PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 25, 2011Proceedings of the National Academy of Sciences58 citationsOpen Access

Mutations in lipoprotein lipase that block binding to the endothelial cell transporter GPIHBP1

CVConstance V. VossUniversity of California, Los AngelesBDBrandon S.J. DaviesUniversity of IowaSTShelly TatUniversity of California, Los Angeles

Key Result

LPL missense mutations C418Y and E421K abolish LPL's ability to bind to GPIHBP1 and its transport across endothelial cells without interfering with catalytic activity or heparin binding.

Structured PICO

P
Population
In vitro models studying lipoprotein lipase (LPL) missense mutations C418Y and E421K identified in patients with chylomicronemia, and chicken LPL models.
E
Exposure
LPL missense mutations C418Y and E421K, and targeted alanine substitutions in chicken LPL (residues 421-435)
C
Comparator
Wild-type LPL
O
Outcome
LPL binding to GPIHBP1 and transport across endothelial cellssurrogate

Specific LPL mutations (C418Y and E421K) cause chylomicronemia by abolishing LPL binding to the endothelial transporter GPIHBP1, highlighting the importance of sequences downstream from the principal heparin-binding domain.

Abstract

GPIHBP1, a glycosylphosphatidylinositol-anchored protein of capillary endothelial cells, shuttles lipoprotein lipase (LPL) from subendothelial spaces to the capillary lumen. An absence of GPIHBP1 prevents the entry of LPL into capillaries, blocking LPL-mediated triglyceride hydrolysis and leading to markedly elevated triglyceride levels in the plasma (i.e., chylomicronemia). Earlier studies have established that chylomicronemia can be caused by LPL mutations that interfere with catalytic activity. We hypothesized that some cases of chylomicronemia might be caused by LPL mutations that interfere with LPL's ability to bind to GPIHBP1. Any such mutation would provide insights into LPL sequences required for GPIHBP1 binding. Here, we report that two LPL missense mutations initially identified in patients with chylomicronemia, C418Y and E421K, abolish LPL's ability to bind to GPIHBP1 without interfering with LPL catalytic activity or binding to heparin. Both mutations abolish LPL transport across endothelial cells by GPIHBP1. These findings suggest that sequences downstream from LPL's principal heparin-binding domain (amino acids 403-407) are important for GPIHBP1 binding. In support of this idea, a chicken LPL (cLPL)-specific monoclonal antibody, xCAL 1-11 (epitope, cLPL amino acids 416-435), blocks cLPL binding to GPIHBP1 but not to heparin. Also, changing cLPL residues 421 to 425, 426 to 430, and 431 to 435 to alanine blocks cLPL binding to GPIHBP1 without inhibiting catalytic activity. Together, these data define a mechanism by which LPL mutations could elicit disease and provide insights into LPL sequences required for binding to GPIHBP1.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Voss et al. (2011) studied Chylomicronemia. LPL missense mutations (C418Y and E421K) vs. Wild-type LPL was evaluated on LPL binding to GPIHBP1 and transport across endothelial cells. LPL missense mutations C418Y and E421K abolish LPL's ability to bind to GPIHBP1 and its transport across endothelial cells without interfering with catalytic activity or heparin binding.

synapsesocial.com/papers/6a2005fad5e8712fdf65b1e8https://doi.org/10.1073/pnas.1100992108
Ask AI
Helpful
Bookmark
Share
View Full Paper