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The favorable CETP-VV genotype is found to buffer the deleterious effect of the lipoprotein(a) gene in exceptionally long-lived Ashkenazi Jews (PLoS Comput Biol 2007)

Original title: Buffering mechanisms in aging: a systems approach toward uncovering the genetic component of aging

PLoS Comput Biol · · 5

Bergman A, Atzmon G, Ye K, MacCarthy T, Barzilai N

Using more than 1,200 subjects spanning the sixth to eleventh decades of life from the Longevity Gene Study of Ashkenazi Jews, researchers tested whether favorable longevity-promoting genotypes buffer the deleterious effects of age-related disease genes, studying 66 common polymorphisms across 36 candidate genes. Building on prior evidence that the advantageous CETP-VV genotype improves lipoprotein particle size, reduces metabolic and cardiovascular disease, and is associated with better cognitive function, the study identified an additional advantageous effect: the CETP-VV genotype neutralizes the deleterious effects of the lipoprotein(a) (LPA) gene. The authors used this and other identified buffering relationships to construct a candidate gene-interaction subnetwork underlying human longevity, offering a proof of concept for using genotype-frequency patterns across age groups to uncover such buffering mechanisms.

Read the paper (DOI)PubMed

Original abstract

An unrealized potential to understand the genetic basis of aging in humans, is to consider the immense survival advantage of the rare individuals who live 100 years or more. The Longevity Gene Study was initiated in 1998 at the Albert Einstein College of Medicine to investigate longevity genes in a selected population: the "oldest old" Ashkenazi Jews, 95 years of age and older, and their children. The study proved the principle that some of these subjects are endowed with longevity-promoting genotypes. Here we reason that some of the favorable genotypes act as mechanisms that buffer the deleterious effect of age-related disease genes. As a result, the frequency of deleterious genotypes may increase among individuals with extreme lifespan because their protective genotype allows disease-related genes to accumulate. Thus, studies of genotypic frequencies among different age groups can elucidate the genetic determinants and pathways responsible for longevity. Borrowing from evolutionary theory, we present arguments regarding the differential survival via buffering mechanisms and their target age-related disease genes in searching for aging and longevity genes. Using more than 1,200 subjects between the sixth and eleventh decades of life (at least 140 subjects in each group), we corroborate our hypotheses experimentally. We study 66 common allelic site polymorphism in 36 candidate genes on the basis of their phenotype. Among them we have identified a candidate-buffering mechanism and its candidate age-related disease gene target. Previously, the beneficial effect of an advantageous cholesteryl ester transfer protein (CETP-VV) genotype on lipoprotein particle size in association with decreased metabolic and cardiovascular diseases, as well as with better cognitive function, have been demonstrated. We report an additional advantageous effect of the CETP-VV (favorable) genotype in neutralizing the deleterious effects of the lipoprotein(a) (LPA) gene. Finally, using literature-based interaction discovery methods, we use the set of longevity genes, buffering genes, and their age-related target disease genes to construct the underlying subnetwork of interacting genes that is expected to be responsible for longevity. Genome wide, high-throughput hypothesis-free analyses are currently being utilized to elucidate unknown genetic pathways in many model organisms, linking observed phenotypes to their underlying genetic mechanisms. The longevity phenotype and its genetic mechanisms, such as our buffering hypothesis, are similar; thus, the experimental corroboration of our hypothesis provides a proof of concept for the utility of high-throughput methods for elucidating such mechanisms. It also provides a framework for developing strategies to prevent some age-related diseases by intervention at the appropriate level.

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