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Lipoprotein lipase reaches the capillary lumen in chickens despite an apparent absence of GPIHBP1
Cuiwen He, Xuchen Hu, Rachel S. Jung, Mikael Larsson, Yiping Tu, Sandra Duarte-Vogel, Paul Kim, Norma P. Sandoval, Tara R. Price, Christopher M. Allan, Brian Raney, Haibo Jiang, André Bensadoun, Rosemary L. Walzem, Richard I. Kuo, Anne P. Beigneux, Loren G. Fong, Stephen G. Young
Cuiwen He, Xuchen Hu, Rachel S. Jung, Mikael Larsson, Yiping Tu, Sandra Duarte-Vogel, Paul Kim, Norma P. Sandoval, Tara R. Price, Christopher M. Allan, Brian Raney, Haibo Jiang, André Bensadoun, Rosemary L. Walzem, Richard I. Kuo, Anne P. Beigneux, Loren G. Fong, Stephen G. Young
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Research Article Metabolism

Lipoprotein lipase reaches the capillary lumen in chickens despite an apparent absence of GPIHBP1

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Abstract

In mammals, GPIHBP1 is absolutely essential for transporting lipoprotein lipase (LPL) to the lumen of capillaries, where it hydrolyzes the triglycerides in triglyceride-rich lipoproteins. In all lower vertebrate species (e.g., birds, amphibians, reptiles, fish), a gene for LPL can be found easily, but a gene for GPIHBP1 has never been found. The obvious question is whether the LPL in lower vertebrates is able to reach the capillary lumen. Using purified antibodies against chicken LPL, we showed that LPL is present on capillary endothelial cells of chicken heart and adipose tissue, colocalizing with von Willebrand factor. When the antibodies against chicken LPL were injected intravenously into chickens, they bound to LPL on the luminal surface of capillaries in heart and adipose tissue. LPL was released rapidly from chicken hearts with an infusion of heparin, consistent with LPL being located inside blood vessels. Remarkably, chicken LPL bound in a specific fashion to mammalian GPIHBP1. However, we could not identify a gene for GPIHBP1 in the chicken genome, nor could we identify a transcript for GPIHBP1 in a large chicken RNA-seq data set. We conclude that LPL reaches the capillary lumen in chickens — as it does in mammals — despite an apparent absence of GPIHBP1.

Authors

Cuiwen He, Xuchen Hu, Rachel S. Jung, Mikael Larsson, Yiping Tu, Sandra Duarte-Vogel, Paul Kim, Norma P. Sandoval, Tara R. Price, Christopher M. Allan, Brian Raney, Haibo Jiang, André Bensadoun, Rosemary L. Walzem, Richard I. Kuo, Anne P. Beigneux, Loren G. Fong, Stephen G. Young

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Figure 9

Testing the ability of chicken lipoprotein lipase (cLPL) to bind to chicken Ly6E-like proteins on the surface of transfected cells.

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Testing the ability of chicken lipoprotein lipase (cLPL) to bind to chic...
CHO pgsA-745 cells were transfected with an expression vector for S-protein–tagged human GPIHBP1 (hGPIHBP1) or for S-protein–tagged versions of the chicken Ly6-like proteins. Immunocytochemistry studies were performed on permeabilized and nonpermeabilized cells with a goat antibody against the S-protein tag (red) and a mouse antibody against the V5 tag (green). DNA was stained with DAPI (blue). (A) Immunocytochemistry studies performed with expression vectors for ENSGALG00000039585, ENSGALG00000043582, and ENSGALG00000041621 showing than none of these chicken Ly6-like proteins bound cLPL (no colocalization). (B) Immunocytochemistry studies performed with 2 different expression vectors for ENSGALG00000045170 (45170a and 45170b). Vector 45170a contained the Ly6 domain of ENSGALG00000045170 and also included the acidic domain of hGPIHBP1; vector 45170b contained the Ly6 domain of ENSGALG00000045170. Neither vector conferred upon CHO cells the ability to bind cLPL. Scale bars: 20 μm.

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ISSN 2379-3708

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