Journal article
Solution Conditions Affect the Ability of the K30D Mutation to Prevent Amyloid Fibril Formation by Apolipoprotein C-II: Insights from Experiments and Theoretical Simulations
Y Mao, N Todorova, CO Zlatic, PR Gooley, MDW Griffin, GJ Howlett, I Yarovsky
Biochemistry | AMER CHEMICAL SOC | Published : 2016
Abstract
Apolipoproteins form amphipathic helical structures that bind lipid surfaces. Paradoxically, lipid-free apolipoproteins display a strong propensity to form cross-β structure and self-associate into disease-related amyloid fibrils. Studies of apolipoprotein C-II (apoC-II) amyloid fibrils suggest that a K30-D69 ion pair accounts for the dual abilities to form helix and cross-β structure. Consistent with this is the observation that a K30D mutation prevents fibril formation under standard fibril forming conditions. However, we found that fibril formation by K30D apoC-II proceeded readily at low pH and a higher salt or protein concentration. Structural analysis demonstrated that K30D apoC-II fib..
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Grants
Awarded by Australian Research Council
Funding Acknowledgements
The Australian Research Council (Project Grants DP0877800 and DP0984565 and Equipment Grant LE120100022) supported this work. M.D.W.G. is the recipient of the C. R. Roper Fellowship and an Australian Research Council Future Fellowship (Project FT140100544).