an in-frame stop codon, while the intron 14 defect produced no detectable abnormal splicing, suggesting it instead destabilizes CETP mRNA, identifying a new splicing mechanism underlying CETP deficiency.

PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) deficiency is the most common cause of hyperalphalipoproteinemia in Japan. However, the genetic basis of this disorder has not been fully characterized. We have studied a 49-year-old Japanese male presenting with total cholesterol, HDL-cholesterol, and apolipoprotein A-I levels of 300, 236, and 233 mg/dl, respectively, and total absence of CETP activity and mass in plasma. Sequence analysis of the patient's CETP gene revealed that the splice donor consensus GT was substituted by GG in intron 10 (intron 10 splice defect) and by AT in intron 14 (intron 14 splice defect). Restriction digestion of PCR-amplified DNA using NdeI and MaeIII established that the patient was a compound heterozygote for both gene defects. Sequencing of cDNA amplified by RT-PCR from the patient's monocyte-derived macrophage RNA demonstrated abnormal splicing with deletion of exon 10 as well as alternative splicing at a native AG site located 31 nucleotides 5' of the normal splice acceptor in intron 13. Thus, the intron 10 splice defect results in exon 10 skipping and the insertion of a 31 bp fragment between exon 13 and exon 14, which contains an in frame stop codon. The presence of abnormally spliced mRNA was further confirmed by amplification of patient cDNA using CETP specific primers. Abnormal splicing of exon 14 as a result of the intron 14 splice defect was not detected, indicating potential unstable CETP mRNA derived from that mutation. These findings demonstrate that a novel splice site mutation in intron 10 of the CETP gene results in the skipping of exon 10, as well as disruption of downstream splicing at intron 13 identifying a novel mechanism leading to CETP deficiency.

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Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.