GeneticsLandmark
The original discovery of the intron 14 splice-site mutation identifies the molecular cause of CETP deficiency in four Japanese families (Biochem Biophys Res Commun 1990)
Original title: Total deficiency of plasma cholesteryl ester transfer protein in subjects homozygous and heterozygous for the intron 14 splicing defect
The molecular basis of cholesteryl ester transfer protein (CETP) deficiency was investigated in four unrelated CETP-deficient families whose probands had HDL cholesterol levels above 150 mg/dl and were totally deficient in plasma CETP activity and mass. Sequencing polymerase-chain-reaction-amplified genomic DNA spanning introns 12 through 14 of the CETP gene showed that two probands were homozygous for a G-to-A change at the 5' splice donor site of intron 14, predicted to impair pre-messenger RNA splicing. The other two probands were heterozygous for this mutation yet totally lacked CETP, with lipoprotein patterns resembling the homozygotes, implicating additional genetic or metabolic factors. The findings identify the intron 14 mutation as a common cause of human plasma CETP deficiency and raise the possibility of compound heterozygotes who totally lack CETP.
Original abstract
The molecular basis of cholesteryl ester transfer protein (CETP) deficiency was investigated in 4 unrelated CETP-deficient families. The high density lipoprotein-cholesterol levels of the probands exceeded 150 mg/dl. The plasma of the probands was totally deficient in CETP activity and mass. The genomic DNA of the patients was amplified by polymerase chain reaction, using two oligonucleotide primers located in the intron 12 and 14 of the CETP gene, and the amplified products were directly sequenced. Two patients were homozygous for a G-to-A change at the 5'-splice donor site of the intron 14. The G-to-A change would cause impaired splicing of pre-messenger RNA. The other two probands were heterozygous for the mutation, but totally lacked CETP. Their lipoprotein patterns were also similar to those of the two homozygotes. Thus, other genetic defects or metabolic factors influencing CETP expression are implicated. The data suggest that the G-to-A mutation may be common in human plasma CETP deficiency. Furthermore, there could be compound heterozygotes who totally lack plasma CETP and have lipoprotein profiles similar to those of homozygotes.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.