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October 24, 2019Journal of Biological Chemistry20 citationsOpen Access

A lipoprotein lipase–GPI-anchored high-density lipoprotein–binding protein 1 fusion lowers triglycerides in mice: Implications for managing familial chylomicronemia syndrome

ANAmitabh V. NimonkarSWStephen C. WeldonKGKevin Godbout

Key Result

Intravenous and subcutaneous administration of the LPL-GPIHBP1 fusion protein lowered triglycerides in several mouse strains without causing adverse effects.

Structured PICO

Does LPL-GPIHBP1 fusion protein lower triglycerides in mouse models?

P
Population
Preclinical study evaluating an LPL-GPIHBP1 fusion protein in several mouse strains as a potential therapy for familial chylomicronemia syndrome.
I
Intervention
LPL–GPIHBP1 fusion protein administered intravenously or subcutaneously
O
Outcome
Triglyceride loweringsurrogate

The LPL-GPIHBP1 fusion protein effectively lowers triglycerides in mouse models without adverse effects, suggesting potential as an enzyme replacement therapy for familial chylomicronemia syndrome.

Abstract

Lipoprotein lipase (LPL) is central to triglyceride metabolism. Severely compromised LPL activity causes familial chylomicronemia syndrome (FCS), which is associated with very high plasma triglyceride levels and increased risk of life-threatening pancreatitis. Currently, no approved pharmacological intervention can acutely lower plasma triglycerides in FCS. Low yield, high aggregation, and poor stability of recombinant LPL have thus far prevented development of enzyme replacement therapy. Recently, we showed that LPL monomers form 1:1 complexes with the LPL transporter glycosylphosphatidylinositol-anchored high-density lipoprotein–binding protein 1 (GPIHBP1) and solved the structure of the complex. In the present work, we further characterized the monomeric LPL/GPIHBP1 complex and its derivative, the LPL–GPIHBP1 fusion protein, with the goal of contributing to the development of an LPL enzyme replacement therapy. Fusion of LPL to GPIHBP1 increased yields of recombinant LPL, prevented LPL aggregation, stabilized LPL against spontaneous inactivation, and made it resistant to inactivation by the LPL antagonists angiopoietin-like protein 3 (ANGPTL3) or ANGPTL4. The high stability of the fusion protein enabled us to identify LPL amino acids that interact with ANGPTL4. Additionally, the LPL–GPIHBP1 fusion protein exhibited high enzyme activity in in vitro assays. Importantly, both intravenous and subcutaneous administrations of the fusion protein lowered triglycerides in several mouse strains without causing adverse effects. These results indicate that the LPL–GPIHBP1 fusion protein has potential for use as a therapeutic for managing FCS.

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Cite This Study

Nimonkar et al. (2019) studied Familial chylomicronemia syndrome. LPL-GPIHBP1 fusion protein was evaluated on Triglyceride lowering. Intravenous and subcutaneous administration of the LPL-GPIHBP1 fusion protein lowered triglycerides in several mouse strains without causing adverse effects.

synapsesocial.com/papers/6a86d64bd9da5cf2cea232bahttps://doi.org/10.1074/jbc.ra119.011079
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