Title : Biochemical Analysis of the Lipoprotein Lipase Truncation Variant, LPLS447X, Reveals Increased Lipoprotein Uptake - Hayne_2017_Biochemistry_56_525 |
Author(s) : Hayne CK , Lafferty MJ , Eglinger BJ , Kane JP , Neher SB |
Ref : Biochemistry , 56 :525 , 2017 |
Abstract :
Lipoprotein lipase (LPL) is responsible for the hydrolysis of triglycerides from circulating lipoproteins. Whereas most identified mutations in the LPL gene are deleterious, one mutation, LPLS447X, causes a gain of function. This mutation truncates two amino acids from LPL's C-terminus. Carriers of LPLS447X have decreased VLDL levels and increased HDL levels, a cardioprotective phenotype. LPLS447X is used in Alipogene tiparvovec, the gene therapy product for individuals with familial LPL deficiency. It is unclear why LPLS447X results in a serum lipid profile more favorable than that of LPL. In vitro reports vary as to whether LPLS447X is more active than LPL. We report a comprehensive, biochemical comparison of purified LPLS447X and LPL dimers. We found no difference in specific activity on synthetic and natural substrates. We also did not observe a difference in the Ki for ANGPTL4 inhibition of LPLS447X relative to that of LPL. Finally, we analyzed LPL-mediated uptake of fluorescently labeled lipoprotein particles and found that LPLS447X enhanced lipoprotein uptake to a greater degree than LPL did. An LPL structural model suggests that the LPLS447X truncation exposes residues implicated in LPL binding to uptake receptors. |
PubMedSearch : Hayne_2017_Biochemistry_56_525 |
PubMedID: 27984852 |
Gene_locus related to this paper: human-LPL |
Mutation | S474X_human-LPL |
Gene_locus | human-LPL |
Disease | Hyperlipoproteinemia TypeI |
Hayne CK, Lafferty MJ, Eglinger BJ, Kane JP, Neher SB (2017)
Biochemical Analysis of the Lipoprotein Lipase Truncation Variant, LPLS447X, Reveals Increased Lipoprotein Uptake
Biochemistry
56 :525
Hayne CK, Lafferty MJ, Eglinger BJ, Kane JP, Neher SB (2017)
Biochemistry
56 :525