Heparin and Methionine Oxidation Promote the Formation of Apolipoprotein A-I Amyloid Comprising alpha-Helical and beta-Sheet Structures

作者:Townsend David; Hughes Eleri; Hussain Rohanah; Siligardi Giuliano; Baldock Sarah; Madine Jillian; Middleton David A
来源:Biochemistry, 2017, 56(11): 1632-1644.
DOI:10.1021/acs.biochem.6b01120

摘要

Peptides derived from apolipoprotein A-I (apoA-I), the main component of high-density lipoprotein (HDL), constitute the main component of amyloid deposits that colocalize with atherosclerotic plaques. Here we investigate the molecular details of full-length, lipid-deprived apoA-I after assembly into insoluble aggregates under physiologically relevant conditions known to induce aggregation in vitro. Unmodified apoA-I is shown to remain soluble at pH 7 for at least 3 days, retaining its native alpha-helical-rich structure. Upon acidification to pH 4, apoA-I rapidly assembles into insolublenonfibrillar aggregates lacking the characteristic cross-beta features of amyloid. In the presence of heparin, the rate and thioflavin T responsiveness of the aggregates formed at pH 4 increase and short amyloid-like fibrils are observed, which give rise to amyloid-characteristic X-ray reflections at 4.7 and 10 A. Solid-state nuclear magnetic resonance (SSNMR) and synchrotron radiation circular dichroism spectroscopy of fibrils formed in the presence of heparin show they retain some alpha-helical characteristics together with new beta-sheet structures. Interestingly, SSNMR indicates a similar molecular structure of aggregates formed in the absence of heparin at pH 6 after oxidation of the three methionine residues, although their morphology is rather different from that of the heparin-derived fibrils. We propose a model for apoA-I aggregation in which perturbations of a four-helix bundle-like structure, induced by interactions of heparin or methionine oxidation, cause the partially helical N-terminal residues to disengage from the remaining, intact helices, thereby allowing self-assembly via beta-strand associations.

  • 出版日期2017-3-21