Genetics
The CETP D442G variant shows a preliminary protective association against Alzheimer's disease in Chinese APOE4 carriers (Brain Res 2008)
Original title: Cholesteryl ester transfer protein polymorphism D442G associated with a potential decreased risk for Alzheimer's disease as a modifier for APOE epsilon4 in Chinese
In one hundred and seven Alzheimer's disease cases and 115 age- and gender-matched controls from Northern Han China, researchers tested four CETP SNPs (D442G, L296Q, Taq1B and I405V) for association with sporadic Alzheimer's disease risk. The DG genotype and G allele of CETP D442G were more frequent in controls than in Alzheimer's disease patients (P equals 0.035 and P equals 0.038 respectively), with an age- and sex-adjusted odds ratio for DG versus DD genotype of 0.202 (95% CI 0.043 to 0.958, P equals 0.044); this protective association was seen specifically in APOE epsilon4 carriers but not in non-carriers. The findings did not remain statistically significant after Bonferroni correction for multiple testing given the limited sample size, so the authors describe the G allele of CETP D442G as having a potential protective effect against Alzheimer's disease in APOE epsilon4 carriers, possibly via regulation of brain HDL levels, pending confirmation in larger samples.
Original abstract
There is compelling evidence indicating that reduction of high-density lipoprotein (HDL) level is associated with increased risk of Alzheimer's disease (AD). It is known that the levels of HDL are regulated by cholesteryl ester transfer protein (CETP) and several single nucleotide polymorphisms (SNPs) in the CETP gene have been shown to be associated with the levels of HDL. Therefore, it is assumed that the CETP gene is a reasonable candidate for modifying the susceptibility in AD. In the present study, we investigated the association of four CETP SNPs (D442G, L296Q, Taq1B and I405V) with the risk for sporadic AD in Northern Han-Chinese. One hundred and seven AD cases and 115 age and gender-matched controls were genotyped by polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP), denaturing high performance liquid chromatography (DHPLC) and DNA sequencing. The frequency of DG genotype (P=0.035) or G allele (P=0.038) for the CETP (D442G) polymorphism was greater in control subjects than in AD patients. The age- and sex-adjusted odds radio for DG vs. DD genotype was 0.202 (95% CI 0.043-0.958, P=0.044). When the sample was stratified by APOE epsilon4 carrier status, the same tendency (P=0.042 for DG genotype, P=0.046 for G allele) was observed in the presence of APOE epsilon4, but not in the absence of APOE epsilon4 (P=0.284 for DG genotype, P=0.298 for G allele). However, these results became not statistically significant after correcting for multiple testing (Bonferroni) because of limited number of our sample. Our current results suggest that G allele of CETP D442G may have a potential protective effect against the development of AD, especially in APOE epsilon4 carriers, in Northern Han-Chinese, possibly through regulating the HDL level in the brain.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.