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Apolipoprotein A1 Forms 5/5 and 5/4 Antiparallel Dimers in Human High-density Lipoprotein.

Citation
He, Y., et al. “Apolipoprotein A1 Forms 5/5 And 5/4 Antiparallel Dimers In Human High-Density Lipoprotein.”. Molecular & Cellular Proteomics : Mcp, pp. 854-864.
Center University of Washington
Author Yi He, Hyun D Song, G M Anantharamaiah, M N Palgunachari, Karin E Bornfeldt, Jere P Segrest, Jay W Heinecke
Keywords APOA1, Computer Modeling, Protein Conformation*, Protein Cross-linking*, Structural Biology*, Tandem Mass Spectrometry, high density lipoprotein, molecular modeling
Abstract

Apolipoprotein A1 (APOA1), the major protein of high-density lipoprotein (HDL), contains 10 helical repeats that play key roles in protein-protein and protein-lipid interactions. The current structural model for HDL proposes that APOA1 forms an antiparallel dimer in which helix 5 in monomer 1 associates with helix 5 in monomer 2 along a left-left (LL5/5) interface, forming a protein complex with a 2-fold axis of symmetry centered on helix 5. However, computational studies suggest that other orientations are possible. To test this idea, we used a zero-length chemical cross-linking reagent that forms covalent bonds between closely apposed basic and acidic residues. Using proteolytic digestion and tandem mass spectrometry, we identified amino acids in the central region of the antiparallel APOA1 dimer of HDL that were in close contact. As predicted by the current model, we found six intermolecular cross-links that were consistent with the antiparallel LL5/5 registry. However, we also identified three intermolecular cross-links that were consistent with the antiparallel LL5/4 registry. The LL5/5 is the major structural conformation of the two complexes in both reconstituted discoidal HDL particles and in spherical HDL from human plasma. Molecular dynamic simulations suggest that that LL5/5 and LL5/4 APOA1 dimers possess similar free energies of dimerization, with LL5/5 having the lowest free energy. Our observations indicate that phospholipidated APOA1 in HDL forms different antiparallel dimers that could play distinct roles in enzyme regulation, assembly of specific protein complexes, and the functional properties of HDL in humans.

Year of Publication
2019
Journal
Molecular & cellular proteomics : MCP
Volume
18
Issue
5
Number of Pages
854-864
Date Published
12/2019
ISSN Number
1535-9484
DOI
10.1074/mcp.RA118.000878
Alternate Journal
Mol. Cell Proteomics
PMID
30659061
PMCID
PMC6495255
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