Skin-specific regulation of SREBP processing & lipid biosynthesis by glycerol kinase 5

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Abstract

The recessive N-ethyl-N-nitrosourea-induced phenotype toku is characterized by delayed hair growth, progressive hair loss, and excessive accumulation of dermal cholesterol, triglycerides, and ceramides. The toku phenotype was attributed to a null allele of Gk5, encoding glycerol kinase 5 (GK5), a skin-specific kinase expressed predominantly in sebaceous glands. GK5 formed a complex with the sterol regulatory element-binding proteins (SREBPs) through their C-Terminal regulatory domains, inhibiting SREBP processing and activation. In Gk5toku/toku mice, transcriptionally active SREBPs accumulated in the skin, but not in the liver; they were localized to the nucleus and led to elevated lipid synthesis and subsequent hair growth defects. Similar defective hair growth was observed in kinase-inactive GK5 mutant mice. Hair growth defects of homozygous toku mice were partially rescued by treatment with the HMG-CoA reductase inhibitor simvastatin. GK5 exists as part of a skin-specific regulatory mechanism for cholesterol biosynthesis, independent of cholesterol regulation elsewhere in the body.

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Zhang, D., Tomisato, W., Su, L., Sun, L., Choi, J. H., Zhang, Z., … Beutler, B. (2017). Skin-specific regulation of SREBP processing & lipid biosynthesis by glycerol kinase 5. Proceedings of the National Academy of Sciences of the United States of America, 114(26), E5197–E5206. https://doi.org/10.1073/pnas.1705312114

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