June 12, 2007
Journal Article

A complete backbone spectral assignment of human apolipoprotein AI on a 38 kDa preßHDL (Lp1-AI) particle

Abstract

Apolipoprotein A-I (apoAI, 243-residues) is the major protein component of the high-density lipoprotein (HDL) that has been a hot subject of interests because of its anti-atherogenic properties. This important property of apoAI is related to its roles in reverse cholesterol transport pathway. Upon lipid-binding, apoAI undergoes conformational changes from lipid-free to several different HDL-associated states (1). These different conformational states regulate HDL formation, maturation and transportation. Two initial conformational states of apoAI are lipid-free apoAI and apoAI/preßHDL that recruit phospholipids and cholesterol to form HDL particles. In particular, lipid-free apoAI specifically binds to phospholipids to form lipid-poor apoAI, including apoAI/preß-HDL (~37 kDa). As a unique class of lipid poor HDL, both in vitro and in vivo evidence demonstrates that apoAI/preß-HDLs are the most effective acceptors specifically for free cholesterol in human plasma and serves as the precursor of HDL particles (2). Here we report a complete backbone spectral assignment of human apoAI/preßHDL. Secondary structure prediction using backbone NMR parameters indicates that apoAI/preßHDL displays a two-domain structure: the N-terminal four helix-bundle domain (residues 1-186) and the C-terminal flexible domain (residues 187-243). A structure of apoAI/preß-HDL is the first lipid-associated structure of apoAI and is critical for us to understand how apoAI recruits cholesterol to initialize HDL formation. BMRB deposit with accession number: 15093.

Revised: April 7, 2011 | Published: June 12, 2007

Citation

Ren X., Y. Yang, T. Neville, T. Neville, D.W. Hoyt, D.L. Sparks, and J. Wang. 2007. A complete backbone spectral assignment of human apolipoprotein AI on a 38 kDa preßHDL (Lp1-AI) particle. Biomolecular NMR Assignments 1, no. 1:69-71. PNNL-SA-53926.