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The structure of dimeric apolipoprotein A-IV and its mechanism of self-association.


ABSTRACT: Apolipoproteins are key structural elements of lipoproteins and critical mediators of lipid metabolism. Their detergent-like properties allow them to emulsify lipid or exist in a soluble lipid-free form in various states of self-association. Unfortunately, these traits have hampered high-resolution structural studies needed to understand the biogenesis of cardioprotective high-density lipoproteins (HDLs). We derived a crystal structure of the core domain of human apolipoprotein (apo)A-IV, an HDL component and important mediator of lipid absorption. The structure at 2.4 Å depicts two linearly connected 4-helix bundles participating in a helix swapping arrangement that offers a clear explanation for how the protein self-associates as well as clues to the structure of its monomeric form. This also provides a logical basis for antiparallel arrangements recently described for lipid-containing particles. Furthermore, we propose a "swinging door" model for apoA-IV lipid association.

SUBMITTER: Deng X 

PROVIDER: S-EPMC3354570 | biostudies-literature | 2012 May

REPOSITORIES: biostudies-literature

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The structure of dimeric apolipoprotein A-IV and its mechanism of self-association.

Deng Xiaodi X   Morris Jamie J   Dressmen James J   Tubb Matthew R MR   Tso Patrick P   Jerome W Gray WG   Davidson W Sean WS   Thompson Thomas B TB  

Structure (London, England : 1993) 20120501 5


Apolipoproteins are key structural elements of lipoproteins and critical mediators of lipid metabolism. Their detergent-like properties allow them to emulsify lipid or exist in a soluble lipid-free form in various states of self-association. Unfortunately, these traits have hampered high-resolution structural studies needed to understand the biogenesis of cardioprotective high-density lipoproteins (HDLs). We derived a crystal structure of the core domain of human apolipoprotein (apo)A-IV, an HDL  ...[more]

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