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June 29, 2017Molecular Metabolism184 citationsOpen Access

ANGPTL8 promotes the ability of ANGPTL3 to bind and inhibit lipoprotein lipase

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XCXun ChiEBEmily C. BrittHSHannah W. Shows

Key Result

ANGPTL8 binds to ANGPTL3, forming a complex that is necessary for ANGPTL3 to efficiently bind and inhibit lipoprotein lipase, thereby increasing plasma triglycerides.

Structured PICO

P
Population
In vitro protein interaction assays and in vivo mouse models (mice lacking ANGPTL8)
I
Intervention
Co-expression or complex formation of ANGPTL3 and ANGPTL8 (including adenovirus-mediated overexpression of ANGPTL3)
C
Comparator
ANGPTL3 or ANGPTL8 alone
O
Outcome
Inhibition of lipoprotein lipase (LPL) activity and plasma triglyceride levelssurrogate

ANGPTL8 binds to ANGPTL3 to form a complex that is necessary for the efficient binding and inhibition of lipoprotein lipase, providing a mechanistic basis for their role in triglyceride metabolism.

Abstract

OBJECTIVE: Several members of the angiopoietin-like (ANGPTL) family of proteins, including ANGPTL3 and ANGPTL8, regulate lipoprotein lipase (LPL) activity. Deficiency in either ANGPTL3 or ANGPTL8 reduces plasma triglyceride levels and increases LPL activity, whereas overexpression of either protein does the opposite. Recent studies suggest that ANGPTL8 may functionally interact with ANGPTL3 to alter clearance of plasma triglycerides; however, the nature of this interaction has remained elusive. We tested the hypothesis that ANGPTL8 forms a complex with ANGPTL3 and that this complex is necessary for the inhibition of vascular LPL by ANGPTL3. METHODS: We analyzed the interactions of ANGPTL3 and ANGPTL8 with each other and with LPL using co-immunoprecipitation, western blotting, lipase activity assays, and the NanoBiT split-luciferase system. We also used adenovirus injection to overexpress ANGPTL3 in mice that lacked ANGPTL8. RESULTS: We found that ANGPTL3 or ANGPTL8 alone could only inhibit LPL at concentrations that far exceeded physiological levels, especially when LPL was bound to its endothelial cell receptor/transporter GPIHBP1 (glycosylphosphatidylinositol-anchored high-density lipoprotein binding protein 1). Physical interaction was observed between ANGPTL3 and ANGPTL8 when the proteins were co-expressed, and co-expression with ANGPTL3 greatly enhanced the secretion of ANGPTL8. Importantly, ANGPTL3-ANGPTL8 complexes had a dramatically increased ability to inhibit LPL compared to either protein alone. Adenovirus experiments showed that 2-fold overexpression of ANGPTL3 significantly increased plasma triglycerides only in the presence of ANGPTL8. Protein interaction assays showed that ANGPTL8 greatly increased the ability of ANGPTL3 to bind LPL. CONCLUSIONS: Together, these data indicate that ANGPTL8 binds to ANGPTL3 and that this complex is necessary for ANGPTL3 to efficiently bind and inhibit LPL.

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Cite This Study

Chi et al. (2017) studied Lipoprotein lipase regulation. ANGPTL3 and ANGPTL8 co-expression vs. ANGPTL3 or ANGPTL8 alone was evaluated on Lipoprotein lipase (LPL) inhibition and binding. ANGPTL8 binds to ANGPTL3, forming a complex that is necessary for ANGPTL3 to efficiently bind and inhibit lipoprotein lipase, thereby increasing plasma triglycerides.

synapsesocial.com/papers/6a09e9bf4db796859051a5f4https://doi.org/10.1016/j.molmet.2017.06.014
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