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Genetics

Mice and rats lack functional CETP due to a shared ancestral nonsense mutation, not altered regulation (Comp Biochem Physiol B 2003)

Original title: Genomic evidence for the absence of a functional cholesteryl ester transfer protein gene in mice and rats

Comp Biochem Physiol B Biochem Mol Biol · · 5

Hogarth CA, Roy A, Ebert DL

Because mice and rats are naturally deficient in CETP activity for unknown reasons, researchers searched genome databases to find the molecular cause. Mouse genome sequences resembled only 7 of the 16 human CETP exons and could not encode a functional protein, while rat genome sequences complementary to human CETP cDNA were detectable by Southern blot but showed no Cetp gene expression in liver, adipose, or muscle by RNase protection assay, and rat whole-genome sequences likewise could not encode a functional CETP. A deletion causing a nonsense codon was found in the exon 11-like sequence of both rat and mouse but no other species, while an unrelated Ap3s1 pseudogene near the mouse CETP-like sequence appeared too similar to the functional gene to predate mouse-rat divergence. The authors conclude the shared nonsense mutation most likely arose from a single evolutionary event before mice and rats diverged, rather than from altered gene regulation or protein function.

Read the paper (DOI)PubMed

Original abstract

Mice and rats are naturally deficient in cholesteryl ester transfer protein (CETP) activity, although the reason behind the deficiency in activity is unknown. A search of mouse genome databases revealed sequences resembling 7 of the 16 human exons. However, these sequences could not code for a functional CETP. Analysis of the rat genome using Southern blotting revealed sequences complementary to human CETP cDNA, but RNase protection assays were unable to detect any Cetp gene expression in liver, adipose, or muscle. A search of rat whole-genome shotgun databases revealed exon-like sequences that would be unable to code for a functional CETP. An Ap3s1 pseudogene lay immediately upstream of the CETP-like sequences in mouse, but was nearly identical to the functional gene and unlikely to have been inserted prior to mouse-rat divergence. In contrast, a deletion leading to a nonsense codon was found in the exon 11-like sequences of both rat and mouse and not in any other species. Thus, the lack of CETP activity in both the mouse and the rat is most likely due to an evolutionary event that occurred before these species diverged and not to altered regulation of the gene or function of the gene product.

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